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20 November 2019
- 10:1210:12, 20 November 2019 diff hist +51 Rep:3CMPks4817 →TASK: Modify your script from the previous section. You should still plot the whole temperature range, but fit the polynomial only to the peak of the heat capacity! You should find it easier to get a good fit when restricted to this region.
- 10:1110:11, 20 November 2019 diff hist 0 Rep:3CMPks4817 /* TASK: write a script to read the data from a particular file, and plot C vs T, as well as a fitted polynomial. Try changing the degree of the polynomial to improve the fit — in general, it might be difficult to get a good fit! Attach a PNG of an e...
- 10:1110:11, 20 November 2019 diff hist +539 Rep:3CMPks4817 /* TASK: find the temperature at which the maximum in C occurs for each datafile that you were given. Make a text file containing two colums: the lattice side length (2,4,8, etc.), and the temperature at which C is a maximum. This is your estimate of T...
- 10:0610:06, 20 November 2019 diff hist +108 Rep:3CMPks4817 /* TASK: A C++ program has been used to run some much longer simulations than would be possible on the college computers in Python. You can view its source code here if you are interested. Each file contains six columns: T, E, E^2, M, M^2, C (the final...
- 10:0510:05, 20 November 2019 diff hist −294 Rep:3CMPks4817 /* TASK: A C++ program has been used to run some much longer simulations than would be possible on the college computers in Python. You can view its source code here if you are interested. Each file contains six columns: T, E, E^2, M, M^2, C (the final...
- 10:0410:04, 20 November 2019 diff hist +75 Rep:3CMPks4817 /* TASK: A C++ program has been used to run some much longer simulations than would be possible on the college computers in Python. You can view its source code here if you are interested. Each file contains six columns: T, E, E^2, M, M^2, C (the final...
- 10:0310:03, 20 November 2019 diff hist 0 N File:Ks4817MaxCapacity.dat No edit summary current
- 10:0310:03, 20 November 2019 diff hist 0 N File:Ks4817examplegoodfit5.png No edit summary current
- 10:0210:02, 20 November 2019 diff hist 0 N File:Ks4817examplegoodfit4.png No edit summary current
- 10:0210:02, 20 November 2019 diff hist 0 N File:Ks4817examplegoodfit3.png No edit summary current
- 10:0210:02, 20 November 2019 diff hist 0 N File:Ks4817examplegoodfit2.png No edit summary current
- 10:0210:02, 20 November 2019 diff hist 0 N File:Ks4817examplegoodfit1.png No edit summary current
- 10:0110:01, 20 November 2019 diff hist 0 N File:Ks4817examplebadfit.png No edit summary current
- 10:0110:01, 20 November 2019 diff hist 0 N File:Ks4817ccomparisonheat.png No edit summary current
- 10:0110:01, 20 November 2019 diff hist 0 N File:Ks4817ccomparisonmag.png No edit summary current
- 10:0110:01, 20 November 2019 diff hist 0 N File:Ks4817ccomparisoneng.png No edit summary current
- 10:0110:01, 20 November 2019 diff hist 0 N File:Ks4817heatcapacityvstemp.png No edit summary current
- 09:5909:59, 20 November 2019 diff hist +4 Rep:3CMPks4817 No edit summary
- 09:5809:58, 20 November 2019 diff hist 0 N File:Ks4817allxallmag.png No edit summary current
- 09:5809:58, 20 November 2019 diff hist 0 N File:Ks4817allxallen.png No edit summary current
- 09:5809:58, 20 November 2019 diff hist 0 N File:Ks481732x32mag.png No edit summary current
- 09:5709:57, 20 November 2019 diff hist 0 N File:Ks481732x32en.png No edit summary current
- 09:5709:57, 20 November 2019 diff hist 0 N File:Ks481716x16mag.png No edit summary current
- 09:5709:57, 20 November 2019 diff hist 0 N File:Ks481716x16en.png No edit summary current
- 09:5609:56, 20 November 2019 diff hist 0 N File:Ks48178x8mag.png No edit summary current
- 09:5509:55, 20 November 2019 diff hist 0 N File:Ks48178x8en.png No edit summary current
- 09:5509:55, 20 November 2019 diff hist 0 N File:Ks48174x4mag.png No edit summary current
- 09:5409:54, 20 November 2019 diff hist 0 N File:Ks48174x4en.png No edit summary current
- 09:5309:53, 20 November 2019 diff hist 0 N File:Ks48172x2mag.png No edit summary current
- 09:5309:53, 20 November 2019 diff hist 0 N File:Ks4817curietemp.png No edit summary current
- 09:5209:52, 20 November 2019 diff hist 0 N File:Ks48172x2en.png No edit summary current
- 09:5109:51, 20 November 2019 diff hist 0 N File:Ks4817RunningILFramecheck.png No edit summary current
- 09:4209:42, 20 November 2019 diff hist +239 Rep:3CMPks4817 /* TASK: The script ILfinalframe.py runs for a given number of cycles at a given temperature, then plots a depiction of the final lattice state as well as graphs of the energy and magnetisation as a function of cycle number. This is much quicker than a...
