User contributions for Cmb1517
Appearance
10 May 2019
- 14:5614:56, 10 May 2019 diff hist +32 MRD:CMB01333464Y2 →Discuss how the distribution of energy between different modes (translation and vibration) affect the efficiency of the reaction, and how this is influenced by the position of the transition state.
- 14:5314:53, 10 May 2019 diff hist +1 MRD:CMB01333464Y2 →Locate the approximate position of the transition state
- 14:5214:52, 10 May 2019 diff hist +42 MRD:CMB01333464Y2 →Locate the approximate position of the transition state
- 14:3714:37, 10 May 2019 diff hist +6 MRD:CMB01333464Y2 →Discuss how the distribution of energy between different modes (translation and vibration) affect the efficiency of the reaction, and how this is influenced by the position of the transition state.
- 14:2814:28, 10 May 2019 diff hist +372 MRD:CMB01333464Y2 →Discuss how the distribution of energy between different modes (translation and vibration) affect the efficiency of the reaction, and how this is influenced by the position of the transition state.
- 14:2114:21, 10 May 2019 diff hist +275 MRD:CMB01333464Y2 →Discuss how the distribution of energy between different modes (translation and vibration) affect the efficiency of the reaction, and how this is influenced by the position of the transition state.
- 14:1314:13, 10 May 2019 diff hist −5 MRD:CMB01333464Y2 →Discuss how the distribution of energy between different modes (translation and vibration) affect the efficiency of the reaction, and how this is influenced by the position of the transition state.
- 14:1214:12, 10 May 2019 diff hist +337 MRD:CMB01333464Y2 →Reaction Dynamics
- 14:0414:04, 10 May 2019 diff hist +210 MRD:CMB01333464Y2 →Reaction Dynamics
- 13:4313:43, 10 May 2019 diff hist −201 MRD:CMB01333464Y2 →Report the activation energy for both reactions
- 13:2413:24, 10 May 2019 diff hist 0 MRD:CMB01333464Y2 →Report the activation energy for both reactions
- 13:2413:24, 10 May 2019 diff hist +6 MRD:CMB01333464Y2 →Report the activation energy for both reactions
- 13:2313:23, 10 May 2019 diff hist +22 MRD:CMB01333464Y2 →Report the activation energy for both reactions
- 13:2313:23, 10 May 2019 diff hist 0 N File:CMBEVT2.png No edit summary current
- 08:0008:00, 10 May 2019 diff hist +27 MRD:CMB01333464Y2 →Reaction Dynamics
- 08:0008:00, 10 May 2019 diff hist 0 N File:CMBHFCP.png No edit summary current
9 May 2019
- 23:2323:23, 9 May 2019 diff hist +505 MRD:CMB01333464Y2 →In light of the fact that energy is conserved, discuss the mechanism of release of the reaction energy. Explain how this could be confirmed experimentally.
- 23:1223:12, 9 May 2019 diff hist +27 MRD:CMB01333464Y2 →Reaction Dynamics
- 23:1223:12, 9 May 2019 diff hist 0 N File:CMBMVT.png No edit summary current
- 23:0823:08, 9 May 2019 diff hist +192 MRD:CMB01333464Y2 →Report the activation energy for both reactions
- 23:0323:03, 9 May 2019 diff hist +217 MRD:CMB01333464Y2 →Report the activation energy for both reactions
- 22:5622:56, 9 May 2019 diff hist +22 MRD:CMB01333464Y2 →Report the activation energy for both reactions
- 22:5522:55, 9 May 2019 diff hist 0 N File:CMBEVT.png No edit summary current
- 22:5422:54, 9 May 2019 diff hist +186 MRD:CMB01333464Y2 →Report the activation energy for both reactions
- 22:4822:48, 9 May 2019 diff hist +441 MRD:CMB01333464Y2 →Report the activation energy for both reactions
- 22:4522:45, 9 May 2019 diff hist +59 MRD:CMB01333464Y2 →Locate the approximate position of the transition state
- 22:4422:44, 9 May 2019 diff hist +2 MRD:CMB01333464Y2 →By inspecting the potential energy surfaces, classify the F + H2 and H + HF reactions according to their energetics (endothermic or exothermic). How does this relate to the bond strength of the chemical species involved?
