A hydrogen molecule (diameter 1.79 x 10 cm), traveling at the rms speed, escapes from a 4090 K furnace into a chamber containing cold argon atoms (diameter 3.57 x 10 cm) at a density of 3.78 x 1019 atoms/cm³(a) What is the speed of the hydrogen molecule? (b) If it collides with an argon atom, what is the closest their centers can be, considering each as spherical? (c) What is the initial number of collisions per second experienced by the hydrogen molecule? (Hint: Assume that the argon atoms are stationary)

icon
Related questions
Question
100%

Asap plzzzzzzzzz

A hydrogen molecule (diameter 1.79 x 108 cm), traveling at the rms speed, escapes from a 4090 K furnace into a chamber containing
cold argon atoms (diameter 3.57 x 108 cm) at a density of 3.78 x 1019 atoms/cm³(a) What is the speed of the hydrogen molecule? (b) if
it collides with an argon atom, what is the closest their centers can be, considering each as spherical? (c) What is the initial number of
collisions per second experienced by the hydrogen molecule? (Hint: Assume that the argon atoms are stationary.)
Transcribed Image Text:A hydrogen molecule (diameter 1.79 x 108 cm), traveling at the rms speed, escapes from a 4090 K furnace into a chamber containing cold argon atoms (diameter 3.57 x 108 cm) at a density of 3.78 x 1019 atoms/cm³(a) What is the speed of the hydrogen molecule? (b) if it collides with an argon atom, what is the closest their centers can be, considering each as spherical? (c) What is the initial number of collisions per second experienced by the hydrogen molecule? (Hint: Assume that the argon atoms are stationary.)
Expert Solution
steps

Step by step

Solved in 3 steps with 3 images

Blurred answer