Changeset 289

Show
Ignore:
Timestamp:
10/23/2007 12:58:44 AM (5 years ago)
Author:
powell
Message:

Wiped major HTML pages which are obsolete.

Location:
trunk/matml
Files:
11 modified

Legend:

Unmodified
Added
Removed
  • trunk/matml/src/index.html

    r272 r289  
    22<body><center><h1>Transport Phenomena Courseware Archive</h1></center> 
    33 
    4 Transport phenomena are hard enough to visualize with pen-and-paper graphics. 
    5 These tools help teach the principles by providing user interaction with 
    6 graphical representations of calculation results. 
    7 <ul> 
    8   <li><a href="castabox/">Cast-a-Box</a> (parallel) finite difference heat 
    9     conduction and enthalpy method code for modeling solidification during 
    10     casting, by Adam Powell (last updated March 2, 2006). 
    11   <li><a href="../webselector/">MatML Grapher</a> 
    12     (<a href="http://orbis.kent.edu/matdl/matml/select.php">running at 
    13     orbis.kent.edu</a>) for visualizing material properties, by Jorge Vieyra, 
    14     Kyle Stemen and Stephen Daigle (last updated March 15, 2005). 
    15   <li><a href="sphlow/sphlow.html">Sphlow</a> Java applet for flotation 
    16     calculations, by Adam Powell (last updated April 13, 2005). 
    17 </ul> 
    18  
     4This webpage is obsolete, please change your links to 
     5<a href="http://teaching.matdl.org/">http://teaching.matdl.org/</a> 
    196</body></html> 
  • trunk/matml/transport/contributors.html

    r282 r289  
    22<body><center><h1>Transport Phenomena Archive: Contributors</h1></center> 
    33 
    4 The following 36 people have contributed content to the Transport Phenomena 
    5 Archive: 
    6 <ul> 
    7   <li><a href="http://orbis.kent.edu/bartolo/">Laura Bartolo</a>, 
    8     <a href="http://www.kent.edu/">Kent State University</a> 
    9     <a href="http://orbis.kent.edu/">Materials Informatics Laboratory</a></li> 
    10   <li>Hai Na Chen, <a href="http://web.mit.edu/">MIT</a> 
    11     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    12       Engineering</a></li> 
    13   <li>Rene Chen, <a href="http://web.mit.edu/">MIT</a> 
    14     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    15       Engineering</a></li> 
    16   <li>Hashem Dabbas, <a href="http://web.mit.edu/">MIT</a> 
    17     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    18       Engineering</a></li> 
    19   <li>Stephen Daigle, <a href="http://www.kent.edu/">Kent State 
    20       University</a></li> 
    21   <li>David Dussault, <a href="http://www.geae.com/">GE Aircraft 
    22       Engines</a></li> 
    23   <li><a href="http://msewww.engin.umich.edu/people/faculty/falk">Michael 
    24       Falk</a>, <a href="http://www.umich.edu/">University of Michigan</a></li> 
    25   <li>Luis Fernandez, <a href="http://web.mit.edu/">MIT</a> 
    26     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    27       Engineering</a></li> 
    28   <li>Kay Furman, <a href="http://web.mit.edu/">MIT</a> 
    29     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    30       Engineering</a></li> 
    31   <li>Jacqueline Greene, <a href="http://web.mit.edu/">MIT</a> 
    32     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    33       Engineering</a></li> 
    34   <li>Jiji Gu, <a href="http://web.mit.edu/">MIT</a> 
    35     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    36       Engineering</a></li> 
    37   <li>Byron Hsu, <a href="http://web.mit.edu/">MIT</a> 
    38     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    39       Engineering</a></li> 
    40   <li>Paulo Jacob Silva, <a href="http://web.mit.edu/">MIT</a> 
    41     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    42       Engineering</a> (alumnus)</li> 
    43   <li>Kimberly Kam, <a href="http://web.mit.edu/">MIT</a> 
    44     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    45       Engineering</a></li> 
    46   <li><a href="http://esd.mit.edu/Faculty_Pages/kirchain/kirchain.htm">Randolph 
    47       E. Kirchain, Jr.</a>, <a href="http://web.mit.edu/">MIT</a> 
    48     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    49       Engineering</a> and <a href="http://esd.mit.edu/">Engineering Systems 
    50       Division</a></li> 
    51   <li><a href="https://engineering.purdue.edu/MSE/Fac_Staff/Faculty/krane.html">Matthew 
    52       Krane</a>, <a href="http://www.purdue.edu/">Purdue University</a> 
    53     <a href="https://engineering.purdue.edu/MSE">School of Materials 
    54       Engineering</a></li> 
    55   <li>Joshua Lake, <a href="http://web.mit.edu/">MIT</a> 
    56     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    57       Engineering</a></li> 
    58   <li>Wang Lei, <a href="http://web.mit.edu/">MIT</a> 
    59     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    60       Engineering</a></li> 
    61   <li>Janet Leung, <a href="http://web.mit.edu/">MIT</a> 
    62     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    63       Engineering</a> (alumnus)</li> 
    64   <li>Forrest Liau, <a href="http://web.mit.edu/">MIT</a> 
    65     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    66       Engineering</a></li> 
    67   <li>David Lin, <a href="http://web.mit.edu/">MIT</a> 
    68     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    69       Engineering</a></li> 
    70   <li>Yi-Cheung Lok, <a href="http://web.mit.edu/">MIT</a> 
    71     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    72       Engineering</a> (alumnus)</li> 
    73   <li>Sally Lou, <a href="http://web.mit.edu/">MIT</a> 
    74     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    75       Engineering</a></li> 
    76   <li>Cathy Lowe, <a href="http://www.kent.edu/">Kent State University</a> 
    77     <a href="http://orbis.kent.edu/">Materials Informatics Laboratory</a></li> 
    78   <li>Pietro Navarra, <a href="http://hatch.ca">Hatch</a> 
    79   <li><a href="http://web.mit.edu/ajn/www/">Adam Nolte</a>, 
    80     <a href="http://web.mit.edu/">MIT</a> 
    81     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    82       Engineering</a></li> 
    83   <li>Wanida Pongsaksawad, <a href="http://web.mit.edu/">MIT</a> 
    84     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    85       Engineering</a></li> 
    86   <li><a href="http://lyre.mit.edu/~powell/">Adam Powell</a>, 
    87     <a href="http://web.mit.edu/">MIT</a> 
    88     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    89       Engineering</a></li> 
    90   <li><a href="http://www-math.mit.edu/people/faculty/rosales.html">Rodolfo 
    91       Ruben Rosales</a>, <a href="http://web.mit.edu/">MIT</a> 
    92     <a href="http://www-math.mit.edu/">Department of Mathematics</a></li> 
    93   <li>Thomas Schilling, <a href="http://web.mit.edu/">MIT</a> 
    94     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    95       Engineering</a> (alumnus)</li> 
    96   <li>Kyle Stemen, <a href="http://www.kent.edu/">Kent State 
    97       University</a></li> 
    98   <li>Jorge Vieyra Salas, <a href="http://web.mit.edu/">MIT</a> 
    99     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    100       Engineering</a> (alumnus)</li> 
    101   <li>Jonathan Tejada, <a href="http://web.mit.edu/">MIT</a> 
    102     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    103       Engineering</a></li> 
    104   <li><a href="http://cee.mit.edu/index.pl?id=2381&isa=Category&op=show">Franz-Josef 
    105       Ulm</a>, <a href="http://web.mit.edu/">MIT</a> 
    106     <a href="http://cee.mit.edu/">Department of Civil and Environmental 
    107     Engineering</a></li> 
    108   <li>Teresa Wang, <a href="http://web.mit.edu/">MIT</a> 
    109     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    110       Engineering</a></li> 
    111   <li>Joy Yuan, <a href="http://web.mit.edu/">MIT</a> 
    112     <a href="http://www-dmse.mit.edu/">Department of Materials Science and 
    113       Engineering</a> (alumna)</li> 
    114 </ul> 
    115 Other contributors are welcome!<p> 
    116  
    117 The Editorial Board is comprised of: 
    118 <ul> 
    119   <li><a href="http://orbis.kent.edu/bartolo/">Laura Bartolo</a>, 
    120     <a href="http://www.kent.edu/">Kent State University</a> 
    121     <a href="http://orbis.kent.edu/">Materials Informatics Laboratory</a></li> 
    122   <li>Long-Qing Chen, Pennsylvania State University</li> 
    123   <li>Michael Falk, University of Michigan</li> 
    124   <li><a href="http://www.ualberta.ca/~hhenein/">Hani Henein</a>, 
    125     <a href="http://www.ualberta.ca/">University of Alberta</a> 
    126     <a href="http://www.uofaweb.ualberta.ca/cme/">Department of Chemical and 
    127       Materials Engineering</a></li> 
    128   <li>Robert Hyers, University of Massachusetts, Amherst</li> 
    129   <li>P&auml;r J&ouml;nsson, KTH, Sweden</li> 
    130   <li>Seon-Hyo Kim, POSTECH, Korea</li> 
    131   <li><a href="https://engineering.purdue.edu/MSE/Fac_Staff/Faculty/krane.html">Matthew 
    132       Krane</a>, <a href="http://www.purdue.edu/">Purdue University</a> 
    133     <a href="https://engineering.purdue.edu/MSE">School of Materials 
    134       Engineering</a></li> 
    135   <li>Zi-Kui Liu, Penn. State University</li> 
    136   <li>Douglas Matson, Tufts University</li> 
    137   <li>Patricio Mendez, Colorado School of Mines</li> 
    138   <li>Naoki Ono, Shibaura Institute of Technology, Japan</li> 
    139   <li>David Poirier, University of Arizona</li> 
    140   <li><a href="http://lyre.mit.edu/~powell/">Adam Powell</a>, 
    141     <a href="http://web.mit.edu/">MIT</a> 
    142     <a href="http://www-dmse.mit.edu">Department of Materials Science and 
    143       Engineering</a></li> 
    144 </ul> 
     4This webpage is obsolete, please change your links to 
     5<a href="http://teaching.matdl.org/">http://teaching.matdl.org/</a> 
    1456</body></html> 
  • trunk/matml/transport/faq.html

    r235 r289  
    33Questions</h1></center> 
    44 
    5 <ul> 
    6   <li><a name="contribute"><b>Q: How can I contribute to the Transport 
    7     Phenomena Archive?</b><br> 
    8  
    9   A: You should start by just sending editable material (usually LaTeX or Word 
    10     files) to <a href="mailto:Adam Powell <hazelsct@mit.edu>">Adam Powell</a>, 
    11     along with copyright and license information, short description, keywords, 
    12     and if a problem/exercise, then include difficulty (appropriate 
    13     undergraduate year), and time required to solve it.  If you send a 
    14     collection of problems, he will separate them to create separate entries. 
    15     If you don't give descriptions, difficulty, time required or keywords, Adam 
    16     will assign them.</li><p> 
    17  
    18   <li><a name="tools"><b>Q: All of this is in CVS, written in LaTeX, with this 
    19     fancy metadata format with checksums and PGP/GPG signatures.  Do I need to 
    20     learn how to use all of these technologies in order to contribute?</b><br> 
    21  
    22   A: No, just send stuff to Adam Powell, even in Word format if you like, and 
    23     he'll do all of that.  The more you annotate, the easier it will be on 
    24     Adam.  If you become a frequent contributor, you can have a CVS account and 
    25     add material directly to the archive, but then you will need to do all of 
    26     these things.</li><p> 
    27  
    28   <li><a name="formats"><b>Q: What file formats do you use, and where can I get 
    29     viewers for them?</b><br> 
    30  
    31   A: Printable formats are in PostScript and PDF, with sources from LaTeX to 
    32     <a href="http://openoffice.org/">OpenOffice.org</a> to Microsoft Word. 
    33     PostScript files can be viewed using 
    34     <a href="http://www.cs.wisc.edu/~ghost/">Ghostview and GSView</a>, the 
    35     latter of which can be downloaded as a self-extracting archive for Windows, 
    36     and requires a second download of Ghostscript.  LaTeX originals often use 
    37     Unix line breaks, which are just line feeds (LF); DOS/Windows uses CR-LF, 
    38     and Mac just CR, so some text editors may not break lines properly 
    39     (<i>e.g.</i> Notepad; Word gets it right).  When sources involve multiple 
    40     files, they are given both in directories and .zip archives.  Metadata are 
    41     currently in plain text files including at least a title, author, 
    42     copyright, license, and filenames and MD5 sums for source and printable 
    43     data forms; metadata files are signed by the author using <tt>gpg 
    44     --clearsign</tt>.  Metadata for problems/exercises are considerably more 
    45     extensive than this, as described in <a href="problems/">that 
    46     section</a>.</li><p> 
    47  
    48   <li><a name="solutions"><b>Q: Why are you putting the solutions to 
    49     problems/exercises on the Archive, where students can see them?</b><br> 
    50  
    51   A: Though everything presently on the Archive is open for anyone to download, 
    52     we are planning a password-protected solutions area, which will probably be 
    53     implemented around December, 2005.  In the meantime, the problems/exercises 
    54     here are mostly taken from Adam Powell's MIT 
    55     subjects <i>Transport Phenomena in Materials Engineering</i> and 
    56     <i>Materials Processing</i>, whose 
    57     materials including problems and solutions have been on the web since he 
    58     was a TA back in 1994.  Thus, they are already widely available, and this 
    59     doesn't change that.  Even if they were not on the web, MIT students 
    60     collect and hand down old notes, problem sets and tests, so taking them off 
    61     of this archive would only disadvantage those without such access. 
    62     Besides, this is an electronic resource; you can be sure that if we don't 
    63     post solutions here, someone else will post them elsewhere, distracting 
    64     people from this resource and defeating the purpose anyway.  Of course, 
    65     this does mean that you should <i>not</i> use these materials to make your 
    66     exams, unless they're of the type "Your exam will have some subset of these 
    67     thirty problems, so if you learn them all very well, you'll get an 
    68     A..."</li><p> 
    69 </ul> 
     5This webpage is obsolete, please change your links to 
     6<a href="http://teaching.matdl.org/">http://teaching.matdl.org/</a> 
    707</body></html> 
  • trunk/matml/transport/index.html

