User contributions for Bnikolic
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3 February 2012
- 15:4615:46, 3 February 2012 diff hist 0 Syllabus No edit summary
- 10:1410:14, 3 February 2012 diff hist +131 Syllabus →Study Guides
- 09:1009:10, 3 February 2012 diff hist 0 N File:WERNER BOOK=computational quantum physics.pdf No edit summary current
- 09:0909:09, 3 February 2012 diff hist +1 Syllabus →Study Guides
- 09:0909:09, 3 February 2012 diff hist −1 Syllabus →Study Guides
- 09:0909:09, 3 February 2012 diff hist −1 Syllabus →Study Guides
- 09:0809:08, 3 February 2012 diff hist +350 Syllabus No edit summary
- 08:4908:49, 3 February 2012 diff hist −3 Syllabus →Calendar
- 08:3408:34, 3 February 2012 diff hist +56 Real numbers and numerical precision →Theory: Representation of real numbers in digital computers
- 08:3308:33, 3 February 2012 diff hist +432 Real numbers and numerical precision →Theory: Representation of real numbers in digital computers
- 08:2208:22, 3 February 2012 diff hist +8 Real numbers and numerical precision →Introduction
- 08:2108:21, 3 February 2012 diff hist +3 Real numbers and numerical precision →Introduction
- 07:5607:56, 3 February 2012 diff hist +4 Real numbers and numerical precision No edit summary
30 January 2012
- 06:3706:37, 30 January 2012 diff hist +390 Links No edit summary
- 06:3606:36, 30 January 2012 diff hist −382 Hands-on Lab No edit summary
- 06:3506:35, 30 January 2012 diff hist +164 Hands-on Lab →Manuals
21 January 2012
- 12:2012:20, 21 January 2012 diff hist +150 Links No edit summary
17 January 2012
- 10:0310:03, 17 January 2012 diff hist 0 Template:Lecture in Progress No edit summary
14 January 2012
- 06:3006:30, 14 January 2012 diff hist −1 Main Page No edit summary
- 06:3006:30, 14 January 2012 diff hist −1 Main Page No edit summary
13 January 2012
- 15:0415:04, 13 January 2012 diff hist +1 Real numbers and numerical precision →Example: Loss of precision in subtracting nearly equal numbers
- 15:0415:04, 13 January 2012 diff hist +1,449 Real numbers and numerical precision →Example: Loss of precision in subtracting nearly equal numbers
- 14:5514:55, 13 January 2012 diff hist +10 Real numbers and numerical precision →Example: Loss of precision and round-off errors in algorithms for computing \exp(-x)
- 14:5514:55, 13 January 2012 diff hist +14 Real numbers and numerical precision →Example: Loss of precision and round-off errors in algorithms for computing \exp(-x)
- 14:5514:55, 13 January 2012 diff hist +8 Real numbers and numerical precision →Example: Loss of precision in subtracting nearly equal numbers
- 14:5414:54, 13 January 2012 diff hist +6 Real numbers and numerical precision →Example: Loss of precision in subtracting nearly equal numbers
- 14:5414:54, 13 January 2012 diff hist +16 Real numbers and numerical precision →Example: Loss of precision in subtracting nearly equal numbers
10 January 2012
- 13:4813:48, 10 January 2012 diff hist −47 Lectures →Lecture 8: Monte Carlo Simulations in Statistical Physics: Magnetic Phase Transitions in the Ising Model
- 13:4713:47, 10 January 2012 diff hist +311 Lectures No edit summary
- 13:4613:46, 10 January 2012 diff hist +8 Lectures →Lecture 6: Introduction to Fourier analysis
- 13:4613:46, 10 January 2012 diff hist +7 Lectures →Lecture 5: Vibrational eigenmodes: From glasses to Fermi-Pasta-Ulam Problem
- 13:4513:45, 10 January 2012 diff hist +62 Lectures →Lecture 1: Computation as a tool for discovery in physics
- 13:4313:43, 10 January 2012 diff hist −9 Real numbers and numerical precision →Example: Loss of precision due to cancellations of nearly equal numbers
- 13:4313:43, 10 January 2012 diff hist +15 Real numbers and numerical precision →Example: Loss of precision due to cancellations of nearly equal numbers
- 13:4213:42, 10 January 2012 diff hist −2 Real numbers and numerical precision →Example: Loss of precision due to cancellations of nearly equal numbers
- 13:4213:42, 10 January 2012 diff hist −1 Real numbers and numerical precision →Example: Loss of precision due to cancellations of nearly equal numbers
- 13:4213:42, 10 January 2012 diff hist +1 Real numbers and numerical precision →Example: Loss of precision due to cancellations of nearly equal numbers
- 13:4113:41, 10 January 2012 diff hist +656 Real numbers and numerical precision →Example: Loss of precision due to cancellations of nearly equal numbers
- 13:3613:36, 10 January 2012 diff hist +8 Real numbers and numerical precision No edit summary
- 13:3513:35, 10 January 2012 diff hist +153 Real numbers and numerical precision No edit summary
- 13:3013:30, 10 January 2012 diff hist +15 Real numbers and numerical precision No edit summary
- 13:2513:25, 10 January 2012 diff hist +63 Real numbers and numerical precision No edit summary
- 13:2413:24, 10 January 2012 diff hist −359 Real numbers and numerical precision →Example: A floating number with a precision of 5 digits
- 13:2013:20, 10 January 2012 diff hist +2,117 N Real numbers and numerical precision Created page with "== Overview == An important aspect of computational physics is the numerical precision involved. To design a good algorithm, one needs to have a basic understanding of propag..."
- 13:1713:17, 10 January 2012 diff hist +9 Lectures →Lecture 1: Computation as a tool for discovery in physics
7 January 2012
- 22:5322:53, 7 January 2012 diff hist +85 Hands-on Lab →Transient Chaos
- 22:4722:47, 7 January 2012 diff hist +138 Hands-on Lab →Dissipative Chaos
- 22:4522:45, 7 January 2012 diff hist −2 Links →Python Reference
- 22:4222:42, 7 January 2012 diff hist +79 Links →Python Reference
- 22:3322:33, 7 January 2012 diff hist 0 N File:Python 40minutes.pdf No edit summary current