(log - = 0.3010, log 3 = 0.4771, log 4 = 0.602)
or
(1) In the reaction. Q + R
→ Products,
the time taken for 99% reaction of 'Q' is twice the
concentration of 'R' varies with time as shown in figure.
e the time taken for 90% reaction of Q. The
ure. What is overall order of the reaction?
Give the units of the rate constant for the same. Write the rate expression
for the above reaction.
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Answer:
log - = 0.3010, log 3 = 0.4771, log 4 = 0.602)
or
(1) In the reaction. Q + R
→ Products,
the time taken for 99% reaction of 'Q' is twice the
concentration of 'R' varies with time as shown in figure.
e the time taken for 90% reaction of Q. The
ure. What is overall order of the reaction?
Give the units of the rate constant for the same. Write the rate expression
for the above reaction.
Explanation:v
(1) In the reaction. Q + R
→ Products,
the time taken for 99% reaction of 'Q' is twice the
concentration of 'R' varies with time as shown in figure.
e the time taken for 90% reaction of Q. The
ure. What is overall order of the reaction?
Give the units of the rate constant for the same. Write the rate expression
for the above reaction.
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