User contributions for Lh3115
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21 November 2017
- 14:0714:07, 21 November 2017 diff hist +2,619 Rep:LH3115-Montecarlo →Accelerating the code
- 13:5813:58, 21 November 2017 diff hist +3 Rep:LH3115-Montecarlo /* TASK: If T < T_C, do you expect a spontaneous magnetization (i.e. do you expect \left\langle M\right\rangle \neq 0)? When the state of the simulation appears to stop changing (when you have reached an equilibrium state), use the controls to export t...
- 13:5713:57, 21 November 2017 diff hist +66 Rep:LH3115-Montecarlo /* TASK: If T < T_C, do you expect a spontaneous magnetization (i.e. do you expect \left\langle M\right\rangle \neq 0)? When the state of the simulation appears to stop changing (when you have reached an equilibrium state), use the controls to export t...
- 13:2413:24, 21 November 2017 diff hist +119 Rep:LH3115-Montecarlo /* TASK: How many configurations are available to a system with 100 spins? To evaluate these expressions, we have to calculate the energy and magnetisation for each of these configurations, then perform the sum. Let's be very, very, generous, and say t...
- 12:5212:52, 21 November 2017 diff hist +60 Rep:LH3115-Montecarlo →Calculating the energy and magnetisation
- 12:5112:51, 21 November 2017 diff hist −312 Rep:LH3115-Montecarlo →Calculating the energy and magnetisation
- 12:5012:50, 21 November 2017 diff hist +3,315 Rep:LH3115-Montecarlo →Calculating the energy and magnetisation Tag: Visual edit
17 November 2017
- 16:4716:47, 17 November 2017 diff hist +792 Rep:LH3115-Montecarlo →Accelerating the code
- 16:4616:46, 17 November 2017 diff hist +15 Rep:LH3115-Montecarlo →Accelerating the code
- 16:4616:46, 17 November 2017 diff hist +892 Rep:LH3115-Montecarlo →Accelerating the code
- 16:4516:45, 17 November 2017 diff hist +318 Rep:LH3115-Montecarlo →Accelerating the code
14 November 2017
- 17:5017:50, 14 November 2017 diff hist +29 Rep:LH3115-Montecarlo →Introduction to Monte Carlo simulation
- 17:3117:31, 14 November 2017 diff hist +7 Rep:LH3115-Montecarlo →Calculating the energy and magnetisation
- 17:3117:31, 14 November 2017 diff hist +7 Rep:LH3115-Montecarlo /* TASK: If T < T_C, do you expect a spontaneous magnetization (i.e. do you expect \left\langle M\right\rangle \neq 0)? When the state of the simulation appears to stop changing (when you have reached an equilibrium state), use the controls to export t...
- 17:3017:30, 14 November 2017 diff hist +105 Rep:LH3115-Montecarlo →Montecarlo experiment
- 17:2917:29, 14 November 2017 diff hist 0 N File:LH3115Montecarlostepsbeforeaccel.PNG No edit summary current
- 17:2817:28, 14 November 2017 diff hist +75 Rep:LH3115-Montecarlo →Calculating the energy and magnetisation
- 17:2617:26, 14 November 2017 diff hist +45 Rep:LH3115-Montecarlo →Calculating the energy and magnetisation
- 17:2417:24, 14 November 2017 diff hist 0 N File:LH3115checkoffenergy first.png No edit summary current
- 17:2317:23, 14 November 2017 diff hist +775 Rep:LH3115-Montecarlo →Calculating the energy and magnetisation
- 13:1813:18, 14 November 2017 diff hist +1 Rep:LH3115-Montecarlo /* TASK: How many configurations are available to a system with 100 spins? To evaluate these expressions, we have to calculate the energy and magnetisation for each of these configurations, then perform the sum. Let's be very, very, generous, and say t...
- 13:1813:18, 14 November 2017 diff hist +2 Rep:LH3115-Montecarlo /* TASK: How many configurations are available to a system with 100 spins? To evaluate these expressions, we have to calculate the energy and magnetisation for each of these configurations, then perform the sum. Let's be very, very, generous, and say t...
- 13:1813:18, 14 November 2017 diff hist −4 Rep:LH3115-Montecarlo /* TASK: How many configurations are available to a system with 100 spins? To evaluate these expressions, we have to calculate the energy and magnetisation for each of these configurations, then perform the sum. Let's be very, very, generous, and say t...
- 13:1713:17, 14 November 2017 diff hist 0 Rep:LH3115-Montecarlo /* TASK: How many configurations are available to a system with 100 spins? To evaluate these expressions, we have to calculate the energy and magnetisation for each of these configurations, then perform the sum. Let's be very, very, generous, and say t...
- 13:1613:16, 14 November 2017 diff hist +594 Rep:LH3115-Montecarlo →Calculating the energy and magnetisation
- 00:3200:32, 14 November 2017 diff hist +50 Rep:LH3115-Montecarlo →Montecarlo experiment
- 00:2500:25, 14 November 2017 diff hist +157 Rep:LH3115-Montecarlo →TASK: Calculate the magnetisation of the 1D and 2D lattices in figure 1. What magnetisation would you expect to observe for an Ising lattice with D = 3,\ N=1000 at absolute zero?
- 00:2200:22, 14 November 2017 diff hist +3 Rep:LH3115-Montecarlo →TASK: Calculate the magnetisation of the 1D and 2D lattices in figure 1. What magnetisation would you expect to observe for an Ising lattice with D = 3,\ N=1000 at absolute zero?
