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Consider all possible isomeric ketones, ...

Consider all possible isomeric ketones, including stereoisomers, of MW = 100. All these isomers are independently reacted with `NaBH_(4)` (NOTE: stereoisomers are also reacted separately). The total number of ketones that give a racemic product(s) is/are

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Total number of mono-chloro product(s) obtained (including stereo isomers), when isopentane react with chlorine in the presence of sun light?

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A schematic analysis of the reaction of the enantiomer with racemic mixture is shows below: {:(d,+,"d and l",rarr,(d)-(d)),("The(+)-form of",,"A racemic mixture of",,+),("chiral molecules",,"other molecules with",,(d)-(l)),(,,50%(d) and 50%(l),,):} The products (d-d) and (d-l) are clearly neither identical nor enantiomers (non-superimposable mirror images) as the diastereomers, stereoisomers that are not mirror images' . The formation of diasteromers allows the separation of enantiomers (called resolution) which is not easy as enantiomers have identical physical properties. One general with naturally occurring chiral molecule to form a pair of diastereomers. These can be separated easily as they have different physical properties. If the original chemical reaction can be reversed, the enantiomers can be isolated. How many diastereomers are possible among all the possible stereoisomers of 2,3-dibromopentane ?

Read the following text and answer the following questions on the basis of the same: Band theory of solid: Consider that the Si or Ge crystal contains N atoms. Electrons of each atom will have discrete energies in different orbits. The electron energy will be same if all the atoms are isolated, i.e., separated from each other by a large distance. However, in a crystal, the atoms are close to each other (2 Å to 3 Å) and therefore the electrons interact with each other and also with the neighbouring atomic cores. The overlap (or interaction) will be more felt by the electrons in the outermost orbit while the inner orbit or core electron energies may remain unaffected. Therefore, for understanding electron energies in Si or Ge crystal, we need to consider the changes in the energies of the electrons in the outermost orbit only. For Si, the outermost orbit is the third orbit (n = 3), while for Ge it is the fourth orbit (n = 4). The number of electrons in the outermost orbit is 4 (2s and 2p electrons). Hence, the total number of outer electrons in the crystal is 4N. The maximum possible number of outer electrons in the orbit is 8 (2s + 6p electrons). So, out of the 4N electrons, 2N electrons are in the 2N s-states (orbital quantum number l = 0) and 2N electrons are in the available 6N p-states. Obviously, some p-electron states are empty. This is the case of well separated or isolated atoms. The maximum possible electrons in an orbit is:

MOTION-CARBOXYLIC ACID-Exercise - 4 (LEVEL - 2 )
  1. Match the compounds in Column I with their characteristic test(s)/reac...

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  2. Match each of the compounds given in Column I with the reaction(s), th...

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  3. The major product of the following reaction is

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  4. Among the following compounds, the most acidic is

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  5. The carboxyl functional group (-COOH) is present in :

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  6. The compound that undergoes decarboxylation most readily under mild c...

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  7. After completion of the reaction (I and II), the organic compound(s) i...

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  8. P and Q are isomers of dicarboxylic acid C(4)H(4)O(4). Bothdecolorize ...

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  9. P and Q are isomer of dicraboxylic acid C(4)H(4)O(4) Both decolourixe ...

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  10. In the reaction shown, below, the major product(s) formed is/are :

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  11. Consider all possible isomeric ketones, including stereoisomers, of MW...

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  12. The product(s) of the following reaction sequence is(are):

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  13. Compound p and R upon ozonolysis produce Q and S, respectively . Th...

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  14. Columns 1,2 and 3 contain starting materials, reaction conditions, and...

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  15. Columns 1,2 and 3 contain starting materials, reaction conditions, and...

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  16. Columns 1,2 and 3 contain starting materials, reaction conditions, and...

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  17. Aniline reacts with mixed acid (cone. HNO(3) and cone. H(2)SO(4)) at 2...

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  18. Treatment of benzene with CO/HCl in the presence of anhydrous "AlCl"(3...

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  19. Treatment of benzene with CO/HCl in the presence of anhydrous "AlCl"(3...

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  20. The desired product X can be prepared by reacting the major product of...

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