Figure 1. Nitrite concentration versus time for the reaction of ammonium ion with nitrite ion = 0.00500 M nitrite concentration (M) (NO₂) 0.005- 0.004- 0.003 0.002- 0.001" 0.000- 0 at f= 0 s: d(NO₂) dt 50000 (NHá), = 0.100 M at r= 75,000 s: = 1.35 x 10-7 M/s Critical Thinking Questions 10. What is the rate of reaction at r = 0 s? d(NO₂) di 100000 time (s) 11. What is the rate of reaction at t = 75,000 s? M/s 1.80 x 10p 150000 12. How does the rate of reaction change as (NO₂) decreases? 13. Estimate the value of the rate of reaction at = 175,000 s. Explain your reasoning.

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Chapter1: Chemical Foundations
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Figure 1. Nitrite concentration versus time for the reaction of
ammonium ion with nitrite ion
(NO₂) = 0.00500 M
nitrite concentration (M)
0.005
0.004-
0.003
0.002-
0.0011
0.000-
0
at t=0 s:
d(NO₂)
dt
50000
at t= 75,000 s:
(NH).
Critical Thinking Questions
10. What is the rate of reaction at r = 0 s?
d(NO₂)
di
time (s)
1.35 x 10-7 M/s
100000
= 0.100 M
11. What is the rate of reaction at t = 75,000 s?
1.80 × 108 M/s
150000
12. How does the rate of reaction change as (NO₂) decreases?
13. Estimate the value of the rate of reaction at /= 175,000 s. Explain your reasoning.
Transcribed Image Text:Figure 1. Nitrite concentration versus time for the reaction of ammonium ion with nitrite ion (NO₂) = 0.00500 M nitrite concentration (M) 0.005 0.004- 0.003 0.002- 0.0011 0.000- 0 at t=0 s: d(NO₂) dt 50000 at t= 75,000 s: (NH). Critical Thinking Questions 10. What is the rate of reaction at r = 0 s? d(NO₂) di time (s) 1.35 x 10-7 M/s 100000 = 0.100 M 11. What is the rate of reaction at t = 75,000 s? 1.80 × 108 M/s 150000 12. How does the rate of reaction change as (NO₂) decreases? 13. Estimate the value of the rate of reaction at /= 175,000 s. Explain your reasoning.
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