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<head><title>bnewbold 8 thesis references</title></head>
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<h1 style="border-bottom: 2px solid;">References</h1>
<i>Bryan Newbold, <a href="mailto:bnewbold@mit.edu">bnewbold@mit.edu</a></i><br />
<i><a href="http://web.mit.edu/bnewbold/thesis/references.html">
http://web.mit.edu/bnewbold/thesis/references.html</a></i>
<br /><br />
The SICM text book is <a href="http://mitpress.mit.edu/SICM/">free online</a>;
so is the <a href="http://mitpress.mit.edu/sicp/">SICP book</a>.
</br />
There is an unofficial <a href="http://groups.google.com/group/sicm">SICM mailing list</a>.<br />
<br />
<b>Todo Quick Reading</b>
<br />
<a href="http://en.wikipedia.org/wiki/Newman-Penrose_formalism">
http://en.wikipedia.org/wiki/Newman-Penrose_formalism</a><br />
<a href="http://en.wikipedia.org/wiki/Cartan_connection_applications">
http://en.wikipedia.org/wiki/Cartan_connection_applications</a><br />
<a href="http://en.wikipedia.org/wiki/Geodesics_as_Hamiltonian_flows">
http://en.wikipedia.org/wiki/Geodesics_as_Hamiltonian_flows</a><br />
<a href="http://en.wikipedia.org/wiki/Noether%27s_theorem">
http://en.wikipedia.org/wiki/Noether%27s_theorem</a> (field theory version)<br />
<a href="http://en.wikipedia.org/wiki/Laplace-Runge-Lenz_vector">
http://en.wikipedia.org/wiki/Laplace-Runge-Lenz_vector</a> (SICM?)<br />
<a href="http://en.wikipedia.org/wiki/Numerical_relativity">
http://en.wikipedia.org/wiki/Numerical_relativity</a> ("for culture")<br />
<br />
<b>Possible/Misc</b>
<br />
<u>The Confrontation between General Relativity and Experiment</u>, 
    will clifford
<br />
<br />
<b>Computational GR</b>
<br />Try this <a href="http://www.google.com/search?hl=en&client=firefox-a&rls=org.mozilla:en-US:official&hs=xWi&q=+site:www.springerlink.com+general+relativity+lisp">google search</a>?
<ul>
 <li />"Algebraic Computing in General Relativity", Raw d'Inverno (from <u>General Relativity</u>, G. Hall and J. Pulham)
 <li />"General Relativity and the Application of Algebraic Manipulative Systems", Barton, D. and Fitch, J.P. (1971)
 <li />Campbell, S. J.; Wainwright, J. "Algebraic computing and the Newman-Penrose formalism in general relativity" General Relativity and Gravitation, vol. 8, Dec. 1977, pp987-1001
 <li />"The use of algebraic computing in general relativity", H. I. Cohen, Ö. Leringe and Y. Sundblad
 <li />"ORTOCARTAN — A new computer program for analytic calculations in general relativity", Andrzej Krasinacuteski and Marek Perkowski
 <li />"Sheep and classification in general relativity", Inge Frick and Jan E. Åman
 <li />"Using camal for algebraic computations in general relativity", J. P. Fitch and H. I. Cohen
</ul>

<b>Other</b> (<a href="http://static.bnewbold.net/toread/thought/">download</a>)
<ul>
 <li /><u>The Dynamicist's Workbench: Automatic Preparation of Numerical Experiments</u>, H. Abelson and G. Sussman
 <li /><u>Simulating Physics with Computers</u>, R. Feynman
 <li /><u>Functional Differential Geometry</u>, G. Sussman and J. Wisdom (2005)
 
 <li /><u>Computer Programs for Calculating General-Relativistic Curvature Tensors</u>,  J. Fletcher, R. Clemen, R. Matzner, K. Thorne, and B. Zimmerman (letter, 1967)
 <li /><u>Intelligence in Scientific Computing</u>, H. Abelson, M. Eisenberg, M. Halfant, J. Katzenelson, E. Sacks, G. Sussman, J. Wisdom, and K. Yip
 <li /><u>Abstraction in Numerical Methods</u>, M. Halfant and G. Sussman
 <li /><u>The Role of Programming in the Formulation of Ideas</u>, G. Sussman and J. Wisdom
 <li /><u>Scientific Comutation and Functional Programming</u>, J. Karczmarczuk (1999)
 <li /><u>The Supercomputer Toolkit: A general framework for special-purpose computing</u>, H. Abelson, A. Berlin, J. Katzenelson, W. McAllister, G. Rozas, G. Sussman, and J. Wisdom (1991)
 
</ul>
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