    r282 r289  
    22<body><center><h1>Transport Phenomena Archive</h1></center> 
    33 
    4 <b>NOTE:</b> Though this mirror currently provides more annotation, the 
    5 official long-term 
    6 URL for the Transport Phenomena Archive within the Materials Digital Library is 
    7 <a href="http://matdl.org/repository/list.php?collection_pid=matdl:3">http://matdl.org/repository/list.php?collection_pid=matdl:3</a><p> 
    8  
    9 The Transport Phenomena Archive is a space for collaborative development of 
    10 educational resources related to transport phenomena, with an initial focus on 
    11 materials processing 
    12 and performance.  Archive resources live in a CVS version control server with a 
    13 web front-end such that visitors 
    14 may easily browse and download materials.  The Archive is open for 
    15 <a href="faq.html#contribute">contributions</a>, corrections and general 
    16 comments, and frequent contributors will 
    17 be given accounts on the server to upload and modify materials.<p> 
    18  
    19 We are trying to document the use of this resource.  If you use or have used 
    20 the Archive, please let us know how you use it by sending 
    21 <a href="mailto:hazelsct@mit.edu?Subject=Transport%20Phenomena%20Archive">email 
    22 to Adam Powell</a>.  Comments, suggestions and other feedback ore most 
    23 welcome.<p> 
    24  
    25 Several auxiliary pages describe the Archive in more detail: 
    26 <ul> 
    27   <li><a href="contributors.html">Contributors and Editorial Board</a></li> 
    28   <li><a href="faq.html">Frequently-asked questions</a> including 
    29     <a href="faq.html#contribute">how to contribute</a></li> 
    30   <li><a href="milestones.html">History and milestones</a></li> 
    31 </ul> 
    32  
    33 The following teaching materials may be downloaded from the Archive: 
    34 <ul> 
    35   <li><a href="problems/">Problems/exercises</a> (82) for undergraduates 
    36 and 
    37     graduate students</li> 
    38   <li><a href="resources/">Resources</a> (20) including equations, how-to style 
    39     handouts, and descriptions of this Archive</li> 
    40   <li><a href="readings/">Readings</a> (2) with descriptive discussions of 
    41     concepts for students at various skill levels</li> 
    42   <li><a href="pedagogy/">Pedagogical materials</a> (4) on everything from 
    43     course organization to instruction philosophy, including ABET 
    44     documents</li> 
    45   <li><a href="../src/">Courseware</a> (3) for interactive modeling of 
    46     transport phenomena</li> 
    47 </ul> 
    48  
    49 <h3>Related Sites</h3> 
    50  
    51 <ul> 
    52   <li><a href="http://www.materialseducation.org/">National Resource Center for 
    53     Materials Technology Education (MatEd)</a> at 
    54     <a href="http://www.edcc.edu/">Edmonds Community College</a> 
    55   <li><a href="http://www.rpi.edu/dept/materials/MEG/">Glicksman</a> and 
    56     <a href="http://www.rpi.edu/dept/materials/al/">Lupulescu</a>'s 
    57     lecture modules on 
    58     <a href="http://www.rpi.edu/~glickm/diffusion/">diffusion</a> and 
    59     <a href="http://www.rpi.edu/%7Eglickm/KINETICS_2004/Kinetics_Modules.htm">kinetics</a>.</li> 
    60   <li><a href="http://www.syvum.com/eng/">Engineering problems and 
    61     solutions</a> (on <a href="http://www.syvum.com/">Syvum</a>), focused on 
    62     transport phenomena and biomolecular engineering.</li> 
    63   <li><a href="http://steeluniversity.org/">Steel University Online</a>, an 
    64     on-line initiative by the 
    65     <a href="http://www.worldsteel.org/">International Iron and Steel 
    66     Institute</a>.</li> 
    67 </ul> 
     4This webpage is obsolete, please change your links to 
     5<a href="http://teaching.matdl.org/">http://teaching.matdl.org/</a> 
    686</body></html> 
  • trunk/matml/transport/milestones.html

    r270 r289  
    22<body><center><h1>Transport Phenomena Archive History</h1></center> 
    33 
    4 <h3>History</h3> 
    5  
    6 When materials transport educators were brought together at a 
    7 <a href="http://www.tms.org/">TMS</a> symposium in March 2004, the most 
    8 pressing need expressed at the meeting was for a set of case studies in 
    9 electronic format with easy access.  This meshed well with Adam Powell's plans 
    10 to post all of the problems written for his 
    11 <a href="http://lyre.mit.edu/3.185/">transport class</a> at 
    12 <a href="http://web.mit.edu/">MIT</a> on the 
    13 <a href="http://www.matdl.org">Materials Digital Library</a>, and so this 
    14 archive was born.<p> 
    15  
    16 In May 2004, the first iteration of the site plan was uploaded into the CVS 
    17 server at Kent State University, including the basic outline of the web pages, 
    18 a simple ad-hoc text-based metadata format, and one or two resources per 
    19 section.  In June, the number of resources increased substantially.<p> 
    20  
    21 By the Summer of 2005, the number of resources was around eighty, and it became 
    22 clear that further significant expansion would require a mechanism for 
    23 reviewing prospective contributions.  For this reason, an Editorial Board was 
    24 assembled of transport educators in materials and materials-related field from 
    25 around the world.<p> 
    26  
    27 This resource is constantly evolving; below are some of the milestones the 
    28 Archive has reached and goals for future expansion.<p> 
    29  
    30 Completed: 
    31 <ul> 
    32   <li>Milestone: 25 contributors DONE June 30, 2006</li> 
    33   <li>Milestone: 100 resources DONE April 9, 2006</li> 
    34   <li>Milestone: ten contributors DONE January 27, 2006</li> 
    35   <li>Use of Sphlow Java applet in one problem DONE January 24, 2005</li> 
    36   <li><a href="faq.html">FAQ page</a> DONE November 16, 2004</li> 
    37   <li>Name change: Transport Archive to Transport Phenomena Archive DONE 
    38     November 16, 2004</li> 
    39   <li>Number of resources next to each internal link DONE November 16, 
    40     2004</li> 
    41   <li>Milestone: fifty resources DONE September 28, 2004</li> 
    42   <li>Other outside links section of main page DONE September 23, 2004</li> 
    43   <li>Milestone: three contributors DONE September 16, 2004</li> 
    44   <li>Document postscript format browsing resources DONE July 7, 2004</li> 
    45   <li>Lists of problems by keyword DONE July 6, 2004</li> 
    46   <li>"Blog"-style reverse chronological list of problems DONE July 6, 
    47     2004</li> 
    48   <li>Contact ten prospective contributors about the archive DONE June 18, 
    49     2004</li> 
    50 </ul> 
    51  
    52 Planned: 
    53 <ul> 
    54   <li>Use of MatML grapher in at least one problem</li> 
    55   <li>Move from ad hoc metadata format to IEEE LOM</li> 
    56   <li>Transport ontology</li> 
    57   <li>Links from resources back into transport ontology</li> 
    58   <li>Migrate to software infrastructure with comment/review ability, such as 
    59     Fedora</li> 
    60   <li>Copyright, license footnotes inside each document</li> 
    61   <li>Milestone: 50 contributors</li> 
    62   <li>Workflow and review procedures formalized/established</li> 
    63   <li>Web form for uploading new resources into the Archive for review</li> 
    64   <li>Milestone: 300 resources</li> 
    65 </ul> 
     4This webpage is obsolete, please change your links to 
     5<a href="http://teaching.matdl.org/">http://teaching.matdl.org/</a> 
    666</body></html> 
  • trunk/matml/transport/pedagogy/index.html

    r127 r289  
    22<body><center><h1>Transport Phenomena Pedagogy Archive</h1></center> 
    33 
    4 Transport phenomena is a challenging subject to teach.  These resources include 
    5 course outlines, ABET material, and other pedagogical resources to help 
    6 educators to teach this subject matter in particular, with some material 
    7 applicable to teaching in general. 
    8 <ul> 
    9   <li><a href="3185-handout-abet.pdf">ABET Statements</a> for MIT subject 
    10     3.185, <i>Transport Phenomena in Materials Engineering</i>, by Adam Powell 
    11     (<a href="3185-handout-abet.tex">source</a>, 
    12     <a href="3185-handout-abet.meta">metadata</a>).</li> 
    13   <li><a href="processing3.pdf">Materials Processing in the New DMSE 
    14     Undergraduate Curriculum</a>, by Adam Powell 
    15     (<a href="processing3.sxw">source</a>, 
    16     <a href="processing3.meta">metadata</a>). 
    17   <li><a href="TMS2004ACP.pdf">Transport Education in the Materials 
    18     Curriculum</a>, a talk by Adam Powell at the 2004 TMS Annual Meeting 
    19     (<a href="TMS2004ACP.zip">source</a> <a href="TMS2004ACP">directory</a>, 
    20     <a href="TMS2004ACP.meta">metadata</a>).</li> 
    21   <li><a href="teaching.pdf">Teaching Elements in the New DMSE Undergraduate 
    22     Curriculum</a>, by Adam Powell 
    23     (<a href="teaching.tex">source</a>, 
    24     <a href="teaching.meta">metadata</a>).</li> 
    25 </ul> 
    26  
     4This webpage is obsolete, please change your links to 
     5<a href="http://teaching.matdl.org/">http://teaching.matdl.org/</a> 
    276</body></html> 
  • trunk/matml/transport/problems/alpha.html

