Lesson 9 of 26 • 54 upvotes • 15:00mins
Complete theory of application of mole concept in ideal gas equation discussed in this particular lesson.
26 lessons • 6h 6m
Course Overview (in Hindi)
7:47mins
L-1: Introduction with Mole Concept (in Hindi)
14:43mins
L-2: a.m.u, Atomic and Molecular Mass, Actual Mass (in Hindi)
14:59mins
L-3: Concept to Calculate Mole, Mole Formulae, Numerical Practice (in Hindi)
14:49mins
L-4: Some Numericals, and Concept of Atomicity (in Hindi)
13:56mins
L-5: Numericals part-A (in Hindi)
15:00mins
L-6: numericals part-B (in Hindi)
14:26mins
L-7: numerical part-C (in Hindi)
15:00mins
L-8: Application o mole concept in ideal gas equation (in Hindi)
15:00mins
L-9: Numerical practice part-D (in Hindi)
14:57mins
L-10: Density and vapour density (in Hindi)
15:00mins
L-11: Numerical practice part-E (in Hindi)
15:00mins
L-12: Percentage composition (in Hindi)
15:00mins
L-13: Numerical based on percentage composition part-1 (in Hindi)
15:00mins
L-14: Numerical based on percentage composition part 2 (in Hindi)
12:24mins
L-15: Empirical and molecular formula (in Hindi)
14:35mins
L-16: Numerical based on empirical and molecular formula
14:38mins
L-17: stoichiometry (in Hindi)
15:00mins
L-18: stoichiometry calculation (in Hindi)
12:09mins
L-19: numericals of stoichiometry on combustion reaction (in Hindi)
14:18mins
L-20: Percent purity and percent yield part 1 (in Hindi)
14:44mins
L-21: percent purity and percent yield part 2 (in Hindi)
15:00mins
L-22: numerical based on percent yield (in Hindi)
11:54mins
L-23: Limitting reagent of stoichiometry (in Hindi)
15:00mins
L-24: Numerical based on limitting reagent (in Hindi)
12:12mins
L-25: Laws of chemical combination (in Hindi)
13:48mins