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links [2019/02/01 16:39] janettatelinks [2019/02/01 17:12] janettate
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     * A succinct [[http://epswww.unm.edu/xrd/xrdclass/04-Crystalography-for-XRD.pdf|introduction to crystallography]] by J.R. Connolly for people with little background in crystallography.      * A succinct [[http://epswww.unm.edu/xrd/xrdclass/04-Crystalography-for-XRD.pdf|introduction to crystallography]] by J.R. Connolly for people with little background in crystallography. 
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-    * Cambridge site ->  [[http://www.msm.cam.ac.uk/doitpoms/tlplib/brillouin_zones/zone_construction.php|Brillouin zone construction for 2-D square & hexagonal lattice lattice]]. 
  
     * [[http://www.cryst.ehu.es/|Bilbao crystal server]].  Find space groups and reciprocal lattices.     * [[http://www.cryst.ehu.es/|Bilbao crystal server]].  Find space groups and reciprocal lattices.
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     * [[http://www.crystallography.net/index.php|Crystallography Open Data Base]] - several cif files.     * [[http://www.crystallography.net/index.php|Crystallography Open Data Base]] - several cif files.
  
-    * Applet that demonstrates the [[http://www.applet-magic.com/brillouin.htm|construction of the first few Brillouin zones of a 2-D square lattice]].  Also discusses the Fermi surface (requires Java).+    * Basic tutorial on [[https://www.doitpoms.ac.uk/tlplib/crystallography3/index.php|unit cells, lattices, symmetryfrom Cambridge University.
  
-    * Pictures of different [[http://cst-www.nrl.navy.mil/lattice/index.html|lattice types]]; rotatable. Was a great site, but now it's gone. Maybe we can find a mirror. 
  
 ===== Semiconductors ===== ===== Semiconductors =====
  
 +    * Basic tutorial on [[https://www.doitpoms.ac.uk/tlplib/brillouin_zones/zone_construction.php|Brillouin zone construction for 2-D square & hexagonal lattice lattice]] from Cambridge University.    
     * Nice compilation of [[http://www.ioffe.rssi.ru/SVA/NSM/|semiconductor properties from the Ioffe Institute]] in Russia      * Nice compilation of [[http://www.ioffe.rssi.ru/SVA/NSM/|semiconductor properties from the Ioffe Institute]] in Russia 
     * For II-VI (and other) semiconductors, see the page by [[http://www.semiconductors.co.uk|D. W. Palmer]]     * For II-VI (and other) semiconductors, see the page by [[http://www.semiconductors.co.uk|D. W. Palmer]]
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     * Light in a periodic system:[[http://ab-initio.mit.edu/photons/|Photonic crystals ]] research by MIT group - nice pictures.     * Light in a periodic system:[[http://ab-initio.mit.edu/photons/|Photonic crystals ]] research by MIT group - nice pictures.
  
-    * [[|Principles of Semiconductors]] is a good web book by Bart Van Zeghbroeck of Univ. Colorado.+    * [[|Principles of Semiconductors]] is a good web book by Bart Van Zeghbroeck of Univ. Colorado. Google it; if I paste the link pasted in this wiki, an error results.
          
     * [[http://www.physics.umd.edu/courses/Phys731/einstein/Fall04/weblist.html|another list of links from a similar course]].     * [[http://www.physics.umd.edu/courses/Phys731/einstein/Fall04/weblist.html|another list of links from a similar course]].
     * //The Physics and Chemistry of Color: the 15 Causes of Color// by Kurt Nassau (Wiley-Interscience, 2001) is a fascinating book that talks about why things are the colors they are.  In the library, & you can browse bits of it on Amazon.com     * //The Physics and Chemistry of Color: the 15 Causes of Color// by Kurt Nassau (Wiley-Interscience, 2001) is a fascinating book that talks about why things are the colors they are.  In the library, & you can browse bits of it on Amazon.com
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     *[[http://ajp.aapt.org/resource/1/ajpias/v78/i12/p1248_s1?view=fulltext|Investigating thin film interference with a digital camera, Atkins & Elliot, Am. J. Phys. 78, 1248 (2010)]] talks about what color a film should be based on its thickness and therefore how interference affects color.     *[[http://ajp.aapt.org/resource/1/ajpias/v78/i12/p1248_s1?view=fulltext|Investigating thin film interference with a digital camera, Atkins & Elliot, Am. J. Phys. 78, 1248 (2010)]] talks about what color a film should be based on its thickness and therefore how interference affects color.
  

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