    r280 r289  
    22<body><center><h1>Transport Problems Alphabetical List</h1></center> 
    33 
    4 The list of <a href="./">transport problems</a> in alphabetical order: 
    5 <ul> 
    6   <li><a href="htoutline.pdf">A heat transfer calculation</a>, by Adam Powell 
    7     (<a href="htoutline-solution.pdf">solution</a>, 
    8     <a href="htoutline.tex">source</a>, 
    9     <a href="htoutline-solution.tex">solution source</a>, 
    10     <a href="htoutline.meta">metadata</a>), last modified December 9, 
    11     2004.</li> 
    12   <li><a href="difintg1.pdf">Application of integral analysis to  
    13 semi-infinite diffusion couple</a>, by Matthew Krane 
    14     (<a href="difintg1_solution.pdf">solution</a>,   
    15     <a href="difintg1.doc">source</a>,   
    16     <a href="difintg1_solution.doc">solution source</a>,   
    17     <a href="difintg1.meta">metadata</a>), last modified May 8,   
    18     2006.</li> 
    19   <li><a href="ar_quench.pdf">Argon quenching of Ni-based alloy 
    20 cylindrical bars</a>, by Matthew Krane (<a 
    21 href="ar_quenchsolns.pdf">solution</a>, 
    22     <a href="ar_quench.doc">source</a>, 
    23     <a href="ar_quenchsolns.doc">solution source</a>, 
    24     <a href="ar_quench.meta">metadata</a>), last modified December 7, 
    25     2006.</li> 
    26   <li><a href="contflow.pdf">Batch and continuous flow reactors</a>, by Adam 
    27     Powell (<a href="contflow-solution.pdf">solution</a>, 
    28     <a href="contflow.tex">source</a>, 
    29     <a href="contflow-solution.tex">solution source</a>, 
    30     <a href="contflow.meta">metadata</a>), last modified December 20, 
    31     2004.</li> 
    32   <li><a href="blood-fat.pdf">Blood flow and vascular deposits</a>, by 
    33     Hai Na Chen, Kay Furman and Jaqueline Greene 
    34     (<a href="blood-fat-solution.pdf">solution</a>,  
    35     <a href="blood-fat.odt">source</a>, 
    36     <a href="blood-fat-solution.odt">solution source</a>, 
    37     <a href="blood-fat.meta">metadata</a>), last modified June 19, 2006.</li> 
    38   <li><a href="bloodfilter.pdf">Blood filtration</a>, by Hashem Dabbas, Luis 
    39     Fernandez and Joshua Lake (<a href="bloodfilter-solution.pdf">solution</a>, 
    40     <a href="bloodfilter.odt">source</a>, 
    41     <a href="bloodfilter-solution.odt">solution source</a>, 
    42     <a href="bloodfilter.meta">metadata</a>), last modified June 30, 2006.</li> 
    43   <li><a href="castabox.pdf">Cast-a-Box: Casting Conditions and 
    44     Macroporosity</a>, by Adam Powell 
    45     (<a href="castabox-solution.pdf">solution</a>, 
    46     <a href="castabox.zip">source</a> <a href="castabox/">directory</a>, 
    47     <a href="castabox.meta">metadata</a>), last modified September 16, 
    48     2004.</li> 
    49   <li><a href="castcyl1.pdf">Casting of a cylindrical part in a thermally 
    50 resistive mold </a>, by Matthew Krane   
    51     (<a href="castcyl1_solution.pdf">solution</a>, 
    52     <a href="castcyl1.doc">source</a>, 
    53     <a href="castcyl1_solution.doc">solution source</a>, 
    54     <a href="castcyl1.meta">metadata</a>), last modified April 24, 
    55     2006.</li> 
    56   <li><a href="cdmold1.ps">CD injection molding I: Navier-Stokes</a>, by 
    57     Adam Powell (<a href="cdmold1-solution.pdf">solution</a>, 
    58     <a href="cdmold1.zip">source</a> <a href="cdmold1/">directory</a>, 
    59     <a href="cdmold1.meta">metadata</a>), last modified June 23, 2004.</li> 
    60   <li><a href="cdmold2.pdf">CD injection molding II: Shear stress</a>, by Adam 
    61     Powell (<a href="cdmold2-solution.pdf">solution</a>, 
    62     <a href="cdmold2.tex">source</a>, <a href="cdmold2-solution.tex">solution 
    63     source</a>, <a href="cdmold2.meta">metadata</a>), last modified July 6, 
    64     2004.</li> 
    65   <li><a href="cvd.ps">Chemical vapor deposition</a>, by Adam Powell 
    66     (<a href="cvd-solution.ps">solution</a>, <a href="cvd.zip">source</a> 
    67     <a href="cvd/">directory</a>, <a href="cvd.meta">metadata</a>), last 
    68     modified September 26, 2004.</li> 
    69   <li><a href="tio2-cvd.pdf">Chemical vapor deposition of titanium dioxide</a>, 
    70     by Byron Hsu, Wang Lei, Forrest Liau, David Lin and Teresa Wang 
    71     (<a href="tio2-cvd-solution.pdf">solution</a>,  
    72     <a href="tio2-cvd.odt">source</a>, 
    73     <a href="tio2-cvd-solution.odt">solution source</a>, 
    74     <a href="tio2-cvd.meta">metadata</a>), last modified February 22, 
    75     2007.</li> 
    76   <li><a href="cvdreact.ps">Chemical vapor deposition reactor design</a>, by 
    77     Adam Powell (<a href="cvdreact-solution.ps">solution</a>, 
    78     <a href="cvdreact.zip">source</a> <a href="cvdreact/">directory</a>, 
    79     <a href="cvdreact.meta">metadata</a>), last modified December 9, 2004.</li> 
    80   <li><a href="cvi.ps">Chemical Vapor Infiltration for Carbon-Carbon 
    81     Composites</a>, by Adam Powell (<a href="cvi-solution.pdf">solution</a>, 
    82     <a href="cvi.zip">source</a> <a href="cvi/">directory</a>, 
    83     <a href="cvi.meta">metadata</a>), last modified November 27, 2005.</li> 
    84   <li><a href="coextrude.ps">Coextrusion of multilayer polymer sheets</a>, by 
    85     Adam Powell (<a href="coextrude-solution.ps">solution</a>, 
    86     <a href="coextrude.zip">source</a> <a href="coextrude/">directory</a>, 
    87     <a href="coextrude.meta">metadata</a>), last modified December 9, 
    88     2004.</li> 
    89   <li><a href="widgetdrop.ps">Cooling of a little plastic widget</a>, by 
    90     Adam Powell (<a href="widgetdrop-solution.pdf">solution</a>, 
    91     <a href="widgetdrop.zip">source</a> <a href="widgetdrop/">directory</a>, 
    92     <a href="widgetdrop.meta">metadata</a>), last modified August 20, 
    93     2004.</li> 
    94   <li><a href="crystalfree.pdf">Crystal-free zone in a glass-ceramic dish</a>, 
    95     by Adam Powell (<a href="crystalfree-solution.ps">solution</a>, 
    96     <a href="crystalfree.zip">source</a> <a href="crystalfree/">directory</a>, 
    97     <a href="crystalfree.meta">metadata</a>), last modified February 23, 
    98     2006.</li> 
    99   <li><a href="czoch.ps">Czochralski crystal growth</a>, by Adam Powell 
    100     (<a href="czoch-solution.pdf">solution</a>, <a href="czoch.zip">source</a> 
    101     <a href="czoch/">directory</a>, <a href="czoch.meta">metadata</a>), last 
    102     modified October 28 2004.</li> 
    103   <li><a href="decarb.pdf">Decarburization of solid low-carbon steel</a>, by 
    104     Adam Powell (<a href="decarb-solution.pdf">solution</a>, 
    105     <a href="decarb.tex">source</a>, 
    106     <a href="decarb-solution.tex">solution source</a>, 
    107     <a href="decarb.meta">metadata</a>), last modified September 27, 2004.</li> 
    108   <li><a href="pvc.pdf">Decomposition of Poly(vinyl chloride)</a>, by Adam 
    109     Powell (<a href="pvc-solution.pdf">solution</a>, 
    110     <a href="pvc.tex">source</a>, <a href="pvc-solution.tex">solution 
    111     source</a>, <a href="pvc.meta">metadata</a>), last modified June 17, 
    112     2004.</li> 
    113   <li><a href="adhesdiff.ps">Diffusion of water into a flowing adhesive 
    114     sheet</a>, by Adam Powell (<a href="adhesdiff-solution.ps">solution</a>, 
    115     <a href="adhesdiff.zip">source</a> <a href="adhesdiff/">directory</a>, 
    116     <a href="adhesdiff.meta">metadata</a>), last modified March 28, 2006.</li> 
    117   <li><a href="catconv.ps">Dimensional analysis: catalytic combustion of carbon 
    118     monoxide</a>, by Adam Powell (<a href="catconv-solution.ps">solution</a>, 
    119     <a href="catconv.zip">source</a> <a href="catconv/">directory</a>, 
    120     <a href="catconv.meta">metadata</a>), last modified October 3, 2004.</li> 
    121   <li><a href="zincdimens.pdf">Dimensional analysis: diffusion of a zinc 
    122     coating</a>, by Adam Powell (<a href="zincdimens-solution.ps">solution</a>, 
    123     <a href="zincdimens.zip">source</a> <a href="zincdimens/">directory</a>, 
    124     <a href="zincdimens.meta">metadata</a>), last modified March 24, 2005.</li> 
    125   <li><a href="radcond.pdf">Dimensional analysis: mixed radiation and 
    126     conduction</a>, by Adam Powell 
    127     (<a href="radcond-solution.pdf">solution</a>, 
    128     <a href="radcond.tex">source</a>, 
    129     <a href="radcond-solution.tex">solution source</a>, 
    130     <a href="radcond.meta">metadata</a>), last modified May 26, 2005.</li> 
    131   <li><a href="platedrag.pdf">Drag force on a plate</a>, by Adam Powell 
    132     (<a href="platedrag-solution.pdf">solution</a>, 
    133     <a href="platedrag.tex">source</a>, 
    134     <a href="platedrag-solution.tex">solution source</a>, 
    135     <a href="platedrag.meta">metadata</a>), last modified September 26, 
    136     2004.</li> 
    137   <li><a href="dopantdrive.pdf">Drive-in diffusion of semiconductor dopant</a>, 
    138     by Adam Powell (<a href="dopantdrive-solution.ps">solution</a>, 
    139     <a href="dopantdrive.zip">source</a> <a href="dopantdrive/">directory</a>, 
    140     <a href="dopantdrive.meta">metadata</a>), last modified September 26, 
    141     2004.</li> 
    142   <li><a href="centrifatom.ps">Electron beam centrifugal atomization of 
    143     metal</a>, by Adam Powell (<a href="centrifatom-solution.pdf">solution</a>, 
    144     <a href="centrifatom.zip">source</a> <a href="centrifatom/">directory</a>, 
    145     <a href="centrifatom.meta">metadata</a>), last modified September 18, 
    146     2004.</li> 
    147   <li><a href="liposomes.pdf">Encapsulated liposomes for long-term drug 
    148     delivery</a>, by Adam Powell (<a href="liposomes-solution.ps">solution</a>, 
    149     <a href="liposomes.zip">source</a> <a href="liposomes/">directory</a>, 
    150     <a href="liposomes.meta">metadata</a>), last modified August 16, 2004.</li> 
    151   <li><a href="velocheat.pdf">Estimating fluid velocity using heat 
    152     transfer</a>, by Adam Powell (<a href="velocheat-solution.ps">solution</a>, 
    153     <a href="velocheat.zip">source</a> <a href="velocheat/">directory</a>, 
    154     <a href="velocheat.meta">metadata</a>), last modified June 23, 2004.</li> 
    155   <li><a href="tubextrude.pdf">Extrusion of a tube</a>, by Adam Powell 
    156     (<a href="tubextrude-solution.ps">solution</a>, 
    157     <a href="tubextrude.zip">source</a> <a href="tubextrude/">directory</a>, 
    158     <a href="tubextrude.meta">metadata</a>), last modified September 21, 
    159     2004.</li> 
    160   <li><a href="fdheat.pdf">Finite differences in heat conduction</a>, by Adam 
    161     Powell (<a href="fdheat-solution.pdf">solution</a>, 
    162     <a href="fdheat.tex">source</a>, 
    163     <a href="fdheat-solution.tex">solution source</a>, 
    164     <a href="fdheat.meta">metadata</a>), last modified December 20, 2004.</li> 
    165   <li><a href="glassbubble.pdf">Floating bubbles out of molten glass</a>, by 
    166     Adam Powell (<a href="glassbubble-solution.ps">solution</a>, 
    167     <a href="glassbubble.zip">source</a> <a href="glassbubble/">directory</a>, 
    168     <a href="glassbubble.meta">metadata</a>), last modified June 23, 2004.</li> 
    169   <li><a href="catalflow.ps">Flow through a catalytic reactor</a>, by Adam 
    170     Powell (<a href="catalflow-solution.ps">solution</a>, 
    171     <a href="catalflow.zip">source</a> <a href="catalflow/">directory</a>, 
    172     <a href="catalflow.meta">metadata</a>), last modified November 27, 
    173     2005.</li> 
    174   <li><a href="bloodflow.pdf">Fluid flow in blood vessels</a>, by Adam Powell 
    175     (<a href="bloodflow-solution.pdf">solution</a>, 
    176     <a href="bloodflow.tex">source</a>, 
    177     <a href="bloodflow-solution.tex">solution source</a>, 
    178     <a href="bloodflow.meta">metadata</a>), last modified March 30, 2005.</li> 
    179   <li><a href="castshell.ps">Freezing by radiation and convection</a>, by Adam 
    180     Powell (<a href="castshell-solution.pdf">solution</a>, 
    181     <a href="castshell.zip">source</a> <a href="castshell/">directory</a>, 
    182     <a href="castshell.meta">metadata</a>), last modified July 6, 2004.</li> 
    183   <li><a href="lakefreeze.pdf">Freezing lake</a>, by Adam Powell 
    184     (<a href="lakefreeze-solution.pdf">solution</a>, 
    185     <a href="lakefreeze.zip">source</a> <a href="lakefreeze/">directory</a>, 
    186     <a href="lakefreeze.meta">metadata</a>), last modified September 25, 
    187     2005.</li> 
    188   <li><a href="tisi.pdf">Growth of a TiSi intermetallic layer</a>, by Adam 
    189     Powell (<a href="tisi-solution.ps">solution</a>, 
    190     <a href="tisi.zip">source</a> <a href="tisi/">directory</a>, 
    191     <a href="tisi.meta">metadata</a>), last modified September 28, 2004.</li> 
    192   <li><a href="growpresp1.pdf">Growth of precipitate particle from super   
    193 saturated solid solution</a>, by Matthew Krane 
    194     (<a href="growpresp1_solution.pdf">solution</a>, 
    195     <a href="growpresp1.doc">source</a>, 
    196     <a href="growpresp1_solution.doc">solution source</a>, 
    197     <a href="growpresp1.meta">metadata</a>), last modified May 1, 
    198     2006.</li> 
    199   <li><a href="castdiffheat.pdf">Heat conduction and diffusion in alloy 
    200     casting</a>, by Adam Powell 
    201     (<a href="castdiffheat-solution.ps">solution</a>, 
    202     <a href="castdiffheat.zip">source</a> 
    203     <a href="castdiffheat/">directory</a>, 
    204     <a href="castdiffheat.meta">metadata</a>), last modified March 31, 
    205     2005.</li> 
    206   <li><a href="heatecon.pdf">Heat transfer, cost modeling and process 
    207     selection</a>, by Randolph E. Kirchain, Jr. and Adam C. Powell, IV 
    208     (<a href="heatecon-solution.pdf">solution</a>, 
    209     <a href="heatecon.zip">source</a> <a href="heatecon/">directory</a>, 
    210     <a href="heatecon.meta">metadata</a>), last modified February 12, 
    211     2006.</li> 
    212   <li><a href="resweld.ps">Heat transfer in resistance welding</a>, by Adam 
    213     Powell (<a href="resweld-solution.ps">solution</a>, 
    214     <a href="resweld.zip">source</a> <a href="resweld/">directory</a>, 
    215     <a href="resweld.meta">metadata</a>), last modified June 30, 2004.</li> 
    216   <li><a href="semiinf1.pdf">Heat transfer in semi-infinite body</a>, by Matthew  
    217     Krane (<a href="semiinf1_solution.pdf">solution</a>, 
    218     <a href="semiinf1.doc">source</a>, 
    219     <a href="semiinf1_solution.doc">solution source</a>, 
    220     <a href="semiinf1.meta">metadata</a>), last modified April 07, 2006.</li> 
    221   <li><a href="hepyrex.ps">Helium diffusion through a pyrex tube</a>, by Adam 
    222     Powell (<a href="hepyrex-solution.pdf">solution</a>, 
    223     <a href="hepyrex.zip">source</a> <a href="hepyrex/">directory</a>, 
    224     <a href="hepyrex.meta">metadata</a>), last modified March 29, 2005.</li> 
    225   <li><a href="investmold.pdf">Investment casting heat transfer</a>, by Adam 
    226     Powell (<a href="investmold-solution.pdf">solution</a>, 
    227     <a href="investmold.tex">source</a>, 
    228     <a href="investmold-solution.tex">solution source</a>, 
    229     <a href="investmold.meta">metadata</a>), last modified December 15, 
    230     2004.</li> 
    231   <li><a href="feo.pdf">Iron oxidation</a>, by Adam Powell 
    232     (<a href="feo-solution.pdf">solution</a>, <a href="feo.tex">source</a>, 
    233     <a href="feo-solution.tex">solution source</a>, 
    234     <a href="feo.meta">metadata</a>), last modified August 19, 2004.</li> 
    235   <li><a href="tijoule.pdf">Joule heating of a titanium rod</a>, by Adam Powell 
    236     (<a href="tijoule-solution.ps">solution</a>, 
    237     <a href="tijoule.zip">source</a> <a href="tijoule/">directory</a>, 
    238     <a href="tijoule.meta">metadata</a>), last modified October 14, 2004.</li> 
    239   <li><a href="ladle1.ps">Ladle metallurgy I: scaleup of a lab design</a>, by 
    240     Adam Powell (<a href="ladle1-solution.pdf">solution</a>, 
    241     <a href="ladle1.zip">source</a> <a href="ladle1/">directory</a>, 
    242     <a href="ladle1.meta">metadata</a>), last modified June 18, 2004.</li> 
    243   <li><a href="ladle2.pdf">Ladle metallurgy II: natural convection</a>, by 
    244     Adam Powell (<a href="ladle2-solution.ps">solution</a>, 
    245     <a href="ladle2.zip">source</a> <a href="ladle2/">directory</a>, 
    246     <a href="ladle2.meta">metadata</a>), last modified June 18, 2004.</li> 
    247   <li><a href="bllamturb.pdf">Laminar and turbulent boundary layers</a>, by 
    248     Adam Powell (<a href="bllamturb-solution.ps">solution</a>, 
    249     <a href="bllamturb.zip">source</a> <a href="bllamturb/">directory</a>, 
    250     <a href="bllamturb.meta">metadata</a>), last modified December 9, 
    251     2004.</li> 
    252   <li><a href="cylayers.pdf">Layered furnace wall and British units</a>, by 
    253     Adam Powell (<a href="cylayers-solution.pdf">solution</a>, 
    254     <a href="cylayers.tex">source</a>, <a href="cylayers-solution.tex">solution 
    255     source</a>, <a href="cylayers.meta">metadata</a>), last modified August 19, 
    256     2004.</li> 
    257   <li><a href="musclediffuse.ps">Macromolecule diffusion into muscle 
    258     tissue</a>, by Adam Powell 
    259     (<a href="musclediffuse-solution.pdf">solution</a>, 
    260     <a href="musclediffuse.zip">source</a> 
    261     <a href="musclediffuse/">directory</a>, 
    262     <a href="musclediffuse.meta">metadata</a>), last modified July 8, 
    263     2004.</li> 
    264   <li><a href="mbe.ps">Molecular beam epitaxy deposition rate</a>, by 
    265     Adam Powell (<a href="mbe-solution.pdf">solution</a>, 
    266     <a href="mbe.zip">source</a> <a href="mbe/">directory</a>, 
    267     <a href="mbe.meta">metadata</a>), last modified February 6, 2005.</li> 
    268   <li><a href="ebmeltvap.pdf">Multicomponent evaporation I: evaporation of 
    269     volatile impurities during electron beam melting</a>, by Adam Powell 
    270     (<a href="ebmeltvap-solution.pdf">solution</a>, 
    271     <a href="ebmeltvap.tex">source</a>, 
    272     <a href="ebmeltvap-solution.tex">solution source</a>, 
    273     <a href="ebmeltvap.meta">metadata</a>), last modified June 20, 2005.</li> 
    274   <li><a href="ebmeltvap2.pdf">Multicomponent evaporation II: evaporation of 
    275     alloying elements from titanium</a>, by Adam Powell 
    276     (<a href="ebmeltvap2-solution.pdf">solution</a>, 
    277     <a href="ebmeltvap2.tex">source</a>, 
    278     <a href="ebmeltvap2-solution.tex">solution source</a>, 
    279     <a href="ebmeltvap2.meta">metadata</a>), last modified June 20, 2005.</li> 
    280   <li><a href="window.pdf">Natural convection between window panes</a>, by 
    281     Adam Powell (<a href="window-solution.ps">solution</a>, 
    282     <a href="window.zip">source</a> <a href="window/">directory</a>, 
    283     <a href="window.meta">metadata</a>), last modified December 12, 2004.</li> 
    284   <li><a href="natsimple.pdf">Natural convection made simpler but less 
    285     general</a>, by Adam Powell (<a href="natsimple-solution.pdf">solution</a>, 
    286     <a href="natsimple.tex">source</a>, 
    287     <a href="natsimple-solution.tex">solution source</a>, 
    288     <a href="natsimple.meta">metadata</a>), last modified December 12, 
    289     2004.</li> 
    290   <li><a href="tundish.ps">New tundish design</a>, by Adam Powell 
    291     (<a href="tundish-solution.pdf">solution</a>, 
    292     <a href="tundish.zip">source</a> <a href="tundish/">directory</a>, 
    293     <a href="tundish.meta">metadata</a>), last modified June 19, 2006.</li> 
    294   <li><a href="fen.ps">Nitriding of an iron thin film</a>, by Adam 
    295     Powell (<a href="fen-solution.ps">solution</a>, 
    296     <a href="fen.zip">source</a> <a href="fen/">directory</a>, 
    297     <a href="fen.meta">metadata</a>), last modified August 16, 2004.</li> 
    298   <li><a href="polyflow.pdf">Non-Newtonian polymer flow in a channel</a>, by 
    299     Adam Powell (<a href="polyflow-solution.ps">solution</a>, 
    300     <a href="polyflow.zip">source</a> <a href="polyflow/">directory</a>, 
    301     <a href="polyflow.meta">metadata</a>), last modified September 21, 
    302     2004.</li> 
    303   <li><a href="glassfloat.pdf">Plate glass casting</a>, by Adam Powell 
    304     (<a href="glassfloat-solution.ps">solution</a>, 
    305     <a href="glassfloat.zip">source</a> <a href="glassfloat/">directory</a>, 
    306     <a href="glassfloat.meta">metadata</a>), last modified June 18, 2004.</li> 
    307   <li><a href="polyextrude.pdf">Polymer extrusion and thermal stress</a>, by 
    308     Adam Powell (<a href="polyextrude-solution.pdf">solution</a>, 
    309     <a href="polyextrude.zip">source</a> <a href="polyextrude/">directory</a>, 
    310     <a href="polyextrude.meta">metadata</a>), last modified August 16, 
    311     2004.</li> 
    312   <li><a href="polycost.pdf">Polymer extrusion cost modeling</a>, by Randolph 
    313     E. Kirchain, Jr. (<a href="polycost-solution.pdf">solution</a>, 
    314     <a href="polycost.odt">source</a>, 
    315     <a href="polycost-solution.odt">solution source</a>, 
    316     <a href="polycost.meta">metadata</a>), last modified April 4, 2006.</li> 
    317   <li><a href="estatrad.pdf">Radiation in electrostatic levitation</a>, by 
    318     Adam Powell (<a href="estatrad-solution.pdf">solution</a>, 
    319     <a href="estatrad.zip">source</a> <a href="estatrad/">directory</a>, 
    320     <a href="estatrad.meta">metadata</a>), last modified September 20, 
    321     2004.</li> 
    322   <li><a href="factarg.ps">Radiation in facing target sputtering</a>, by Adam 
    323     Powell (<a href="factarg-solution.ps">solution</a>, 
    324     <a href="factarg.zip">source</a> <a href="factarg/">directory</a>, 
    325     <a href="factarg.meta">metadata</a>), last modified October 14, 2004.</li> 
    326   <li><a href="hallcellrad.pdf">Radiation in Hall-H&eacute;roult cell aluminum 
    327     smelting</a>, by Adam Powell 
    328     (<a href="hallcellrad-solution.pdf">solution</a>, 
    329     <a href="hallcellrad.zip">source</a> <a href="hallcellrad/">directory</a>, 
    330     <a href="hallcellrad.meta">metadata</a>), last modified April 9, 2006.</li> 
    331   <li><a href="zro2pvd.pdf">Radiation in zirconia physical vapor 
    332     deposition</a>, by Adam Powell 
    333     (<a href="zro2pvd-solution.pdf">solution</a>, 
    334     <a href="zro2pvd.zip">source</a> <a href="zro2pvd/">directory</a>, 
    335     <a href="zro2pvd.meta">metadata</a>), last modified September 21, 
    336     2004.</li> 
    337   <li><a href="cuberad.pdf">Radiative cooling of an aluminum cube</a>, by Adam 
    338     Powell (<a href="cuberad-solution.pdf">solution</a>, 
    339     <a href="cuberad.tex">source</a>, 
    340     <a href="cuberad-solution.tex">solution source</a>, 
    341     <a href="cuberad.meta">metadata</a>), last modified February 28, 2006.</li> 
    342   <li><a href="resdims.pdf">Resistance welding dimensional analysis</a>, by 
    343     Adam Powell (<a href="resdims-solution.pdf">solution</a>, 
    344     <a href="resdims.zip">source</a> <a href="resdims/">directory</a>, 
    345     <a href="resdims.meta">metadata</a>), last modified March 31, 2006.</li> 
    346   <li><a href="particles.pdf">Settling of magnesium hydroxide particles in 
    347     water</a>, by Adam Powell (<a href="particles-solution.pdf">solution</a>, 
    348     <a href="particles.tex">source</a>, 
    349     <a href="particles-solution.tex">solution source</a>, 
    350     <a href="particles.meta">metadata</a>), last modified March 26, 2005.</li> 
    351   <li><a href="sinter-tcp.pdf">Sintering tricalcium phosphate particles</a>, by 
    352     Rene Chen, Jiji Gu, Kimberly Kam, Janet Leung and Sally Lou 
    353     (<a href="sinter-tcp-solution.pdf">solution</a>, 
    354     <a href="sinter-tcp.zip">source</a> <a href="sinter-tcp/">directory</a>, 
    355     <a href="sinter-tcp.meta">metadata</a>), last modified July 17, 2006.</li> 
    356   <li><a href="h2sofc.pdf">Solid oxide hydrogen fuel cell</a>, by Michael Falk 
    357     (<a href="h2sofc-solution.pdf">solution</a>, 
    358     <a href="h2sofc.zip">source</a> <a href="h2sofc/">directory</a>, 
    359     <a href="h2sofc.meta">metadata</a>), last modified January 27, 2006.</li> 
    360   <li><a href="finitediff.pdf">Spreadsheet finite difference model of 1-D 
    361     unsteady conduction</a>, by David Dussault and Adam Powell 
    362     (<a href="finitediff-solution.pdf">solution</a>, 
    363     <a href="finitediff.zip">source</a> <a href="finitediff/">directory</a>, 
    364     spreadsheets: <a href="finitediff/finitediff.gnumeric">Gnumeric</a>, 
    365     <a href="finitediff/finitediff.xls">Excel</a>, 
    366     <a href="finitediff.meta">metadata</a>), last modified September 16, 
    367     2004.</li> 
    368   <li><a href="drainup.ps">Tank drainage through a rising tube</a>, by Adam 
    369     Powell (<a href="drainup-solution.pdf">solution</a>, 
    370     <a href="drainup.zip">source</a> <a href="drainup/">directory</a>, 
    371     <a href="drainup.meta">metadata</a>), last modified December 10, 2004.</li> 
    372   <li><a href="thermselect.pdf">Thermal properties and optimal materials 
    373     selection</a>, by Adam Powell 
    374     (<a href="thermselect-solution.pdf">solution</a>, 
    375     <a href="thermselect.tex">source</a>, 
    376     <a href="thermselect-solution.tex">solution source</a>, 
    377     <a href="thermselect.meta">metadata</a>), last modified June 17, 2004.</li> 
    378   <li><a href="wiedfranz.pdf">Titanium-aluminum alloy thermal conductivity</a>, 
    379     by Adam Powell (<a href="wiedfranz-solution.pdf">solution</a>, 
    380     <a href="wiedfranz.tex">source</a>, 
    381     <a href="wiedfranz-solution.tex">solution source</a>, 
    382     <a href="wiedfranz.meta">metadata</a>), last modified September 14, 
    383     2004.</li> 
    384   <li><a href="sphlow.ps">Titanium nitride inclusion removal in an electron 
    385     beam melting hearth</a>, by Adam Powell ( 
    386     <a href="sphlow-solution.pdf">solution</a>,  
    387     <a href="sphlow.zip">source</a> <a href="sphlow/">directory</a>, 
    388     <a href="sphlow.meta">metadata</a>), last modified January 24, 2005.</li> 
    389   <li><a href="torsionviscometer.pdf">Torsional viscometer</a>, by Adam Powell 
    390     (<a href="torsionviscometer-solution.pdf">solution</a>, 
    391     <a href="torsionviscometer.tex">source</a>, 
    392     <a href="torsionviscometer-solution.tex">solution source</a>, 
    393     <a href="torsionviscometer.meta">metadata</a>), last modified May 9, 
    394     2005.</li> 
    395   <li><a href="tubeturb.pdf">Turbulence and mixing in a tube</a>, by Adam 
    396     Powell (<a href="tubeturb-solution.ps">solution</a>, 
    397     <a href="tubeturb.zip">source</a> <a href="tubeturb/">directory</a>, 
    398     <a href="tubeturb.meta">metadata</a>), last modified September 26, 
    399     2004.</li> 
    400   <li><a href="microturb.pdf">Turbulent microscale in an aqueous mixture</a>, 
    401     by Adam Powell (<a href="microturb-solution.pdf">solution</a>, 
    402     <a href="microturb.tex">source</a>, 
    403     <a href="microturb-solution.tex">solution source</a>, 
    404     <a href="microturb.meta">metadata</a>), last modified November 14, 
    405     2004.</li> 
    406   <li><a href="volht1.pdf">Volumetric heating of polymer sheet</a>,  
    407     by Matthew Krane (<a href="volht1_solution.pdf">solution</a>, 
    408     <a href="volht1.doc">source</a>, 
    409     <a href="volht1_solution.doc">solution source</a>, 
    410     <a href="volht1.meta">metadata</a>), last modified April 10, 
    411     2006.</li> 
    412   <li><a href="electroporation.pdf">Water disinfection by electroporation</a>,  
    413     by Paulo Jacob Silva, Thomas Schilling, Jonathan Tejada and Joy Yuan 
    414     (<a href="electroporation-solution.pdf">solution</a>, 
    415     <a href="electroporation.doc">source</a>, 
    416     <a href="electroporation-solution.doc">solution source</a>, 
    417     <a href="electroporation.meta">metadata</a>), last modified June 12, 
    418     2006.</li> 
    419   <li><a href="mgoetch.pdf">Water etching of magnesium oxide MEMS parts</a>, by 
    420     Adam Powell (<a href="mgoetch-solution.ps">solution</a>, 
    421     <a href="mgoetch.zip">source</a> <a href="mgoetch/">directory</a>, 
    422     <a href="mgoetch.meta">metadata</a>), last modified November 14, 2004.</li> 
    423 </ul> 
     4This webpage is obsolete, please change your links to 
     5<a href="http://teaching.matdl.org/">http://teaching.matdl.org/</a> 
    4246</body></html> 
  • trunk/matml/transport/problems/chrono.html

