COLLEGE PHYSICS-CONNECT ACCESS
COLLEGE PHYSICS-CONNECT ACCESS
5th Edition
ISBN: 9781260486834
Author: GIAMBATTISTA
Publisher: MCG
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Chapter 7, Problem 103P

(a)

To determine

The ratio of the speeds vα/vRn.

(a)

Expert Solution
Check Mark

Answer to Problem 103P

The ratio of the speeds vα/vRn is 55.5,

Explanation of Solution

Write the expression for conservation of momentum.

  pi=pf        (I)

Here, pi is the initial momentum and pf is the final momentum.

Since the initial momentum of the system is zero

  pi=0        (II)

The final momentum of the system is,

  pf=mRnvRn+mαvα        (III)

Here, mRn is the mass of the radon nucleus, vRn is the speed of the radon nucleus decays, mα is the mass of the alpha particle, and vα is the speed of the alpha particle decays.

Conclusion:

Substitute the equation (II) and (III) in equation (I).

  mRnvRn+mαvα=0mRnvRn=mαvαvαvRn=mRnmα|vα||vRn|=mRnmα

Substitute 222u for mRn and 4u for mα in the above relation to find ratio vα/vRn.

  |vα||vRn|=(222u)4u=55.5

Therefore, the ratio of the speeds vα/vRn is 55.5,

(b)

To determine

The ratio of the magnitude of the momentum pα/pRn.

(b)

Expert Solution
Check Mark

Answer to Problem 103P

The ratio of the magnitude of the momentum pα/pRn is 1.0.

Explanation of Solution

Write the expression for momentum of the alpha particle.

  pα=mαvα        (IV)

Here, mα is the mass of the alpha particle and vα is the speed of the alpha particle decays.

Write the expression for momentum of the radon particle.

  pRn=mRnvRn        (V)

Here, mRn is the mass of the radon nucleus and vRn is the speed of the radon nucleus decays,

Conclusion:

Divide the equation (IV) by (V).

  pαpRn=mαvαmRnvRn

Substitute 222u for mRn, 55.5 for vα/vRn, and 4u for mα in the above relation to find ratio pα/pRn.

  pαpRn=(4u)(222u)(55.5)=1.0

Therefore, the ratio of the magnitude of the momentum pα/pRn is 1.0.

(c)

To determine

The ratio of the kinetic energies Kα/KRn.

(c)

Expert Solution
Check Mark

Answer to Problem 103P

The ratio of the kinetic energies Kα/KRn is 55.5.

Explanation of Solution

Write the expression for kinetic energy of the alpha particle.

  Kα=12mαvα2        (VI)

Write the expression for kinetic energy of the radon particle.

  KRn=12mRnvRn2        (VII)

Conclusion:

Divide the equation (VI) by (VII).

  KαKRn=12mαvα212mRnvRn2=mαmRn(vαvRn)2

Substitute 222u for mRn, 55.5 for vα/vRn, and 4u for mα in the above relation to find ratio Kα/KRn.

  KαKRn=(4u)(222u)(55.5)2=55.5

Therefore, the ratio of the kinetic energies Kα/KRn is 55.5.

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Chapter 7 Solutions

COLLEGE PHYSICS-CONNECT ACCESS

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