- 22:4322:43, 9 May 2019 diff hist 0 N File:CMBRANDP.png No edit summary current
- 22:4122:41, 9 May 2019 diff hist −1 MRD:CMB01333464Y2 →Locate the approximate position of the transition state
- 22:4122:41, 9 May 2019 diff hist +27 MRD:CMB01333464Y2 →Locate the approximate position of the transition state
- 22:3922:39, 9 May 2019 diff hist 0 N File:CMBSPP.png No edit summary current
- 22:3622:36, 9 May 2019 diff hist −1 MRD:CMB01333464Y2 →Locate the approximate position of the transition state
- 22:3622:36, 9 May 2019 diff hist +28 MRD:CMB01333464Y2 →Locate the approximate position of the transition state
- 22:3622:36, 9 May 2019 diff hist 0 N File:CMBDVT.png No edit summary current
- 22:3522:35, 9 May 2019 diff hist +9 MRD:CMB01333464Y2 →Locate the approximate position of the transition state
- 22:3322:33, 9 May 2019 diff hist +75 MRD:CMB01333464Y2 →Locate the approximate position of the transition state
- 22:2822:28, 9 May 2019 diff hist +501 MRD:CMB01333464Y2 →Locate the approximate position of the transition state
- 22:2322:23, 9 May 2019 diff hist +507 MRD:CMB01333464Y2 →PES inspection
- 22:1922:19, 9 May 2019 diff hist +12 MRD:CMB01333464Y2 →By inspecting the potential energy surfaces, classify the F + H2 and H + HF reactions according to their energetics (endothermic or exothermic). How does this relate to the bond strength of the chemical species involved?
- 22:1922:19, 9 May 2019 diff hist +644 MRD:CMB01333464Y2 →By inspecting the potential energy surfaces, classify the F + H2 and H + HF reactions according to their energetics (endothermic or exothermic). How does this relate to the bond strength of the chemical species involved?
- 22:1322:13, 9 May 2019 diff hist −7 MRD:CMB01333464Y2 →Reactive and unreactive trajectories
- 22:1222:12, 9 May 2019 diff hist −16 MRD:CMB01333464Y2 →By inspecting the potential energy surfaces, classify the F + H2 and H + HF reactions according to their energetics (endothermic or exothermic). How does this relate to the bond strength of the chemical species involved?
- 22:1222:12, 9 May 2019 diff hist −9 MRD:CMB01333464Y2 →PES inspection
- 22:1122:11, 9 May 2019 diff hist +21 MRD:CMB01333464Y2 →EXERCISE 2: F - H - H system
- 22:1022:10, 9 May 2019 diff hist 0 MRD:CMB01333464Y2 →By inspecting the potential energy surfaces, classify the F + H2 and H + HF reactions according to their energetics (endothermic or exothermic). How does this relate to the bond strength of the chemical species involved?
- 22:1022:10, 9 May 2019 diff hist 0 N File:CMBSP1.png No edit summary current
- 22:0922:09, 9 May 2019 diff hist −55 MRD:CMB01333464Y2 →EXERCISE 2: F - H - H system
- 22:0722:07, 9 May 2019 diff hist +272 MRD:CMB01333464Y2 →EXERCISE 2: F - H - H system
- 22:0322:03, 9 May 2019 diff hist +68 MRD:CMB01333464Y2 →EXERCISE 2: F - H - H system
- 21:3321:33, 9 May 2019 diff hist +1 MRD:CMB01333464Y2 →EXERCISE 2: F - H - H system