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Fixes to Chapter 5 for consistency
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SIAMFANLCh5.ipynb

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siamfa.html

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</td>
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<td class="bibtexitem">
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&Egrave;.&nbsp;Canc&egrave;s and C.&nbsp;Le Bris.
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Can we outperform the diis approach for electronic structure
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Can we outperform the DIIS approach for electronic structure
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calculations?
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<em>International Journal of Quantum Chemistry</em>, 79:82-90, 2000.
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</td>
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T.&nbsp;F. Coleman and Y.&nbsp;Li.
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A reflective Newton methods for minimizing a quadratic function
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A reflective Newton method for minimizing a quadratic function
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subject to bounds on some of the variables.
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<em>SIAM J. Opt.</em>, 6:1040-1058, 1996.
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</td>
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<td class="bibtexitem">
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P.&nbsp;Davis and P.&nbsp;Rabinovitz.
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Abscissas and weights for gaussian quadratures of high order.
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Abscissas and weights for Gaussian quadratures of high order.
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<em>Journal of Research of the National Bureau of Standards</em>, 56,
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1956.
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</td>
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H.&nbsp;De Sterck and Y.&nbsp;He.
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Linear asymptotic convergence of anderson acceleration: Fixed-point
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Linear asymptotic convergence of Anderson acceleration: Fixed-point
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analysis.
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<em>arXiv:2109.14176v1 [math.OC]</em>, 2021.
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[&nbsp;<a href="https://arxiv.org/abs/2109.14176">http</a>&nbsp;]
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</td>
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Vlad Ganine, Umesh Javiya, Nick Hills, and John Chew.
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Coupled Fluid-Structure Transient Thermal Analysis of a Gas Turbine
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Internal Air System With Multiple Cavities.
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Coupled fluid-structure transient thermal analysis of a gas turbine
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internal air system with multiple cavities.
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<em>Journal of Engineering for Gas Turbines and Power</em>,
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134(10):102508, 2012.
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[&nbsp;<a href="http://dx.doi.org/10.1115/1.4007060">DOI</a>&nbsp;]
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</td>
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R.&nbsp;Haelterman, J.&nbsp;Degroote, D.&nbsp;van Heule, and J.&nbsp;Vierendeels.
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The quasi-newton least squares method: A new and fast secant method
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The quasi-Newton least squares method: A new and fast secant method
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analyzed for linear systems.
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<em>SIAM J. Numer. Anal.</em>, 47:2347-2368, 2009.
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</td>
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Jeffrey Willert, William&nbsp;T. Taitano, and Dana Knoll.
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Leveraging Anderson Acceleration for improved convergence of
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Leveraging Anderson acceleration for improved convergence of
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iterative solutions to transport systems.
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<em>Journal of Computational Physics</em>, 273:278-286, 2014.
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[&nbsp;<a href="http://dx.doi.org/10.1016/j.jcp.2014.05.015">DOI</a>&nbsp;]

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