    r280 r289  
    22<body><center><h1>Transport Problems Chronological List</h1></center> 
    33 
    4 The list of <a href="./">transport problems</a> in reverse chronological 
    5 order of most recent modification: 
    6 <ul> 
    7   <li><a href="tio2-cvd.pdf">Chemical vapor deposition of titanium dioxide</a>, 
    8     by Byron Hsu, Wang Lei, Forrest Liau, David Lin and Teresa Wang 
    9     (<a href="tio2-cvd-solution.pdf">solution</a>,  
    10     <a href="tio2-cvd.odt">source</a>, 
    11     <a href="tio2-cvd-solution.odt">solution source</a>, 
    12     <a href="tio2-cvd.meta">metadata</a>), last modified February 22, 
    13     2007.</li> 
    14 <li><a href="ar_quench.pdf">Argon quenching of Ni-based alloy 
    15 cylindrical bars</a>, 
    16 by Matthew Krane 
    17     (<a href="ar_quenchsolns.pdf">solution</a>, 
    18     <a href="ar_quench.doc">source</a>, 
    19     <a href="ar_quenchsolns.doc">solution source</a>,   
    20     <a href="ar_quench.meta">metadata</a>), last modified December 7, 
    21 2006.</li> 
    22 <li><a href="sinter-tcp.pdf">Sintering tricalcium phosphate particles</a>, by 
    23     Rene Chen, Jiji Gu, Kimberly Kam, Janet Leung and Sally Lou 
    24     (<a href="sinter-tcp-solution.pdf">solution</a>, 
    25     <a href="sinter-tcp.zip">source</a> <a href="sinter-tcp/">directory</a>, 
    26     <a href="sinter-tcp.meta">metadata</a>), last modified July 17, 2006.</li> 
    27   <li><a href="castshell.ps">Freezing by radiation and convection</a>, by Adam 
    28     Powell (<a href="castshell-solution.pdf">solution</a>, 
    29     <a href="castshell.zip">source</a> <a href="castshell/">directory</a>, 
    30     <a href="castshell.meta">metadata</a>), last modified June 30, 2006.</li> 
    31   <li><a href="bloodfilter.pdf">Blood filtration</a>, by Hashem Dabbas, Luis 
    32     Fernandez and Joshua Lake (<a href="bloodfilter-solution.pdf">solution</a>, 
    33     <a href="bloodfilter.odt">source</a>, 
    34     <a href="bloodfilter-solution.odt">solution source</a>, 
    35     <a href="bloodfilter.meta">metadata</a>), last modified June 30, 2006.</li> 
    36   <li><a href="blood-fat.pdf">Blood flow and vascular deposits</a>, by 
    37     Hai Na Chen, Kay Furman and Jaqueline Greene 
    38     (<a href="blood-fat-solution.pdf">solution</a>,  
    39     <a href="blood-fat.odt">source</a>, 
    40     <a href="blood-fat-solution.odt">solution source</a>, 
    41     <a href="blood-fat.meta">metadata</a>), last modified June 19, 2006.</li> 
    42   <li><a href="tundish.ps">New tundish design</a>, by Adam Powell 
    43     (<a href="tundish-solution.pdf">solution</a>, 
    44     <a href="tundish.zip">source</a> <a href="tundish/">directory</a>, 
    45     <a href="tundish.meta">metadata</a>), last modified June 19, 2006.</li> 
    46   <li><a href="electroporation.pdf">Water disinfection by electroporation</a>,  
    47     by Paulo Jacob Silva, Thomas Schilling, Jonathan Tejada and Joy Yuan 
    48     (<a href="electroporation-solution.pdf">solution</a>, 
    49     <a href="electroporation.doc">source</a>, 
    50     <a href="electroporation-solution.doc">solution source</a>, 
    51     <a href="electroporation.meta">metadata</a>), last modified June 12, 
    52     2006.</li> 
    53   <li><a href="difintg1.pdf">Application of integral analysis to 
    54 semi-infinite diffusion couple</a>, by Matthew Krane 
    55     (<a href="difintg1_solution.pdf">solution</a>, 
    56     <a href="difintg1.doc">source</a>, 
    57     <a href="difintg1_solution.doc">solution source</a>, 
    58     <a href="difintg1.meta">metadata</a>), last modified May 8, 
    59     2006.</li> 
    60   <li><a href="growpresp1.pdf">Growth of precipitate particle from super 
    61 saturated solid solution</a>, by Matthew Krane 
    62     (<a href="growpresp1_solution.pdf">solution</a>, 
    63     <a href="growpresp1.doc">source</a>, 
    64     <a href="growpresp1_solution.doc">solution source</a>, 
    65     <a href="growpresp1.meta">metadata</a>), last modified May 1, 
    66     2006.</li> 
    67   <li><a href="castcyl1.pdf">Casting of a cylindrical part in a thermally  
    68 resistive mold</a>, by Matthew Krane 
    69     (<a href="castcyl1_solution.pdf">solution</a>, 
    70     <a href="castcyl1.doc">source</a>,   
    71     <a href="castcyl1_solution.doc">solution source</a>,  
    72     <a href="castcyl1.meta">metadata</a>), last modified April 24,     
    73     2006.</li> 
    74   <li><a href="volht1.pdf">Volumetric heating of polymer sheet</a>, 
    75     by Matthew Krane (<a href="volht1_solution.pdf">solution</a>,   
    76     <a href="volht1.doc">source</a>, 
    77     <a href="volht1_solution.doc">solution source</a>, 
    78     <a href="volht1.meta">metadata</a>), last modified April 10, 
    79   2006.</li> 
    80   <li><a href="hallcellrad.pdf">Radiation in Hall-H&eacute;roult cell 
    81 aluminum 
    82     smelting</a>, by Adam Powell 
    83     (<a href="hallcellrad-solution.pdf">solution</a>, 
    84     <a href="hallcellrad.zip">source</a> <a 
    85 href="hallcellrad/">directory</a>, 
    86     <a href="hallcellrad.meta">metadata</a>), last modified April 9, 
    87 2006.</li> 
    88   <li><a href="semiinf1.pdf">Heat Transfer in semi-infinite body</a>, by 
    89 Matthew  
    90     Krane  (<a href="semiinf1_solution.pdf">solution</a>, 
    91     <a href="semiinf1.doc">source</a>, 
    92     <a href="semiinf1_solution.doc">solution source</a>, 
    93     <a href="semiinf1.meta">metadata</a>), last modified April 7, 
    94 2006.</li> 
    95   <li><a href="polycost.pdf">Polymer extrusion cost modeling</a>, by 
    96 Randolph 
    97     E. Kirchain, Jr. (<a href="polycost-solution.pdf">solution</a>, 
    98     <a href="polycost.odt">source</a>, 
    99     <a href="polycost-solution.odt">solution source</a>, 
    100     <a href="polycost.meta">metadata</a>), last modified April 4, 
    101 2006.</li> 
    102   <li><a href="resdims.pdf">Resistance welding dimensional analysis</a>, 
    103 by 
    104     Adam Powell (<a href="resdims-solution.pdf">solution</a>, 
    105     <a href="resdims.zip">source</a> <a href="resdims/">directory</a>, 
    106     <a href="resdims.meta">metadata</a>), last modified March 31, 
    107 2006.</li> 
    108   <li><a href="adhesdiff.ps">Diffusion of water into a flowing adhesive 
    109     sheet</a>, by Adam Powell (<a 
    110 href="adhesdiff-solution.ps">solution</a>, 
    111     <a href="adhesdiff.zip">source</a> <a href="adhesdiff/">directory</a>, 
    112     <a href="adhesdiff.meta">metadata</a>), last modified March 28, 
    113 2006.</li> 
    114   <li><a href="cuberad.pdf">Radiative cooling of an aluminum cube</a>, by 
    115 Adam 
    116     Powell (<a href="cuberad-solution.pdf">solution</a>, 
    117     <a href="cuberad.tex">source</a>, 
    118     <a href="cuberad-solution.tex">solution source</a>, 
    119     <a href="cuberad.meta">metadata</a>), last modified February 28, 
    120 2006.</li> 
    121   <li><a href="crystalfree.pdf">Crystal-free zone in a glass-ceramic 
    122 dish</a>, 
    123     by Adam Powell (<a href="crystalfree-solution.ps">solution</a>, 
    124     <a href="crystalfree.zip">source</a> <a 
    125 href="crystalfree/">directory</a>, 
    126     <a href="crystalfree.meta">metadata</a>), last modified February 23, 
    127     2006.</li> 
    128   <li><a href="heatecon.pdf">Heat transfer, cost modeling and process 
    129     selection</a>, by Randolph E. Kirchain, Jr. and Adam C. Powell, IV 
    130     (<a href="heatecon-solution.pdf">solution</a>, 
    131     <a href="heatecon.zip">source</a> <a href="heatecon/">directory</a>, 
    132     <a href="heatecon.meta">metadata</a>), last modified February 12, 
    133     2006.</li> 
    134   <li><a href="h2sofc.pdf">Solid oxide hydrogen fuel cell</a>, by Michael 
    135 Falk 
    136     (<a href="h2sofc-solution.pdf">solution</a>, 
    137     <a href="h2sofc.zip">source</a> <a href="h2sofc/">directory</a>, 
    138     <a href="h2sofc.meta">metadata</a>), last modified January 27, 
    139 2006.</li> 
    140   <li><a href="catalflow.ps">Flow through a catalytic reactor</a>, by Adam 
    141     Powell (<a href="catalflow-solution.ps">solution</a>, 
    142     <a href="catalflow.zip">source</a> <a href="catalflow/">directory</a>, 
    143     <a href="catalflow.meta">metadata</a>), last modified November 27, 
    144     2005.</li> 
    145   <li><a href="cvi.ps">Chemical Vapor Infiltration for Carbon-Carbon 
    146     Composites</a>, by Adam Powell (<a 
    147 href="cvi-solution.pdf">solution</a>, 
    148     <a href="cvi.zip">source</a> <a href="cvi/">directory</a>, 
    149     <a href="cvi.meta">metadata</a>), last modified November 27, 
    150 2005.</li> 
    151   <li><a href="lakefreeze.pdf">Freezing lake</a>, by Adam Powell 
    152     (<a href="lakefreeze-solution.pdf">solution</a>, 
    153     <a href="lakefreeze.zip">source</a> <a 
    154 href="lakefreeze/">directory</a>, 
    155     <a href="lakefreeze.meta">metadata</a>), last modified September 25, 
    156     2005.</li> 
    157   <li><a href="glassfloat.pdf">Plate glass casting</a>, by Adam Powell 
    158     (<a href="glassfloat-solution.ps">solution</a>, 
    159     <a href="glassfloat.zip">source</a> <a 
    160 href="glassfloat/">directory</a>, 
    161     <a href="glassfloat.meta">metadata</a>), last modified July 8, 
    162 2005.</li> 
    163   <li><a href="tubextrude.pdf">Extrusion of a tube</a>, by Adam Powell 
    164     (<a href="tubextrude-solution.ps">solution</a>, 
    165     <a href="tubextrude.zip">source</a> <a 
    166 href="tubextrude/">directory</a>, 
    167     <a href="tubextrude.meta">metadata</a>), last modified July 8, 
    168 2005.</li> 
    169   <li><a href="ebmeltvap2.pdf">Multicomponent evaporation II: evaporation 
    170 of 
    171     alloying elements from titanium</a>, by Adam Powell 
    172     (<a href="ebmeltvap2-solution.pdf">solution</a>, 
    173     <a href="ebmeltvap2.tex">source</a>, 
    174     <a href="ebmeltvap2-solution.tex">solution source</a>, 
    175     <a href="ebmeltvap2.meta">metadata</a>), last modified June 20, 
    176 2005.</li> 
    177   <li><a href="ebmeltvap.pdf">Multicomponent evaporation I: evaporation of 
    178     volatile impurities during electron beam melting</a>, by Adam Powell 
    179     (<a href="ebmeltvap-solution.pdf">solution</a>, 
    180     <a href="ebmeltvap.tex">source</a>, 
    181     <a href="ebmeltvap-solution.tex">solution source</a>, 
    182     <a href="ebmeltvap.meta">metadata</a>), last modified June 20, 
    183 2005.</li> 
    184   <li><a href="radcond.pdf">Dimensional analysis: mixed radiation and 
    185     conduction</a>, by Adam Powell 
    186     (<a href="radcond-solution.pdf">solution</a>, 
    187     <a href="radcond.tex">source</a>, 
    188     <a href="radcond-solution.tex">solution source</a>, 
    189     <a href="radcond.meta">metadata</a>), last modified May 26, 2005.</li> 
    190   <li><a href="torsionviscometer.pdf">Torsional viscometer</a>, by Adam 
    191 Powell 
    192     (<a href="torsionviscometer-solution.pdf">solution</a>, 
    193     <a href="torsionviscometer.tex">source</a>, 
    194     <a href="torsionviscometer-solution.tex">solution source</a>, 
    195     <a href="torsionviscometer.meta">metadata</a>), last modified May 9, 
    196     2005.</li> 
    197   <li><a href="contflow.pdf">Batch and continuous flow reactors</a>, by 
    198 Adam 
    199     Powell (<a href="contflow-solution.pdf">solution</a>, 
    200     <a href="contflow.tex">source</a>, 
    201     <a href="contflow-solution.tex">solution source</a>, 
    202     <a href="contflow.meta">metadata</a>), last modified April 17, 
    203 2005.</li> 
    204   <li><a href="castdiffheat.pdf">Heat conduction and diffusion in alloy 
    205     casting</a>, by Adam Powell 
    206     (<a href="castdiffheat-solution.ps">solution</a>, 
    207     <a href="castdiffheat.zip">source</a> 
    208     <a href="castdiffheat/">directory</a>, 
    209     <a href="castdiffheat.meta">metadata</a>), last modified March 31, 
    210     2005.</li> 
    211   <li><a href="bloodflow.pdf">Fluid flow in blood vessels</a>, by Adam 
    212 Powell 
    213     (<a href="bloodflow-solution.pdf">solution</a>, 
    214     <a href="bloodflow.tex">source</a>, 
    215     <a href="bloodflow-solution.tex">solution source</a>, 
    216     <a href="bloodflow.meta">metadata</a>), last modified March 31, 
    217 2005.</li> 
    218   <li><a href="hepyrex.ps">Helium diffusion through a pyrex tube</a>, by 
    219 Adam 
    220     Powell (<a href="hepyrex-solution.pdf">solution</a>, 
    221     <a href="hepyrex.zip">source</a> <a href="hepyrex/">directory</a>, 
    222     <a href="hepyrex.meta">metadata</a>), last modified March 29, 
    223 2005.</li> 
    224   <li><a href="particles.pdf">Settling of magnesium hydroxide particles in 
    225     water</a>, by Adam Powell (<a 
    226 href="particles-solution.pdf">solution</a>, 
    227     <a href="particles.tex">source</a>, 
    228     <a href="particles-solution.tex">solution source</a>, 
    229     <a href="particles.meta">metadata</a>), last modified March 26, 
    230 2005.</li> 
    231   <li><a href="zincdimens.pdf">Dimensional analysis: diffusion of a zinc 
    232     coating</a>, by Adam Powell (<a 
    233 href="zincdimens-solution.ps">solution</a>, 
    234     <a href="zincdimens.zip">source</a> <a 
    235 href="zincdimens/">directory</a>, 
    236     <a href="zincdimens.meta">metadata</a>), last modified March 24, 
    237 2005.</li> 
    238   <li><a href="mbe.ps">Molecular beam epitaxy deposition rate</a>, by 
    239     Adam Powell (<a href="mbe-solution.pdf">solution</a>, 
    240     <a href="mbe.zip">source</a> <a href="mbe/">directory</a>, 
    241     <a href="mbe.meta">metadata</a>), last modified February 6, 2005.</li> 
    242   <li><a href="sphlow.ps">Titanium nitride inclusion removal in an 
    243 electron 
    244     beam melting hearth</a>, by Adam Powell ( 
    245     <a href="sphlow-solution.pdf">solution</a>,  
    246     <a href="sphlow.zip">source</a> <a href="sphlow/">directory</a>, 
    247     <a href="sphlow.meta">metadata</a>), last modified January 24, 
    248 2005.</li> 
    249   <li><a href="fdheat.pdf">Finite differences in heat conduction</a>, by 
    250 Adam 
    251     Powell (<a href="fdheat-solution.pdf">solution</a>, 
    252     <a href="fdheat.tex">source</a>, 
    253     <a href="fdheat-solution.tex">solution source</a>, 
    254     <a href="fdheat.meta">metadata</a>), last modified December 20, 
    255 2004.</li> 
    256   <li><a href="investmold.pdf">Investment casting heat transfer</a>, by 
    257 Adam 
    258     Powell (<a href="investmold-solution.pdf">solution</a>, 
    259     <a href="investmold.tex">source</a>, 
    260     <a href="investmold-solution.tex">solution source</a>, 
    261     <a href="investmold.meta">metadata</a>), last modified December 15, 
    262     2004.</li> 
