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Week - 1 |
Magnetic Radiation, Properties of radiation as waves and particles, quantum mechanical properties of radiation |
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Week - 2 |
Interactions of electromagnetic waves and materials, absorption of radiation, laws of absorption, Beer rules, Lambert rules, transmittance |
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Week - 3 |
Electronic Spectroscopy, Visible Region and UV, molecular orbitals, electronic transitions and the factors modifying transitions, UV spectrophotometers, qualitative-quantitative determinations with UV. |
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Week - 4 |
IR Spectroscopy, vibration models, molecule vibrations, IR active materials, IR spectral regions, sample preperation techniques |
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Week - 5 |
Applications of IR and UV spectra and qualitative -quantitative analyses |
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Week - 6 |
Applications of IR and UV spectra and qualitative -quantitative analyses |
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Week - 7 |
Nuclear Magnetic Resonance Spectroscopy, theory, chemical shift, NMR spectrometers |
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Week - 8 |
Local Diamagnetism, magnetic anisotropy |
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Week - 9 |
Spin-spin interactions, systems with two, three and four spins, analyses of spin-spin multiplets |
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Week - 10 |
Applications of NMR spectra |
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Week - 11 |
Applications of NMR spectra |
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Week - 12 |
Separation Methods, Extraction and Chromatography, thin layer and paper chromatography |
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Week - 13 |
Gas Chromatography, theory and gas chromatograph equipment |
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Week - 14 |
Applications of Gas-liquid Chromatography |