1.16 х 102 56 5.80 x 103 28 84 b) 28 sT c) 4.64 x 102 s d) 3.57 x 102 s Q3) Which of the following is true depending on the given rate law: Rate = k[IO; ][I-}[H']? a) This reaction is 1st order with respect to IO3 and 3rd order for the overall reaction. b) This reaction is 2nd order with c) This reaction is 1st order with respect to IO3 and 5th order for the overall reaction. d) This reaction is 3rd order with respect to H*. Q4) The 1st order reaction: A → products, the [A], =0.40 M. What is the concentration of A after 12 seconds if the half-life of the reaction is 2 seconds? a) 0.10 M respect to I- and 3rd order for the overall reaction. %3D b)8.0 x 102 M c)1.01 x 10 Q5) The
1.16 х 102 56 5.80 x 103 28 84 b) 28 sT c) 4.64 x 102 s d) 3.57 x 102 s Q3) Which of the following is true depending on the given rate law: Rate = k[IO; ][I-}[H']? a) This reaction is 1st order with respect to IO3 and 3rd order for the overall reaction. b) This reaction is 2nd order with c) This reaction is 1st order with respect to IO3 and 5th order for the overall reaction. d) This reaction is 3rd order with respect to H*. Q4) The 1st order reaction: A → products, the [A], =0.40 M. What is the concentration of A after 12 seconds if the half-life of the reaction is 2 seconds? a) 0.10 M respect to I- and 3rd order for the overall reaction. %3D b)8.0 x 102 M c)1.01 x 10 Q5) The
Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter12: Chemical Equilibrium
Section: Chapter Questions
Problem 12QRT
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Q3) Which of the following is true depending on the given rate law: Rate =
k[IO 3 ^ - ][I^ - ]^ 2 [H^ + ]^ 2
a) This reaction is 1 ^ (st) order with respect to IO 3^ - and 3 ^ 10 order for the overall reaction. b) This reaction is 2 ^ (nd) order with respect to 1^ - and 3 ^ (rd) order for the overall reaction. c) This reaction is 1 ^ x order with respect to IO 3 ^ - and 5 ^ (th) order for the overall reaction.
d) This reaction is 3 ^ 10 order with respect to H^ +
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