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A monolayer of N2 molecules (effective area 0.165 nm2) is adsorbed on the surface of

Physical Chemistry | 8th Edition | ISBN: 9780716787594 | Authors: Peter Atkins, Julio de Paula ISBN: 9780716787594 348

Solution for problem 25.4(a) Chapter 25

Physical Chemistry | 8th Edition

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Physical Chemistry | 8th Edition | ISBN: 9780716787594 | Authors: Peter Atkins, Julio de Paula

Physical Chemistry | 8th Edition

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Problem 25.4(a)

A monolayer of N2 molecules (effective area 0.165 nm2) is adsorbed on the surface of 1.00 g of an Fe/Al2O3 catalyst at 77 K, the boiling point of liquid nitrogen. Upon warming, the nitrogen occupies 2.86 cm3 at 0C and 760 Torr. What is the surface area of the catalyst?

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Lecture Notes 10/10­10/14  Problem of Bohr's Model o Electrons moving in defined orbits around the nucleus at known energies only works for hydrogen o Doesn't take into account the wave­particle duality of electrons  Matter is a wave (and a particle) o De Broglie: all matter has wave properties ­ can calculate wavelengλh:...

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Chapter 25, Problem 25.4(a) is Solved
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Textbook: Physical Chemistry
Edition: 8
Author: Peter Atkins, Julio de Paula
ISBN: 9780716787594

Physical Chemistry was written by and is associated to the ISBN: 9780716787594. Since the solution to 25.4(a) from 25 chapter was answered, more than 223 students have viewed the full step-by-step answer. This textbook survival guide was created for the textbook: Physical Chemistry , edition: 8. The answer to “A monolayer of N2 molecules (effective area 0.165 nm2) is adsorbed on the surface of 1.00 g of an Fe/Al2O3 catalyst at 77 K, the boiling point of liquid nitrogen. Upon warming, the nitrogen occupies 2.86 cm3 at 0C and 760 Torr. What is the surface area of the catalyst?” is broken down into a number of easy to follow steps, and 50 words. This full solution covers the following key subjects: . This expansive textbook survival guide covers 25 chapters, and 1736 solutions. The full step-by-step solution to problem: 25.4(a) from chapter: 25 was answered by , our top Chemistry solution expert on 03/08/18, 07:47PM.

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