Chemistry-
General
Easy

Question

Identify the final product in the following sequence of reaction.

  1.    
  2.    
  3.    
  4.    

The correct answer is:


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    Identify the final product in the following sequence of reaction.

    Identify the final product in the following sequence of reaction.

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    X is

    X is

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    Product is/are

    Product is/are

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    Arrange following compounds in decreasing order of reactivity for hydrolysis reaction :
    I) C subscript 6 end subscript H subscript 5 end subscript C O C l
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     Reagent [X] is :

     Reagent [X] is :

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    The acid D obtained through the following sequence of reactions is
    straight C subscript 2 straight H subscript 5 Br not stretchy rightwards arrow with Alc times KOH on top straight A Br subscript 2 over CCl subscript 4 straight B fraction numerator KCN over denominator left parenthesis text  excess  end text right parenthesis end fraction not stretchy rightwards arrow straight C not stretchy rightwards arrow with straight H subscript 3 straight O to the power of plus on top straight D

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    straight C subscript 2 straight H subscript 5 Br not stretchy rightwards arrow with Alc times KOH on top straight A Br subscript 2 over CCl subscript 4 straight B fraction numerator KCN over denominator left parenthesis text  excess  end text right parenthesis end fraction not stretchy rightwards arrow straight C not stretchy rightwards arrow with straight H subscript 3 straight O to the power of plus on top straight D

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    A wire having cross-sectional area S is attached to wall on one side and a block of mass M on the other side which placed on a horizontal surface having coefficient of friction mu as shown. Material of wire has coefficient of thermal expansion alpha and Young's modulus Y. At initial temperature there is no stress in the wire. Now the wire is cooled. At what decrease in temperature the block will begin to move.

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    In the given figure F = 10 N, R = 1 m, mass of the body is 2 kg and moment of inertia of the body about an axis passing through O and perpendicular to plane of body 4 k g minus m to the power of 2 end exponent O is the centre of mass of the body.

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    In the given figure F = 10 N, R = 1 m, mass of the body is 2 kg and moment of inertia of the body about an axis passing through O and perpendicular to plane of body 4 k g minus m to the power of 2 end exponent O is the centre of mass of the body.

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    A conical pendulum consists of a mass M suspended from a string of length l. The mass executes a circle of radius R in a horizontal plane with speed v. At time t, the mass is at position R stack i with hat on top and has velocity v stack j with hat on top At time t, the angular momentum vector of the mass M about the point from which the string suspended is :

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    Velocity of the centre of smaller cylinder is v. There is no slipping anywhere. The velocity of the centre of larger cylinder is

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