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nikdorinn [45]
3 years ago
13

Which one of the following complexes can exhibit geometrical isomerism? Which one of the following complexes can exhibit geometr

ical isomerism? [Cu(NH3)4]2+ (square planar) [Zn(NH3)2Cl2] (tetrahedral) [Cu(NH3)5Cl]2+ (octahedral) [Pt(NH3)2Cl2] (square planar) All of the above can exhibit geometrical isomerism.

Chemistry
1 answer:
just olya [345]3 years ago
5 0

Answer:

[Pt(NH_{3}_{2})Cl_{2}] shows geometrical isomerism.

Explanation:

<u>Geometrical isomerism:</u>

<em>"Molecules having same molecular formula but the but difference in the arrangement of atoms."</em>

Cis and trans isomers are called geometrical isomers.

Among the given , [Pt(NH_{3}_{2})Cl_{2}] shows geometrical isomerism.

The <em>cis </em>and <em>trans</em> forms of the [Pt(NH_{3}_{2})Cl_{2}] are as follows.

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The frequency factors for these two reactions are very close to each other in value. Assuming that they are the same, compute th
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The question is incomplete, complete question is :

The frequency factors for these two reactions are very close to each other in value. Assuming that they are the same, compute the ratio of the reaction rate constants for these two reactions at 25°C.

\frac{K_1}{K_2}=?

Activation energy of the reaction 1 ,Ea_1 = 14.0 kJ/mol

Activation energy of the reaction 2,Ea_1  = 11.9 kJ/mol

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0.4284 is the ratio of the rate constants.

Explanation:

According to the Arrhenius equation,

K=A\times e^{\frac{-Ea}{RT}}

The expression used with catalyst and without catalyst is,

\frac{K_2}{K_1}=\frac{A\times e^{\frac{-Ea_2}{RT}}}{A\times e^{\frac{-Ea_1}{RT}}}

\frac{K_2}{K_1}=e^{\frac{Ea_1-Ea_2}{RT}}

where,

K_2 = rate constant reaction -1

K_1 = rate constant reaction -2

Activation energy of the reaction 1 ,Ea_1 = 14.0 kJ/mol = 14,000 J

Activation energy of the reaction 2,Ea_1  = 11.9 kJ/mol = 11,900 J

R = gas constant = 8.314 J/ mol K

T = temperature = 25^oC=273+25=298 K

Now put all the given values in this formula, we get

\frac{K_1}{K_2}=e^{\frac{11,900- 14,000Jl}{8.314 J/mol K\times 298 K}}=2.3340

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