    263   <li><a href="natsimple.pdf">Natural convection made simpler but less 
    264     general</a>, by Adam Powell (<a 
    265 href="natsimple-solution.pdf">solution</a>, 
    266     <a href="natsimple.tex">source</a>, 
    267     <a href="natsimple-solution.tex">solution source</a>, 
    268     <a href="natsimple.meta">metadata</a>), last modified December 12, 
    269     2004.</li> 
    270   <li><a href="window.pdf">Natural convection between window panes</a>, by 
    271     Adam Powell (<a href="window-solution.ps">solution</a>, 
    272     <a href="window.zip">source</a> <a href="window/">directory</a>, 
    273     <a href="window.meta">metadata</a>), last modified December 12, 
    274 2004.</li> 
    275   <li><a href="drainup.ps">Tank drainage through a rising tube</a>, by 
    276 Adam 
    277     Powell (<a href="drainup-solution.pdf">solution</a>, 
    278     <a href="drainup.zip">source</a> <a href="drainup/">directory</a>, 
    279     <a href="drainup.meta">metadata</a>), last modified December 10, 
    280 2004.</li> 
    281   <li><a href="coextrude.ps">Coextrusion of multilayer polymer sheets</a>, 
    282 by 
    283     Adam Powell (<a href="coextrude-solution.ps">solution</a>, 
    284     <a href="coextrude.zip">source</a> <a href="coextrude/">directory</a>, 
    285     <a href="coextrude.meta">metadata</a>), last modified December 9, 
    286     2004.</li> 
    287   <li><a href="cvdreact.ps">Chemical vapor deposition reactor design</a>, 
    288 by 
    289     Adam Powell (<a href="cvdreact-solution.ps">solution</a>, 
    290     <a href="cvdreact.zip">source</a> <a href="cvdreact/">directory</a>, 
    291     <a href="cvdreact.meta">metadata</a>), last modified December 9, 
    292 2004.</li> 
    293   <li><a href="htoutline.pdf">A heat transfer calculation</a>, by Adam 
    294 Powell 
    295     (<a href="htoutline-solution.pdf">solution</a>, 
    296     <a href="htoutline.tex">source</a>, 
    297     <a href="htoutline-solution.tex">solution source</a>, 
    298     <a href="htoutline.meta">metadata</a>), last modified December 9, 
    299     2004.</li> 
    300   <li><a href="bllamturb.pdf">Laminar and turbulent boundary layers</a>, 
    301 by 
    302     Adam Powell (<a href="bllamturb-solution.ps">solution</a>, 
    303     <a href="bllamturb.zip">source</a> <a href="bllamturb/">directory</a>, 
    304     <a href="bllamturb.meta">metadata</a>), last modified December 9, 
    305     2004.</li> 
    306   <li><a href="mgoetch.pdf">Water etching of magnesium oxide MEMS 
    307 parts</a>, by 
    308     Adam Powell (<a href="mgoetch-solution.ps">solution</a>, 
    309     <a href="mgoetch.zip">source</a> <a href="mgoetch/">directory</a>, 
    310     <a href="mgoetch.meta">metadata</a>), last modified November 14, 
    311 2004.</li> 
    312   <li><a href="microturb.pdf">Turbulent microscale in an aqueous 
    313 mixture</a>, 
    314     by Adam Powell (<a href="microturb-solution.pdf">solution</a>, 
    315     <a href="microturb.tex">source</a>, 
    316     <a href="microturb-solution.tex">solution source</a>, 
    317     <a href="microturb.meta">metadata</a>), last modified November 14, 
    318     2004.</li> 
    319   <li><a href="czoch.ps">Czochralski crystal growth</a>, by Adam Powell 
    320     (<a href="czoch-solution.pdf">solution</a>, <a 
    321 href="czoch.zip">source</a> 
    322     <a href="czoch/">directory</a>, <a href="czoch.meta">metadata</a>), 
    323 last 
    324     modified October 28 2004.</li> 
    325   <li><a href="factarg.ps">Radiation in facing target sputtering</a>, by 
    326 Adam 
    327     Powell (<a href="factarg-solution.ps">solution</a>, 
    328     <a href="factarg.zip">source</a> <a href="factarg/">directory</a>, 
    329     <a href="factarg.meta">metadata</a>), last modified October 14, 
    330 2004.</li> 
    331   <li><a href="tijoule.pdf">Joule heating of a titanium rod</a>, by Adam 
    332 Powell 
    333     (<a href="tijoule-solution.ps">solution</a>, 
    334     <a href="tijoule.zip">source</a> <a href="tijoule/">directory</a>, 
    335     <a href="tijoule.meta">metadata</a>), last modified October 14, 
    336 2004.</li> 
    337   <li><a href="catconv.ps">Dimensional analysis: catalytic combustion of 
    338 carbon 
    339     monoxide</a>, by Adam Powell (<a 
    340 href="catconv-solution.ps">solution</a>, 
    341     <a href="catconv.zip">source</a> <a href="catconv/">directory</a>, 
    342     <a href="catconv.meta">metadata</a>), last modified October 3, 
    343 2004.</li> 
    344   <li><a href="tisi.pdf">Growth of a TiSi intermetallic layer</a>, by Adam 
    345     Powell (<a href="tisi-solution.ps">solution</a>, 
    346     <a href="tisi.zip">source</a> <a href="tisi/">directory</a>, 
    347     <a href="tisi.meta">metadata</a>), last modified September 28, 
    348 2004.</li> 
    349   <li><a href="decarb.pdf">Decarburization of solid low-carbon steel</a>, 
    350 by 
    351     Adam Powell (<a href="decarb-solution.pdf">solution</a>, 
    352     <a href="decarb.tex">source</a>, 
    353     <a href="decarb-solution.tex">solution source</a>, 
    354     <a href="decarb.meta">metadata</a>), last modified September 27, 
    355 2004.</li> 
    356   <li><a href="dopantdrive.pdf">Drive-in diffusion of semiconductor 
    357 dopant</a>, 
    358     by Adam Powell (<a href="dopantdrive-solution.ps">solution</a>, 
    359     <a href="dopantdrive.zip">source</a> <a 
    360 href="dopantdrive/">directory</a>, 
    361     <a href="dopantdrive.meta">metadata</a>), last modified September 26, 
    362     2004.</li> 
    363   <li><a href="cvd.ps">Chemical vapor deposition</a>, by Adam Powell 
    364     (<a href="cvd-solution.ps">solution</a>, <a href="cvd.zip">source</a> 
    365     <a href="cvd/">directory</a>, <a href="cvd.meta">metadata</a>), last 
    366     modified September 26, 2004.</li> 
    367   <li><a href="tubeturb.pdf">Turbulence and mixing in a tube</a>, by Adam 
    368     Powell (<a href="tubeturb-solution.ps">solution</a>, 
    369     <a href="tubeturb.zip">source</a> <a href="tubeturb/">directory</a>, 
    370     <a href="tubeturb.meta">metadata</a>), last modified September 26, 
    371     2004.</li> 
    372   <li><a href="platedrag.pdf">Drag force on a plate</a>, by Adam Powell 
    373     (<a href="platedrag-solution.pdf">solution</a>, 
    374     <a href="platedrag.tex">source</a>, 
    375     <a href="platedrag-solution.tex">solution source</a>, 
    376     <a href="platedrag.meta">metadata</a>), last modified September 26, 
    377     2004.</li> 
    378   <li><a href="polyflow.pdf">Non-Newtonian polymer flow in a channel</a>, 
    379 by 
    380     Adam Powell (<a href="polyflow-solution.ps">solution</a>, 
    381     <a href="polyflow.zip">source</a> <a href="polyflow/">directory</a>, 
    382     <a href="polyflow.meta">metadata</a>), last modified September 21, 
    383     2004.</li> 
    384   <li><a href="zro2pvd.pdf">Radiation in zirconia physical vapor 
    385     deposition</a>, by Adam Powell 
    386     (<a href="zro2pvd-solution.pdf">solution</a>, 
    387     <a href="zro2pvd.zip">source</a> <a href="zro2pvd/">directory</a>, 
    388     <a href="zro2pvd.meta">metadata</a>), last modified September 21, 
    389     2004.</li> 
    390   <li><a href="estatrad.pdf">Radiation in electrostatic levitation</a>, by 
    391     Adam Powell (<a href="estatrad-solution.pdf">solution</a>, 
    392     <a href="estatrad.zip">source</a> <a href="estatrad/">directory</a>, 
    393     <a href="estatrad.meta">metadata</a>), last modified September 20, 
    394     2004.</li> 
    395   <li><a href="centrifatom.ps">Electron beam centrifugal atomization of 
    396     metal</a>, by Adam Powell (<a 
    397 href="centrifatom-solution.pdf">solution</a>, 
    398     <a href="centrifatom.zip">source</a> <a 
    399 href="centrifatom/">directory</a>, 
    400     <a href="centrifatom.meta">metadata</a>), last modified September 18, 
    401     2004.</li> 
    402   <li><a href="finitediff.pdf">Spreadsheet finite difference model of 1-D 
    403     unsteady conduction</a>, by David Dussault and Adam Powell 
    404     (<a href="finitediff-solution.pdf">solution</a>, 
    405     <a href="finitediff.zip">source</a> <a 
    406 href="finitediff/">directory</a>, 
    407     spreadsheets: <a href="finitediff/finitediff.gnumeric">Gnumeric</a>, 
    408     <a href="finitediff/finitediff.xls">Excel</a>, 
    409     <a href="finitediff.meta">metadata</a>), last modified September 16, 
    410     2004.</li> 
    411   <li><a href="castabox.pdf">Cast-a-Box: Casting Conditions and 
    412     Macroporosity</a>, by Adam Powell 
    413     (<a href="castabox-solution.pdf">solution</a>, 
    414     <a href="castabox.zip">source</a> <a href="castabox/">directory</a>, 
    415     <a href="castabox.meta">metadata</a>), last modified September 16, 
    416     2004.</li> 
    417   <li><a href="wiedfranz.pdf">Titanium-aluminum alloy thermal 
    418 conductivity</a>, 
    419     by Adam Powell (<a href="wiedfranz-solution.pdf">solution</a>, 
    420     <a href="wiedfranz.tex">source</a>, 
    421     <a href="wiedfranz-solution.tex">solution source</a>, 
    422     <a href="wiedfranz.meta">metadata</a>), last modified September 14, 
    423     2004.</li> 
    424   <li><a href="widgetdrop.ps">Cooling of a little plastic widget</a>, by 
    425     Adam Powell (<a href="widgetdrop-solution.pdf">solution</a>, 
    426     <a href="widgetdrop.zip">source</a> <a 
    427 href="widgetdrop/">directory</a>, 
    428     <a href="widgetdrop.meta">metadata</a>), last modified August 20, 
    429     2004.</li> 
    430   <li><a href="cylayers.pdf">Layered furnace wall and British units</a>, 
    431 by 
    432     Adam Powell (<a href="cylayers-solution.pdf">solution</a>, 
    433     <a href="cylayers.tex">source</a>, <a 
    434 href="cylayers-solution.tex">solution 
    435     source</a>, <a href="cylayers.meta">metadata</a>), last modified 
    436 August 19, 
    437     2004.</li> 
    438   <li><a href="feo.pdf">Iron oxidation</a>, by Adam Powell 
    439     (<a href="feo-solution.pdf">solution</a>, <a 
    440 href="feo.tex">source</a>, 
    441     <a href="feo-solution.tex">solution source</a>, 
    442     <a href="feo.meta">metadata</a>), last modified August 19, 2004.</li> 
    443   <li><a href="polyextrude.pdf">Polymer extrusion and thermal stress</a>, 
    444 by 
    445     Adam Powell (<a href="polyextrude-solution.pdf">solution</a>, 
    446     <a href="polyextrude.zip">source</a> <a 
    447 href="polyextrude/">directory</a>, 
    448     <a href="polyextrude.meta">metadata</a>), last modified August 16, 
    449     2004.</li> 
    450   <li><a href="fen.ps">Nitriding of an iron thin film</a>, by Adam 
    451     Powell (<a href="fen-solution.ps">solution</a>, 
    452     <a href="fen.zip">source</a> <a href="fen/">directory</a>, 
    453     <a href="fen.meta">metadata</a>), last modified August 16, 2004.</li> 
    454   <li><a href="liposomes.pdf">Encapsulated liposomes for long-term drug 
    455     delivery</a>, by Adam Powell (<a 
    456 href="liposomes-solution.ps">solution</a>, 
    457     <a href="liposomes.zip">source</a> <a href="liposomes/">directory</a>, 
    458     <a href="liposomes.meta">metadata</a>), last modified August 16, 
    459 2004.</li> 
    460   <li><a href="musclediffuse.ps">Macromolecule diffusion into muscle 
    461     tissue</a>, by Adam Powell 
    462     (<a href="musclediffuse-solution.pdf">solution</a>, 
    463     <a href="musclediffuse.zip">source</a> 
    464     <a href="musclediffuse/">directory</a>, 
    465     <a href="musclediffuse.meta">metadata</a>), last modified July 8, 
    466     2004.</li> 
    467   <li><a href="cdmold2.pdf">CD injection molding II: Shear stress</a>, by 
    468 Adam 
    469     Powell (<a href="cdmold2-solution.pdf">solution</a>, 
    470     <a href="cdmold2.tex">source</a>, <a 
    471 href="cdmold2-solution.tex">solution 
    472     source</a>, <a href="cdmold2.meta">metadata</a>), last modified July 
    473 6, 
    474     2004.</li> 
    475   <li><a href="resweld.ps">Heat transfer in resistance welding</a>, by 
    476 Adam 
    477     Powell (<a href="resweld-solution.ps">solution</a>, 
    478     <a href="resweld.zip">source</a> <a href="resweld/">directory</a>, 
    479     <a href="resweld.meta">metadata</a>), last modified June 30, 
    480 2004.</li> 
    481   <li><a href="velocheat.pdf">Estimating fluid velocity using heat 
    482     transfer</a>, by Adam Powell (<a 
    483 href="velocheat-solution.ps">solution</a>, 
    484     <a href="velocheat.zip">source</a> <a href="velocheat/">directory</a>, 
    485     <a href="velocheat.meta">metadata</a>), last modified June 23, 
    486 2004.</li> 
    487   <li><a href="glassbubble.pdf">Floating bubbles out of molten glass</a>, 
    488 by 
    489     Adam Powell (<a href="glassbubble-solution.ps">solution</a>, 
    490     <a href="glassbubble.zip">source</a> <a 
    491 href="glassbubble/">directory</a>, 
    492     <a href="glassbubble.meta">metadata</a>), last modified June 23, 
    493 2004.</li> 
    494   <li><a href="cdmold1.ps">CD injection molding I: Navier-Stokes</a>, by 
    495     Adam Powell (<a href="cdmold1-solution.pdf">solution</a>, 
    496     <a href="cdmold1.zip">source</a> <a href="cdmold1/">directory</a>, 
    497     <a href="cdmold1.meta">metadata</a>), last modified June 23, 
    498 2004.</li> 
    499   <li><a href="ladle2.pdf">Ladle metallurgy II: natural convection</a>, by 
    500     Adam Powell (<a href="ladle2-solution.ps">solution</a>, 
    501     <a href="ladle2.zip">source</a> <a href="ladle2/">directory</a>, 
    502     <a href="ladle2.meta">metadata</a>), last modified June 18, 2004.</li> 
    503   <li><a href="ladle1.ps">Ladle metallurgy I: scaleup of a lab design</a>, 
    504 by 
    505     Adam Powell (<a href="ladle1-solution.pdf">solution</a>, 
    506     <a href="ladle1.zip">source</a> <a href="ladle1/">directory</a>, 
    507     <a href="ladle1.meta">metadata</a>), last modified June 18, 2004.</li> 
    508   <li><a href="pvc.pdf">Decomposition of Poly(vinyl chloride)</a>, by Adam 
    509     Powell (<a href="pvc-solution.pdf">solution</a>, 
    510     <a href="pvc.tex">source</a>, <a href="pvc-solution.tex">solution 
    511     source</a>, <a href="pvc.meta">metadata</a>), last modified June 17, 
    512     2004.</li> 
    513   <li><a href="thermselect.pdf">Thermal properties and optimal materials 
    514     selection</a>, by Adam Powell 
    515     (<a href="thermselect-solution.pdf">solution</a>, 
    516     <a href="thermselect.tex">source</a>, 
    517     <a href="thermselect-solution.tex">solution source</a>, 
    518     <a href="thermselect.meta">metadata</a>), last modified June 17, 
    519 2004.</li> 
    520 </ul> 
     4This webpage is obsolete, please change your links to 
     5<a href="http://teaching.matdl.org/">http://teaching.matdl.org/</a> 
    5216</body></html> 
    522  
  • trunk/matml/transport/problems/index.html

