Find the collision density (number of collisions / sec / m3) of NO with O3 at 300 K if the concentration at 1 atm total pressure are each 0.2 ppm (0.2 mg/L) and if the molecular diameters are 300 and 375 pm, respectively. The universal gas constant is given as 0.082 L atm K-1 mol-1. (Hint: For 1 ppm at 1 atm total pressure, the partial pressure is 1 x 10-6 atm)
Find the collision density (number of collisions / sec / m3) of NO with O3 at 300 K if the concentration at 1 atm total pressure are each 0.2 ppm (0.2 mg/L) and if the molecular diameters are 300 and 375 pm, respectively. The universal gas constant is given as 0.082 L atm K-1 mol-1. (Hint: For 1 ppm at 1 atm total pressure, the partial pressure is 1 x 10-6 atm)
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Find the collision density (number of collisions / sec / m3) of NO with O3 at 300 K if the concentration at 1 atm total pressure are each 0.2 ppm (0.2 mg/L) and if the molecular diameters are 300 and 375 pm, respectively. The universal gas constant is given as 0.082 L atm K-1 mol-1. (Hint: For 1 ppm at 1 atm total pressure, the partial pressure is 1 x 10-6 atm)
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