- 00:2100:21, 14 November 2017 diff hist +220 Rep:LH3115-Montecarlo →TASK: Calculate the magnetisation of the 1D and 2D lattices in figure 1. What magnetisation would you expect to observe for an Ising lattice with D = 3,\ N=1000 at absolute zero?
- 00:1700:17, 14 November 2017 diff hist +190 Rep:LH3115-Montecarlo →Introduction to the Ising model
- 00:1400:14, 14 November 2017 diff hist +9 Rep:LH3115-Montecarlo →TASK: Show that the lowest possible energy for the Ising model is E\ =\ -DNJ, where D is the number of dimensions and N is the total number of spins. What is the multiplicity of this state? Calculate its entropy.
13 November 2017
- 19:1719:17, 13 November 2017 diff hist +14 Rep:LH3115-Montecarlo →TASK: Show that the lowest possible energy for the Ising model is E\ =\ -DNJ, where D is the number of dimensions and N is the total number of spins. What is the multiplicity of this state? Calculate its entropy.
- 19:1519:15, 13 November 2017 diff hist +6 Rep:LH3115-Montecarlo /* TASK: Imagine that the system is in the lowest energy configuration. To move to a different state, one of the spins must spontaneously change direction ("flip"). What is the change in energy if this happens (D=3,\ N=1000)? How much entropy does the...
- 18:5918:59, 13 November 2017 diff hist +174 Rep:LH3115-Montecarlo →TASK: Show that the lowest possible energy for the Ising model is E\ =\ -DNJ, where D is the number of dimensions and N is the total number of spins. What is the multiplicity of this state? Calculate its entropy.
- 14:3014:30, 13 November 2017 diff hist +7 Rep:LH3115-Montecarlo /* TASK: Imagine that the system is in the lowest energy configuration. To move to a different state, one of the spins must spontaneously change direction ("flip"). What is the change in energy if this happens (D=3,\ N=1000)? How much entropy does the...
- 14:3014:30, 13 November 2017 diff hist +108 Rep:LH3115-Montecarlo /* TASK: Imagine that the system is in the lowest energy configuration. To move to a different state, one of the spins must spontaneously change direction ("flip"). What is the change in energy if this happens (D=3,\ N=1000)? How much entropy does the...
- 14:1914:19, 13 November 2017 diff hist +2 Rep:LH3115-Montecarlo /* TASK: Imagine that the system is in the lowest energy configuration. To move to a different state, one of the spins must spontaneously change direction ("flip"). What is the change in energy if this happens (D=3,\ N=1000)? How much entropy does the...
- 14:1914:19, 13 November 2017 diff hist 0 Rep:LH3115-Montecarlo /* TASK: Imagine that the system is in the lowest energy configuration. To move to a different state, one of the spins must spontaneously change direction ("flip"). What is the change in energy if this happens (D=3,\ N=1000)? How much entropy does the...
- 14:1614:16, 13 November 2017 diff hist +323 Rep:LH3115-Montecarlo /* TASK: Imagine that the system is in the lowest energy configuration. To move to a different state, one of the spins must spontaneously change direction ("flip"). What is the change in energy if this happens (D=3,\ N=1000)? How much entropy does the...
- 14:0014:00, 13 November 2017 diff hist +283 Rep:LH3115-Montecarlo →Introduction to the Ising model
- 13:5613:56, 13 November 2017 diff hist −1 Rep:LH3115-Montecarlo →TASK: Show that the lowest possible energy for the Ising model is E\ =\ -DNJ, where D is the number of dimensions and N is the total number of spins. What is the multiplicity of this state? Calculate its entropy.
- 13:5413:54, 13 November 2017 diff hist +597 Rep:LH3115-Montecarlo →TASK: Show that the lowest possible energy for the Ising model is E\ =\ -DNJ, where D is the number of dimensions and N is the total number of spins. What is the multiplicity of this state? Calculate its entropy.
- 13:4313:43, 13 November 2017 diff hist +72 Rep:LH3115-Montecarlo →TASK: Show that the lowest possible energy for the Ising model is E\ =\ -DNJ, where D is the number of dimensions and N is the total number of spins. What is the multiplicity of this state? Calculate its entropy.
- 13:1613:16, 13 November 2017 diff hist +284 N Rep:LH3115-Montecarlo Created page with "==Montecarlo experiment== ===Introduction to the Ising model=== ====TASK: Show that the lowest possible energy for the Ising model is E\ =\ -DNJ, where D is the number of dime..."
25 October 2017
- 11:0011:00, 25 October 2017 diff hist +84 Rep:LH3115-Liquidsimulations →Tasks Introduction to molecular dynamics simulation
- 10:5910:59, 25 October 2017 diff hist −254 Rep:LH3115-Liquidsimulations →TASK: For a single Lennard-Jones interaction
- 10:5510:55, 25 October 2017 diff hist +254 Rep:LH3115-Liquidsimulations →Tasks Introduction to molecular dynamics simulation
- 10:4910:49, 25 October 2017 diff hist 0 N File:Ksanfsaf.PNG No edit summary current
- 10:4510:45, 25 October 2017 diff hist +70 Rep:LH3115-Liquidsimulations →Tasks Introduction to molecular dynamics simulation
- 10:3910:39, 25 October 2017 diff hist 0 N File:Analyticaljfdhbujgfd.PNG No edit summary current