    r280 r289  
    22<body><center><h1>Transport Phenomena Problems Archive</h1></center> 
    33 
    4 Welcome to the transport phenomena problems archive.  Here you will find a wide 
    5 variety of exercises with <a href="../faq.html#solutions">solutions</a> in 
    6 fluid flow, heat transfer and mass transfer, most of 
    7 which are related to materials processing and performance.  Each problem is 
    8 provided along with the following searchable metadata attributes: 
    9 <ul> 
    10   <li>Author name(s), copyright and license.</li> 
    11   <li>Brief one-sentence description.</li> 
    12   <li>Requisite software, if any.</li> 
    13   <li>Problem and solution editable format, <i>e.g.</i> MSWord, OpenDocument, 
    14     (PDF)LaTeX</li> 
    15   <li>Problem and solution printable format, <i>e.g.</i> PDF, PostScript</li> 
    16   <li>Difficulty level (approx. undergraduate year or G)</li> 
    17   <li>Approximate solution time</li> 
    18   <li>Keywords</li> 
    19 </ul> 
    20 Keywords include one or more of the following: 
    21 <center><table> 
    22   <tr valign="top"><td><ul> 
    23     <li><a href="diffusion.html">Diffusion</a> (21)</li> 
    24     <li><a href="phase_change.html">Phase change</a> (11)</li> 
    25     <li><a href="macroscopic_balance.html">Macroscopic balance</a> (2)</li> 
    26     <li><a href="heat_conduction.html">Heat conduction</a> (30)</li> 
    27     <li><a href="radiation.html">Radiation</a> (11)</li> 
    28     <li><a href="solidification.html">Solidification</a> (5)</li> 
    29     <li><a href="evaporation.html">Evaporation</a> (3)</li> 
    30     <li><a href="biot_number.html">Biot number</a> (13)</li> 
    31     <li><a href="fourier_number.html">Fourier number</a> (3)</li> 
    32   </ul></td> 
    33   <td><ul> 
    34     <li><a href="dimensional_analysis.html">Dimensional analysis</a>(9)</li> 
    35     <li><a href="computation.html">Computation</a> (5)</li> 
    36     <li><a href="viscous_flow.html">Viscous flow</a> (13)</li> 
    37     <li><a href="stokes_flow.html">Stokes flow</a> (3)</li> 
    38     <li><a href="navier_stokes.html">Navier-Stokes</a> (5)</li> 
    39     <li><a href="reynolds_number.html">Reynolds number</a> (21)</li> 
    40     <li><a href="non_newtonian_fluid.html">Non-Newtonian fluid</a> (4)</li> 
    41     <li><a href="drag_force.html">Drag force</a> (14)</li> 
    42     <li><a href="bernoulli_equation.html">Bernoulli equation</a> (2)</li> 
    43   </ul></td> 
    44   <td><ul> 
    45     <li><a href="boundary_layers.html">Boundary layers</a> (18)</li> 
    46     <li><a href="forced_convection.html">Forced convection</a> (8)</li> 
    47     <li><a href="natural_convection.html">Natural convection</a> (3)</li> 
    48     <li><a href="heat_mass_transfer_coefficient.html">Heat/mass transfer 
    49       coefficient</a> (7)</li> 
    50     <li><a href="prandtl_schmidt_number.html">Prandtl/Schmidt number</a> 
    51       (8)</li> 
    52     <li><a href="nusselt_sherwood_number.html">Nusselt/Sherwood number</a> 
    53       (6)</li> 
    54     <li><a href="grashof_number.html">Grashof number</a> (3)</li> 
    55     <li><a href="continuous_flow_reactors.html">Continuous flow reactors</a> 
    56       (5)</li> 
    57     <li><a href="technical_cost_modeling.html">Technical cost modeling</a> 
    58       (2)</li> 
    59   </ul></td> 
    60   <td><ul> 
    61     <li><a href="sintering.html">Sintering</a> (1)</li> 
    62     <li><a href="metals.html">Metals</a> (27)</li> 
    63     <li><a href="polymers.html">Polymer</a> (14)</li> 
    64     <li><a href="ceramics.html">Ceramic</a> (12)</li> 
    65     <li><a href="glasses.html">Glass</a> (4)</li> 
    66     <li><a href="composite.html">Composite</a> (2)</li> 
    67     <li><a href="electronic_materials.html">Electronic materials</a> (9)</li> 
    68     <li><a href="biomaterials.html">Biomaterials</a> (7)</li> 
    69     <li><a href="integral_analysis.html">Integral analysis</a> (5)</li> 
    70   </ul></td></tr> 
    71 </table></center> 
    72  
    73 View the complete list of problems in <a href="alpha.html">alphabetical</a> or 
    74 <a href="chrono.html">reverse chronological</a> order (total: 82). 
     4This webpage is obsolete, please change your links to 
     5<a href="http://teaching.matdl.org/">http://teaching.matdl.org/</a> 
    756</body></html> 
  • trunk/matml/transport/readings/index.html

