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Lecture 1
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Lecture 2
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Lecture 3
Tutors
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Ravi Pandey
PROGRAM OVERVIEW
CURRICULUM
Thermochemistry
Pericyclic Reaction
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Lecture 1
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Lecture 2
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Lecture 3
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Lecture 4
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Lecture 5
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Lecture 6
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Lecture 7
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Lecture 8
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Lecture 9
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Lecture 10
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Lecture 11
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Lecture 12
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Lecture 13
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Lecture 14
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Lecture 15
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Lecture 16
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Lecture 17
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Lecture 18
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Lecture 19
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Lecture 20
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Lecture 21
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Lecture 22
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Lecture 23
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Concept of Torque Selectivity
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Nazarov Cyclization
Periodic Properties
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Lecture 1
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Lecture 2
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Lecture 3
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Lecture 4
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Lecture 5
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Lecture 6
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Lecture 7
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Lecture 8
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Lecture 9
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Lecture 10
Statistical Thermodynamics
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Lecture 1
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Lecture 2
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Lecture 3
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Lecture 4
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Lecture 5
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Lecture 6
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Lecture 7
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Lecture 8
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Lecture 9
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Lecture 10
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Activated Complex Theory in form of Partition Function and its comparison with Collision
Polymer
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Lecture 1
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Lecture 2
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Lecture 3
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Lecture 4
Chemical Bonding (By Manjeet Sir)
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1. Introduction
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2. Axial and Non - axial d - orbital | Conical Node
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3. Bond Formation
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4. Bonding, Anti Bonding and Non Bonding
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5. Ionic & Covalent Bond and Excitation Theory
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6. Contraction Rule/Theory
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7. Mixing, Orbital Analysis, Hybridization Index and %s & p character in lone pair and bond pair
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8. Drago's Rule
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9. Application of Drago's Rule
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10. Fluxional Behaviour of Ammonia and Stereochemically Active Lone Pair
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11. Characteristics of S-Orbital and Modified Electronegativity
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12. S-Philes and Bond Length
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13. Hybridisation
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14. VSEPR Theory
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15. Application of VSEPR Theory
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16. NBEPR Dominating Factor and Application of NBEPR
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17. Geometry and Shape of Molecules
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18. Determination of Geometry and shape of Molecules from Steric Number
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19. Determination of Geometry and shape of Molecules from Steric Number 2
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20. Determination of Geometry and shape of Molecules from Steric Number 3
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21. Determination of Geometry and shape of Molecules from Steric Number 4
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22. Steric No.5 Part 1
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23. Steric No.5 Part 2
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24. Steric No.5 Part 3
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25. Steric No.5 Part 4
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26. Steric No.6 Part 1
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27. Steric No.6 Part 2
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28. Steric No.7
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29. Steric No.8
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30. Hybridization in odd electron species
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31. Hybridization in odd electron species Part 2
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32. Hybridization in solid form of covalent compound
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33. Concept of Equivalence Resonance
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34. MOT Part - 1
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35. MOT Part - 2
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36. MOT Part - 3
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37. MOT Part - 4
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38. MOT Part - 5
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39. MOT Part - 6
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40. MOT Part - 7
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41. MOT Part - 8
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42. MOT Part - 9
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43. MOT Part - 10
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44. MOT Part - 11
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45. MOT Part - 12
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46. MOT Part - 13
Photochemistry (Organic)
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Lecture 1
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Lecture 2
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Lecture 3
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Lecture 4
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Lecture 5
Chemical Equilibrium
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Lecture 1
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Lecture 2
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Lecture 3
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Lecture 4
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Lecture 5
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Lecture 6
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Lecture 7
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Lecture 8
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Lecture 9
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Lecture 10
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Lecture 11
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Lecture 12
Ionic Equilibrium
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Lecture 1
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Lecture 2
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Lecture 3
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Lecture 4
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Lecture 5
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Lecture 6
Reactive Intermediate
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Lecture 1
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Lecture 2
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Lecture 3
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Lecture 4
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Lecture 5
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Lecture 6
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Lecture 7
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Lecture 8
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Lecture 9
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Lecture 10
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Lecture 11
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Lecture 12
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Lecture 13
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Lecture 14
Main Group Elements (By - Manjeet Sir)
