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The rate of the reaction: CH(3)COOC(2)...

The rate of the reaction:
`CH_(3)COOC_(2)H_(5) + NaOH to Ch_(3)COONa + C_(2)H_(5) OH` is given by the equation,
rate `= k [CH_(3) COOC_(2)H_(5)][NaOH]`
If concenration is expressed in mol/L the units of k are

A

`1/3` rd

B

`1/9` th

C

`1/16` th

D

16 times

Text Solution

Verified by Experts

The correct Answer is:
C

`r=K[CH_(3)COOC_(2)H_(5)][NaOH]` on adding, three times of water the resultant volume becomes four times that of initial volume.
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NARAYNA-CHEMICAL KINETICS -EXERCISE -2 (C.W) RATE OF REACTION & FACTORS
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  2. For a reaction, 2N(2)O(5)(g) to 4NO(2)(g) + O(2)(g) rate of reaction i...

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  3. The rate of the reaction: CH(3)COOC(2)H(5) + NaOH to Ch(3)COONa + C(...

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  4. The concentration of reaction decreases from 0.2 M to 0.05 M in 5 minu...

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  5. A rarr B, k(A)=10^(15) e^(-2000//T) C rarr D, k(c)=10^(14) e^(-1000/...

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  6. From the following data for the decomposition ofN(2)O(5) at 30^(@) C ,...

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  7. If doubling the concentration of a reactant 'A' increases the rate 4 t...

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  8. Consider a system containing NO(2) and SO(2) in which NO(2) is consum...

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  9. Consider a reaction, 2A + B rarr Products When concentration of B al...

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  10. For a reaction, the rate constant is expressed as k = Ae^(-40000//T). ...

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  11. The reaction CH(3)COOC(2)H(5) + NaOH to CH(3)COONa + C(2)H(5)OH is a...

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  12. For the decomposition reaction: N(2)O(4(g))rarr 2NO(2(g)), the initi...

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  13. The rate for the decomposition of NH(3) on platinum surface is zero or...

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  14. "1 dm"^(3) of 2 M CH(3)COOH is mixed with "1 dm"^(3) of 3 M ethanol to...

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  15. For a reaction, K = 2 xx 10^(13) e^(-30000//RT). When log K(y-axis) is...

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  16. The rate temperature changes from 300K to 310K. Activation energy of s...

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  17. Give the following data for the reaction: X + Y to Z Which one ...

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  18. The activation energy of a reaction is 9.0 kcal//mol. The increase i...

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  19. At 300 K rate constant for A to product at t= 50 min in 0.02 ^(-1), th...

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  20. The rate expression for the reaction A(g) + B(g) to C(g) is rate = KCA...

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