    r238 r289  
    22<body><center><h1>Transport Phenomena Readings Archive</h1></center> 
    33 
    4 These are relatively major readings (more than just two or three pages) 
    5 describing aspects of transport phenomena, often with examples. 
    6 <ul> 
    7   <li><a href="321-lectures.pdf">Lecture Notes</a> for a set of fluid dynamics 
    8     lectures in MIT graduate subject 3.21, <i>Kinetic Processes in 
    9     Materials</i>, by Adam Powell 
    10     (source <a href="321-lectures">directory</a>, 
    11     <a href="321-lectures.zip">zip</a>, 
    12     <a href="321-lectures.meta">metadata</a>), last modified March 27, 
    13     2006.</li> 
    14   <li><a href="ims-continuum.pdf">Continuum Lecture Notes</a> for about one 
    15     third of MIT Engineering School-Wide Elective subject 1.021J, 2.030J, 
    16     2.088J, 3.021J, 10.333J, 18.361J, 22.00J, HST.558J, <i>Introduction to 
    17     Modeling and Simulation</i>, by Adam Powell, Rofolfo Rosales and 
    18     Franz-Josef Ulm (source <a href="ims-continuum">directory</a>, 
    19     <a href="ims-continuum.zip">zip</a>, 
    20     <a href="ims-continuum.meta">metadata</a>), last modified March 31, 
    21     2006.</li> 
    22 </ul> 
    23  
     4This webpage is obsolete, please change your links to 
     5<a href="http://teaching.matdl.org/">http://teaching.matdl.org/</a> 
    246</body></html> 
  • trunk/matml/transport/resources/index.html