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1. Oxy-Acids of Phosphorous
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2. Oxy - acids of Sulphur
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3. Oxy-acids of Halogen, Silicon, Nitrogen and Peroxy Linkage
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4. Oxides of Phosphorous
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5. Sulphides of Phosphorous
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6. Back Bonding
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7. Application of Back Bonding
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8. Bridge Bonding Or Polymerization
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9. Bridge Bonding Or Polymerization-2
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10. Wade(STYX) Rule
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11. Silicates
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12. Silicates-2
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13. Silicon Polymer (Inorganic Polymer)
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14. Hydrolysis
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15. Hydrolysis-2
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16. Hydrolysis of Halogens
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17. Naming of Anions
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18. Polymeric form of some compounds
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19. Polymeric Form of Boron and Nitrogen
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20. Polymeric form of Carbon and Nitrogen
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21. Borax
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22. Allotropes of Carbon, Phosphorous and Sulphur, Carbide
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23. Acid Base Chemistry
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24. Solvent Theory
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25. Autoionization of Protic Solvent
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26. Levelling and Differential Effect and Super Acid
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27. HSAB Principle
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28. Application of HSAB Principle and Irving William Series
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29. Noble Gases
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30. Halogen
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31. Inter Halogen Compounds
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32. S-Block Elements
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33. Various Forces and its relation with r
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34. H-Bonding
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35. Fajan's Rule
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36. Lattice Energy, Thermodynamic Stability
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37. Thermal Decomposition and Solubility
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38. Dipole Moment
Colloidal
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Lecture 1
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Lecture 2
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Lecture 3
Thermodynamics By Manjeet Sir
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1. Introduction
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2. Universe and Energy Transfer
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3. Thermodynamic Properties
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4. Maxwell's Relations
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5. Spontaneity Criteria
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6. Questions Related to Previous Lectures
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7. Thermodynamic Coefficients
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8. First Thermodynamic Equation
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9. Second Thermodynamic Equation
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10. Heat Capacity
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11. Relation Between Cp and Cv
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12. Questions on Heat Capacity
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13. Degree of Freedom
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14. Equipartition of Energy
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15. State Function and Path Function
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16. State Function and Path Function - 2
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17. Intensive & Extensive property and Internal Energy
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18. Enthalpy
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19. Work done
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20. Thermodynamic Processes
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21. Adiabatic Process
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22. Questions
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23. Joule Thomson Effect
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24. Carnot Cycle - I
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25. Carnot Cycle - II
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26. Entropy - I
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27. Entropy - II
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28. Entropy - III
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29. Clausius-Clapeyron Equation
Stereochemistry By Ashish Sir
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1. Introduction
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2. Stereoisomers
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3. Cahn–Ingold–Prelog (CIP) Rule
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4. Wedge-Dash Notation
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Lecture 5
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Lecture 6
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7. Newman to Fischer Projection
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8. Wedge-Dash to Sawhorse
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9. Stereochemistry of cyclic compound - I
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10. Stereochemistry of cyclic compound - II
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11. Conformational Analysis of Ethane and Butane
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12. Conformational Analysis of cyclo - hexane
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13. Optical Isomer - I
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14. Optical Isomer - II
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15. Geometrical Isomer - I
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16. Geometrical Isomer - II
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17. Number of Geometric Isomer
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18. Angle of Rotation and Specific Rotation
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19. Enantiomeric Excess
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20. Solved Questions
Reducing Reagents By Ashish Sir
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1. Introduction of Reagents
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2. Dissolving Metal Reduction and Wurtz Reaction
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3. Comparison between Pinacol coupling, Bouveault-Blanc Reduction and Birch Reduction
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4. Acyloin condensation, Birch Reduction and Bouveault-Blanc Reduction
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5. Birch Reduction
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Reagents Lecture 6
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Reagents Lecture 7
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Reagents Lecture 8
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Reagents Lecture 9
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Reagents Lecture 10
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Reagents Lecture 11
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Reagents Lecture 12
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Reagents Lecture 13
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Reagents Lecture 14
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Reagents Lecture 15
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Reagents Lecture 16
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Reagents Lecture 17
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Reagents Lecture 18
Oxidizing Reagents By Ashish Sir
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1. Oxidation of Alkenes
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2. Oxidation Stereochemistry
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3. Diol Formation
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4. Oxidation via KMnO4
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5. Cleavage of Diol and 1,2 Hetero Atom
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6. Ozonolysis
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7. Oxidation of Hydrocarbon
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8. Oxidation of Benzene
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9. Cr based oxidation
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10. Cr Based Oxidation - II
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11. Collins and Jones Reagent
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12. Swern Oxidation
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Lecture 13
Organometallic Reagents
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Lecture 1
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Lecture 2
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Lecture 3
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Lecture 4