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If optical rotation produced by is 36^(...

If optical rotation produced by is `36^(@)` then that produced by is :

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If optical rotaion produced by compound (i) is + 52^@ than that produced by compound (ii) is

Define: Optical rotation

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A tube of sugar solution 20 cm long is placed between crossed nicols and illuminated with light of wavelength 6xx10^(-5) cm If the optical rotation produced is 13^(@) and the specific rotation is 65^(@) determine the strength of the solution

A tube of sugar solution 20 cm long is placed between crossed nicols and illuminated with light of wavelength 6xx10^(-5) cm If the optical rotation produced is 13^(@) and the specific rotation is 65^(@) determine the strength of the solution

If the optical rotation produced by the compound (A) is +52^(@) , the one produced by compound (B) is :

If the optical rotation produced by the compound (A) is +52^(@) , the one produced by compound (B) is :

If the specific rotation produced by the compound ‘A’is +52^(@) , then the specific rotation of compound .B. is

theta is the optical rotation produced by sugar solution of concentration C and taken in a glass tube of length 0.2 m and radius r . Then the solution is transferred to another glass tube of length 0.3 m and radius r and the remaining space is filled with distilled water. The optical rotation produced by this solution is

In the visible region of the spectrum the rotation of the place of polarization is given by theta=a+(b)/(lambda^2) . The optical rotation produced by a particular material is found to be 30^@ per mm at lambda=5000Å and 50^@ per mm at lambda=4000Å . The value of constant a will be