    r287 r289  
    22<body><center><h1>Transport Phenomena Resources Archive</h1></center> 
    33 
    4 These are miscellaneous resources, handouts, etc. which don't fit neatly into 
    5 any of the other categories of problems, major readings or pedagogy. 
    6 <ul> 
    7   <li><a href="contflow.ps">Batch/continuous flow reactors</a> by Wanida 
    8     Pongsaksawad (<a href="contflow.lyx">source</a>, 
    9     <a href="contflow.meta">metadata</a>).</li> 
    10   <li><a href="casting.pdf">Casting</a>, by Yi-Cheung Lok 
    11     (<a href="casting.doc">source</a>, 
    12     <a href="casting.meta">metadata</a>).</li> 
    13   <li><a href="3185-handout-diff.pdf">Diffusion methodology</a> for MIT subject 
    14     3.185, <i>Transport Phenomena in Materials Engineering</i>, by Adam Powell 
    15     (<a href="3185-handout-diff.zip">source</a> 
    16     <a href="3185-handout-diff/">directory</a>, 
    17     <a href="3185-handout-diff.meta">metadata</a>).</li> 
    18   <li><a href="dimdummies.pdf">Dimensional analysis for dummies</a>, by 
    19     Yi-Cheung Lok (<a href="dimdummies.doc">source</a>, 
    20     <a href="differfpoint.meta">metadata</a>).</li> 
    21   <li><a href="dimensionless.pdf">Dimensional analysis recitation notes</a>, by 
    22     Jorge Vieyra Salas (<a href="dimensionless.zip">source</a> <a 
    23     href="dimensionless/">directory</a>, 
    24     <a href="dimensionless.meta">metadata</a>).</li> 
    25   <li><a href="3185-handout-numbers.pdf">Dimensionless numbers</a> for MIT 
    26     subject 3.185, by Adam Powell 
    27     (<a href="3185-handout-numbers.tex">source</a>, 
    28     <a href="3185-handout-numbers.meta">metadata</a>).</li> 
    29   <li><a href="3185-handout-energy.pdf">Energy equation forms, boundary 
    30     conditions and solutions</a>, by Adam Powell 
    31     (<a href="3185-handout-energy.tex">source</a>, 
    32     <a href="3185-handout-energy.meta">metadata</a>).</li> 
    33   <li><a href="differfpoint.pdf">Error function and point source 
    34     diffusion equation solutions</a>, by Yi-Cheung Lok 
    35     (<a href="differfpoint.doc">source</a>, 
    36     <a href="differfpoint.meta">metadata</a>).</li> 
    37   <li><a href="FilmBoiling400.mpg">Film</a><a href="FilmBoiling150.mpg">Boiling</a>, 
    38     by Pietro Navarra (<a href="FilmBoiling.meta">metadata</a>).</li> 
    39   <li><a href="fouriersumm.pdf">Fourier series solution and diffusion 
    40     summary</a>, by Yi-Cheung Lok (<a href="fouriersumm.doc">source</a>, 
    41     <a href="fouriersumm.meta">metadata</a>).</li> 
    42   <li><a href="friction.ps">Friction factor, drag force and turbulence</a> by 
    43     Wanida Pongsaksawad (<a href="friction.lyx">source</a>, 
    44     <a href="friction.meta">metadata</a>).</li> 
    45   <li><a href="evaprat.pdf">Multicomponent Evaporation Kinetics</a>, by Adam 
    46     Powell (<a href="evaprat.zip">source</a> <a href="evaprat/">directory</a>, 
    47     <a href="evaprat.meta">metadata</a>).</li> 
    48   <li><a href="navier-stokes.pdf">Navier-Stokes Equations</a>, by Adam Powell 
    49     (<a href="navier-stokes.tex">source</a>, 
    50     <a href="navier-stokes.meta">metadata</a>).</li> 
    51   <li><a href="3185-handout-nusselt.pdf">Nusselt number correlations</a>, by 
    52     Adam Nolte (<a href="3185-handout-nusselt.doc">source</a>, 
    53     <a href="3185-handout-nusselt.meta">metadata</a>).</li> 
    54   <li><a href="1dflow.ps">One-dimensional flows: channel, tube, inclined 
    55     plane</a> by Wanida Pongsaksawad (<a href="1dflow.lyx">source</a>, 
    56     <a href="1dflow.meta">metadata</a>).</li> 
    57   <li><a href="buckpi.ps">A quick guide to dimensional analysis</a>, by Adam 
    58     Powell (<a href="buckpi.zip">source</a> <a href="buckpi/">directory</a>, 
    59     <a href="buckpi.meta">metadata</a>).</li> 
    60   <li><a href="3185-handout-fluids.pdf">Solving Fluid Dynamics Problems</a>, by 
    61     Adam Powell (<a href="3185-handout-fluids.tex">source</a>, 
    62     <a href="3185-handout-fluids.meta">metadata</a>).</li> 
    63   <li><a href="bubbles.pdf">Stokes flow past a fluid sphere</a>, by Adam Powell 
    64     (<a href="bubbles.tex">source</a>, 
    65     <a href="bubbles.meta">metadata</a>).</li> 
    66   <li><a href="cashflow.ps">Technical Cost Modeling: Net Present Value</a> by 
    67     Wanida Pongsaksawad (<a href="cashflow.lyx">source</a>, 
    68     <a href="cashflow.meta">metadata</a>).</li> 
    69   <li><a href="archposter.pdf">The Transport Phenomena Archine</a>, poster by 
    70     Adam Powell for the 2005 MRS Fall Meeting 
    71     (<a href="archposter.zip">source</a> <a href="archposter/">directory</a>, 
    72     <a href="archposter.meta">metadata</a>).</li> 
    73 </ul> 
    74  
     4This webpage is obsolete, please change your links to 
     5<a href="http://teaching.matdl.org/">http://teaching.matdl.org/</a> 
    756</body></html>