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MIT OpenCourseWare
5 896 vidéos, +2 320 000 abonnés
Liste de lecture:
MIT 5.111 Principles of Chemical Science, Fall 2008
(Youtube)
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View the complete course:
http://ocw.mit.edu/5-111F08
This course provides an introduction to the chemistry of biological, inorganic, and organic molecules. The emphasis is on basic principles of atomic and molecular electronic structure, thermodynamics, acid-base and redox equilibria, chemical kinetics, and catalysis.
License: Creative Commons BY-NC-SA
More information at
http://ocw.mit.edu/terms
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36 vidéos trouvées.
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27. Transition metals and the treatment of lead poisoning
45:80
0
10. Periodic trends continued; Covalent bonds
48:40
0
6. Hydrogen atom wavefunctions (orbitals)
48:32
0
11. Lewis structures
51:00
0
13. Polar covalent bonds; VSEPR theory
45:00
0
36. Biochemistry
31:25
0
33. Reaction mechanism
45:49
0
34. Temperature and kinetics
42:13
0
35. Enzyme catalysis
48:70
0
32. Nuclear chemistry and elementary reactions
45:80
0
30. Magnetism and spectrochemical theory
39:23
0
28. Crystal field theory
45:25
0
29. Metals in biology
42:23
0
23. Acid-base titrations
45:19
0
31. Rate laws
42:42
0
25. Electrochemical cells
48:28
0
24. Balancing oxidation/reduction equations
47:29
0
26. Chemical and biological oxidation/reduction reactions
46:35
0
12. Exceptions to Lewis structure rules; Ionic bonds
50:36
0
17. Entropy and disorder
48:47
0
18. Free energy and control of spontaneity
44:39
0
21. Acid-base equilibrium: Is MIT water safe to drink?
36:51
0
20. Le Chatelier's principle and applications to blood-oxygen levels
50:30
0
19. Chemical equilibrium
46:18
0
15. Valence bond theory and hybridization
41:70
0
14. Molecular orbital theory
51:25
0
16. Determining hybridization in complex molecules; Thermochemistry, bond energies/bond enthalpies
50:35
0
22. Chemical and biological buffers
50:16
0
9. Periodic trends
50:70
0
8. Multielectron atoms and electron configurations
49:25
0
2. Discovery of electron and nucleus, need for quantum mechanics
47:10
0
5. Hydrogen atom energy levels
47:45
0
1. The importance of chemical principles
27:30
0
7. p-orbitals
47:80
0
4. Wave-particle duality of matter, Schrödinger equation
45:90
0
3. Wave-particle duality of light
48:22
0
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