Physics: Principles with Applications
Physics: Principles with Applications
6th Edition
ISBN: 9780130606204
Author: Douglas C. Giancoli
Publisher: Prentice Hall
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Question
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Chapter 29, Problem 11P

(a)

To determine

The stiffness constant.

(a)

Expert Solution
Check Mark

Answer to Problem 11P

The stiffness constant is k=680.5 N/m

Explanation of Solution

Given:

The given graph is shown below.

  Physics: Principles with Applications, Chapter 29, Problem 11P

  r0=0.074 nm

  PE=4.5 eV

  1 eV=1.6×1019J

Formula used:

Potential energy is given by: PE=12kx2

Calculation:

First, calculate the value of x as follows:

  x=rr0x=(0.12 nm)(0.074 nm)x=0.046 nm

Rearranging the above given formula,

  k=2PEx2k=2(4.5 eV)(0.046 nm)2k=2(4.5×1.6×1019J)(0.046×109m)2k=680.5 N/m

Conclusion:

Thus, the stiffness constant is k=680.5 N/m

(b)

To determine

The fundamental wavelength for vibrational transitions.

(b)

Expert Solution
Check Mark

Answer to Problem 11P

Fundamental wavelength is λ=2.1×106m

Explanation of Solution

Given:

Mass of proton is m=1.67×1027kg

Speed of light is c=3×108m/s

Formula used:

Wavelength can be given as:

  λ=cf

Calculation:

Angular frequency can be written as:

  ω=2πfkm=2πff=12πkm

Now, using the above formula of wavelength,

  λ=c(12πkm)λ=2πcmk

Substituting all the values and also use half of the mass as given. So

  λ=2(3.14)(3×108m/s)12(1.67×1027kg)(680.5 N/m)λ=2.1×106m

Conclusion:

Thus, the fundamental wavelength is λ=2.1×106m

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