9. A reaction has an activation energy of 40 kJ/mol. What happens to the rate if you increase the temperature from 70°C to 80 °C? A. Rate increases approximately 1.5 times B. Rate increases approximately 5000 times 10. Based off the mechanism of the following reaction, predict the rate law for the overall reaction. 4A+2B₂ → 2 A2B2 (Overall Reaction) Mechanism 2 A+2 B2A2B4 (Fast) 2 A+ A2B4-2 A2B2 (Slow) A Rate = K[A]4[B₂]² B. Rate = K[A]2[B₂]² C. Rate does not increase D. Rate increases approximately 3 times following problem C. Rate = K[A]2[A2B4] D. Rate = K[A]¹/4 [B₂]1/2 Show all work to any calculations and justify your answ

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Chapter1: Chemical Foundations
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B. 12
24
A. 6
76
9. A reaction has an activation energy of 40 kJ/mol. What happens to the rate if you increase the
temperature from 70°C to 80 °C?
A. Rate increases approximately 1.5 times
B. Rate increases approximately 5000 times
Mechanism
2 A+2 B₂→ A2B4 (Fast)
2 A+ A2B4-2 A₂B2 (Slow)
A Rate = k[A]4[B₂]²
B. Rate = K[A]²[B₂]²
D. 36
A 10. Based off the mechanism of the following reaction, predict the rate law for the overall reaction.
4 A + 2B2 → 2 A2B2 (Overall Reaction)
C. Rate does not increase
D. Rate increases approximately 3 times
C. Rate = K[A]2[A2B4]
D. Rate = K[A]¹/4 [B₂]1/2
the following problem Show all work to any calculations and justify your answer.
Transcribed Image Text:B. 12 24 A. 6 76 9. A reaction has an activation energy of 40 kJ/mol. What happens to the rate if you increase the temperature from 70°C to 80 °C? A. Rate increases approximately 1.5 times B. Rate increases approximately 5000 times Mechanism 2 A+2 B₂→ A2B4 (Fast) 2 A+ A2B4-2 A₂B2 (Slow) A Rate = k[A]4[B₂]² B. Rate = K[A]²[B₂]² D. 36 A 10. Based off the mechanism of the following reaction, predict the rate law for the overall reaction. 4 A + 2B2 → 2 A2B2 (Overall Reaction) C. Rate does not increase D. Rate increases approximately 3 times C. Rate = K[A]2[A2B4] D. Rate = K[A]¹/4 [B₂]1/2 the following problem Show all work to any calculations and justify your answer.
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