- 09:3909:39, 20 November 2019 diff hist +290 Rep:3CMPks4817 →TASK: By definition, derive
- 09:3409:34, 20 November 2019 diff hist +4 Rep:3CMPks4817 →TASK: By definition, derive
- 09:3309:33, 20 November 2019 diff hist +28 Rep:3CMPks4817 →TASK: By definition, derive
- 09:3109:31, 20 November 2019 diff hist +14 Rep:3CMPks4817 →TASK: By definition, derive
- 09:2909:29, 20 November 2019 diff hist +198 Rep:3CMPks4817 →TASK: By definition, derive
- 09:2309:23, 20 November 2019 diff hist +44 Rep:3CMPks4817 →TASK: By definition, derive
- 09:1909:19, 20 November 2019 diff hist 0 Rep:3CMPks4817 →TASK: By definition, derive
- 09:1809:18, 20 November 2019 diff hist +213 Rep:3CMPks4817 →TASK: By definition, derive
- 09:1009:10, 20 November 2019 diff hist +30 Rep:3CMPks4817 No edit summary
- 09:0809:08, 20 November 2019 diff hist +45 Rep:3CMPks4817 /* TASK: find the temperature at which the maximum in C occurs for each datafile that you were given. Make a text file containing two colums: the lattice side length (2,4,8, etc.), and the temperature at which C is a maximum. This is your estimate of T...
- 09:0609:06, 20 November 2019 diff hist +227 Rep:3CMPks4817 /* TASK: find the temperature at which the maximum in C occurs for each datafile that you were given. Make a text file containing two colums: the lattice side length (2,4,8, etc.), and the temperature at which C is a maximum. This is your estimate of T_C
- 09:0009:00, 20 November 2019 diff hist +90 Rep:3CMPks4817 →TASK: Modify your script from the previous section. You should still plot the whole temperature range, but fit the polynomial only to the peak of the heat capacity! You should find it easier to get a good fit when restricted to this region.
- 08:5908:59, 20 November 2019 diff hist +492 Rep:3CMPks4817 →TASK: Modify your script from the previous section. You should still plot the whole temperature range, but fit the polynomial only to the peak of the heat capacity! You should find it easier to get a good fit when restricted to this region.
- 08:5808:58, 20 November 2019 diff hist −19 Rep:3CMPks4817 /* TASK: write a script to read the data from a particular file, and plot C vs T, as well as a fitted polynomial. Try changing the degree of the polynomial to improve the fit — in general, it might be difficult to get a good fit! Attach a PNG of an e...
- 08:5508:55, 20 November 2019 diff hist +853 Rep:3CMPks4817 /* TASK: write a script to read the data from a particular file, and plot C vs T, as well as a fitted polynomial. Try changing the degree of the polynomial to improve the fit — in general, it might be difficult to get a good fit! Attach a PNG of an e...
- 08:5008:50, 20 November 2019 diff hist +69 Rep:3CMPks4817 /* TASK: Repeat the final task of the previous section for the following lattice sizes: 2x2, 4x4, 8x8, 16x16, 32x32. Make sure that you name each datafile that your produce after the corresponding lattice size! Write a Python script to make a plot show...
- 08:4908:49, 20 November 2019 diff hist −24 Rep:3CMPks4817 /* TASK: Implement a single cycle of the above algorithm in the montecarlocycle(T) function. This function should return the energy of your lattice and the magnetisation at the end of the cycle. You may assume that the energy returned by your energy()...