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vessel of volume 1.0dm^(3) that contains it? Take sigma =0.36nm^(2) . 1B. 6 When studying the photochemical processes that can oceur in the upper atmosphere,

vessel of volume

1.0dm^(3)

that contains it? Take

\\\\sigma =0.36nm^(2)

.\ 1B. 6 When studying the photochemical processes that can oceur in the upper atmosphere, it is important to know how often atoms and molecules collide. At an altitude of

20km

the temperature is

217K

and the pressure

0.050atm

. What is the mean free path of

N_(2)

molecules? How many collisions per second does an

N_(2)

molecule make at this altitude? Take

\\\\sigma =0.43nm^(2)

.

image text in transcribed
vessel of volume 1.0dm3 that contains it? Take =0.36nm2. 1B. 6 When studying the photochemical processes that can oceur in the upper atmosphere, it is important to know how often atoms and molecules collide. At an altitude of 20km the temperature is 217K and the pressure 0.050atm. What is the mean free path of N2 molecules? How many collisions per second does an N2 molecule make at this altitude? Take =0.43nm2 vessel of volume 1.0dm3 that contains it? Take =0.36nm2. 1B. 6 When studying the photochemical processes that can oceur in the upper atmosphere, it is important to know how often atoms and molecules collide. At an altitude of 20km the temperature is 217K and the pressure 0.050atm. What is the mean free path of N2 molecules? How many collisions per second does an N2 molecule make at this altitude? Take =0.43nm2

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