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Get Full Access to University Physics, Volume 3 - 17 Edition - Chapter 9 - Problem 86
Get Full Access to University Physics, Volume 3 - 17 Edition - Chapter 9 - Problem 86

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ISBN: 9781938168185 2032

## Solution for problem 86 Chapter 9

University Physics, Volume 3 | 17th Edition

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University Physics, Volume 3 | 17th Edition

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Problem 86

The characteristic energy of the $$\mathrm{Cl}_{2}$$ molecule is $$2.95 \times 10^{-5} \mathrm{eV}$$. Determine the separation distance between the nitrogen atoms.

Text Transcription:

CI_2

2.95 times 10^-5 eV

Step-by-Step Solution:
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Reece Witcher 1/24/18 Chapters 1 & 2 Chapter 1 Scalar Vector (dot product)­ A dot B = ABsin θ ● Used in non directional quantities Vector Product (cross product)­ A cross B= ABcos θ ● Used in directional quantities ● Any parallel (0 degrees) or antiparallel (180 degrees) = 0 ● i hat (x dimension) j hat (y dimension) and k hat (z dimension) Kinematic Equations v=v(initial)+a∗t 2 x=x(initial)+v(initial)∗t+1/2∗a∗t initial¿ +2 a∗Δ x 2 v =v¿ Δ x=[(v(initial)+v)/2]∗t Hint: Identify which variables you have and need to use the proper equations Chapter 2 Average Velocity: Δ x/Δt=v(average) Average Acceleration: Δv/Δt=a(average) Instantaneous Velocity: lim Δx/Δt=dx/dt Δ t→0 lim Δ v/Δt=dv/dt=d x/d t 2 Instantaneous Acceleration: Δ t→0

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##### ISBN: 9781938168185

This full solution covers the following key subjects: . This expansive textbook survival guide covers 11 chapters, and 1200 solutions. This textbook survival guide was created for the textbook: University Physics, Volume 3 , edition: 17. University Physics, Volume 3 was written by Aimee Notetaker and is associated to the ISBN: 9781938168185. The answer to “?The characteristic energy of the $$\mathrm{Cl}_{2}$$ molecule is $$2.95 \times 10^{-5} \mathrm{eV}$$. Determine the separation distance between the nitrogen atoms.Text Transcription:CI_22.95 times 10^-5 eV” is broken down into a number of easy to follow steps, and 24 words. The full step-by-step solution to problem: 86 from chapter: 9 was answered by Aimee Notetaker, our top Physics solution expert on 03/18/22, 10:28AM. Since the solution to 86 from 9 chapter was answered, more than 203 students have viewed the full step-by-step answer.

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