Total Videos Found for ORGANIC CHEMISTRY-IV - Paper of Semester sem5 : 52 Back
1 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
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Unit-1 |
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2 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Types of electronic transitions,?max |
Unit-1 |
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3 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Types of electronic transitions, ?max,Its limitations,and Chromophores |
Unit-1 |
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4 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Chromophores and Auxochromes,Bathochromic and Hypsochromic shifts |
Unit-1 |
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5 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
UV Spectroscopy-Solvent Effect |
Unit-1 |
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6 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
UV Spectroscopy-Bathochromic and Hypsochromic shifts, Intensity of absorption |
Unit-1 |
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7 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
UV Spectroscopy-Application of Woodward rules for calculation of ?max |
Unit-1 |
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8 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
UV Spectroscopy-Application of Woodward rules for Diene System |
Unit-1 |
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9 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
UV Spectroscopy-Woodward-Fieser rule for calculation of ?max-I |
Unit-1 |
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10 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
UV Spectroscopy-Woodward-Fieser rule for calculation of ?max-II |
Unit-1 |
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11 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
UV Spectroscopy-Woodward-Fieser rule-I |
Unit-1 |
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12 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
UV Spectroscopy-Woodward-Fieser rule-II |
Unit-1 |
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13 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Woodward-Fieser rule for calculation of ?max for ?, ? the unsaturated aldehydes, ketones, carboxylic acids and esters |
Unit-1 |
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14 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
IR Spectroscopy |
Unit-2 |
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15 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
IR Spectroscopy-Fundamental molecular vibration |
Unit-2 |
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16 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
IR Spectroscopy- Non-fundamental molecular vibration |
Unit-2 |
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17 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
IR Spectroscopy-IR absorption positions of O containing functional groups-I |
Unit-2 |
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18 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
IR Spectroscopy-IR absorption positions of O containing functional groups-II |
Unit-2 |
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19 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
IR Spectroscopy-IR absorption positions of N containing functional groups-I |
Unit-2 |
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20 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
IR Spectroscopy-IR absorption positions of N containing functional groups-II |
Unit-2 |
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21 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
IR Spectroscopy-Fingerprint region and its significance |
Unit-2 |
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22 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Application of IR Spectroscopy |
Unit-2 |
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23 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
NMR Spectroscopy- Basic principles of Proton Magnetic Resonance |
Unit-3 |
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24 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
NMR Spectroscopy-chemical shift andfactors influencing it |
Unit-3 |
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25 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Chemical Shift |
Unit-3 |
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26 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Factors Influencing Chemical Shift |
Unit-3 |
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27 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Anisotropic Effects in NMR Specctroscopy |
Unit-3 |
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28 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
SPIN-SPIN COUPLING |
Unit-3 |
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29 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Coupling Constant |
Unit-3 |
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30 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Interpretation of NMR spectra of simple compounds |
Unit-3 |
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31 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Mass Spectroscopy- Basic principle |
Unit-3 |
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32 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Mass Spectroscopy- Fragmentation pattern |
Unit-3 |
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33 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Fragmentation Pattern in Mass Spectroscopy |
Unit-3 |
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34 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Mc-Lafferty Rearrangement |
Unit-3 |
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35 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Metastable ion and peak-I |
Unit-3 |
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36 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Metastable ion and peak-II |
Unit-3 |
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37 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Applications of IR, UV & NMR for identification of simple organic molecules-I |
Unit-3 |
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38 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Applications of IR, UV & NMR for identification of simple organic molecules-II |
Unit-3 |
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39 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Carbohydrates-Occurrence, classification and their biological importance |
Unit-4 |
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40 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Biological importance, Epimers and Anomers, Mutarotation |
Unit-4 |
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41 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Mutarotation and Constituation of D-Glucose |
Unit-4 |
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42 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Configuration of D-Glucose |
Unit-4 |
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43 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Configuration and Cyclic Structure of D-Glucose |
Unit-4 |
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44 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Haworth Formula of D-Glucose and Constitution of D-Fructose |
Unit-4 |
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45 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Constitution and Configuration of D-Fructose |
Unit-4 |
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46 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Cyclic Structure for D-Fructose and Haworth Projection Formulae |
Unit-4 |
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47 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Conversion of D-fructose to D-glucose,Killiani-Fischesynthesis and Ruff degradation. mp |
Unit-4 |
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48 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
|
Unit-4 |
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49 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
|
Unit-4 |
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50 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
|
Unit-4 |
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51 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Cellulose |
Unit-4 |
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52 |
CHEMISTRY |
sem5 |
ORGANIC CHEMISTRY-IV (CORE-11) |
Cellulose-Determination of Ringsize of D-Glucose |
Unit-4 |
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