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6.6 A single N2 molecule is confined to a cubical nanobox of dimension 20A20A20A at 300K. (a) Calculate the number of collisions with a wall

image text in transcribed 6.6 A single N2 molecule is confined to a cubical nanobox of dimension 20A20A20A at 300K. (a) Calculate the number of collisions with a wall per second for this molecule on average, using the procedure outlined in this chapter. (b) Calculate the molecule's momentum change per collision. (c) From (b) calculate the pressure in Nm2 that the wall experiences 6.6 A single N2 molecule is confined to a cubical nanobox of dimension 20A20A20A at 300K. (a) Calculate the number of collisions with a wall per second for this molecule on average, using the procedure outlined in this chapter. (b) Calculate the molecule's momentum change per collision. (c) From (b) calculate the pressure in Nm2 that the wall experiences

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