Concept explainers
(a)
The scattering angle of the proton and electron.
(a)
Answer to Problem 19P
The scattering angle of the proton and electron is
Explanation of Solution
Write the expression for the conservation of momentum along horizontal direction.
Here,
Write the expression for the conservation of momentum along the vertical direction.
Rewrite the above equation in terms of p.
Substitute the above expression in (I) to rewrite.
Write the expression for the Compton scattering.
Here, m is the mass of the electron.
Substitute the above expression in (II) to rewrite.
Write the expression for the wavelength of the photon before collision.
Here,
Substitute the above equation in (III) to rewrite in terms of
Write the expression to calculate the rest mass energy of electron.
Here, E is the rest mass energy of the photon.
Substitute the above equation in the expression for
The rest mass energy of the photon is
Substitute
Conclusion:
Therefore, the scattering angle of the proton and electron is
(b)
The energy and momentum of the scattered photon.
(b)
Answer to Problem 19P
The energy and momentum of the scattered photon is respectively
Explanation of Solution
Write the expression to calculate the energy of the scattered photon.
Here,
Substitute the expression for
Rewrite the above expression using
Rewrite the equation using
Substitute
Write the expression to calculate the momentum of the scattered electron.
Here,
Substitute
Conclusion:
Therefore, the energy and momentum of the scattered photon is respectively
(c)
The kinetic energy and momentum of the scattered electron.
(c)
Answer to Problem 19P
The energy and momentum of the scattered electron is respectively
Explanation of Solution
Write the expression to calculate the kinetic energy of the scattered electron.
Here, K is the kinetic energy of the scattered electron.
Substitute
Refer the equation for p in part (a) to calculate the momentum of the electron.
Write the expression for the momentum of the electron.
Substitute the expression for
Rewrite the above expression using
Substitute
Conclusion:
Therefore, the energy and momentum of the scattered electron is respectively
Want to see more full solutions like this?
Chapter 39 Solutions
Physics for Scientists and Engineers with Modern Physics
- air is pushed steadily though a forced air pipe at a steady speed of 4.0 m/s. the pipe measures 56 cm by 22 cm. how fast will air move though a narrower portion of the pipe that is also rectangular and measures 32 cm by 22 cmarrow_forwardNo chatgpt pls will upvotearrow_forward13.87 ... Interplanetary Navigation. The most efficient way to send a spacecraft from the earth to another planet is by using a Hohmann transfer orbit (Fig. P13.87). If the orbits of the departure and destination planets are circular, the Hohmann transfer orbit is an elliptical orbit whose perihelion and aphelion are tangent to the orbits of the two planets. The rockets are fired briefly at the depar- ture planet to put the spacecraft into the transfer orbit; the spacecraft then coasts until it reaches the destination planet. The rockets are then fired again to put the spacecraft into the same orbit about the sun as the destination planet. (a) For a flight from earth to Mars, in what direction must the rockets be fired at the earth and at Mars: in the direction of motion, or opposite the direction of motion? What about for a flight from Mars to the earth? (b) How long does a one- way trip from the the earth to Mars take, between the firings of the rockets? (c) To reach Mars from the…arrow_forward
- No chatgpt pls will upvotearrow_forwarda cubic foot of argon at 20 degrees celsius is isentropically compressed from 1 atm to 425 KPa. What is the new temperature and density?arrow_forwardCalculate the variance of the calculated accelerations. The free fall height was 1753 mm. The measured release and catch times were: 222.22 800.00 61.11 641.67 0.00 588.89 11.11 588.89 8.33 588.89 11.11 588.89 5.56 586.11 2.78 583.33 Give in the answer window the calculated repeated experiment variance in m/s2.arrow_forward
- How can i solve this if n1 (refractive index of gas) and n2 (refractive index of plastic) is not known. And the brewsters angle isn't knownarrow_forward2. Consider the situation described in problem 1 where light emerges horizontally from ground level. Take k = 0.0020 m' and no = 1.0001 and find at which horizontal distance, x, the ray reaches a height of y = 1.5 m.arrow_forward2-3. Consider the situation of the reflection of a pulse at the interface of two string described in the previous problem. In addition to the net disturbances being equal at the junction, the slope of the net disturbances must also be equal at the junction at all times. Given that p1 = 4.0 g/m, H2 = 9.0 g/m and Aj = 0.50 cm find 2. A, (Answer: -0.10 cm) and 3. Ay. (Answer: 0.40 cm)please I need to show all work step by step problems 2 and 3arrow_forward
- Physics for Scientists and Engineers with Modern ...PhysicsISBN:9781337553292Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningPrinciples of Physics: A Calculus-Based TextPhysicsISBN:9781133104261Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningModern PhysicsPhysicsISBN:9781111794378Author:Raymond A. Serway, Clement J. Moses, Curt A. MoyerPublisher:Cengage Learning
- University Physics Volume 3PhysicsISBN:9781938168185Author:William Moebs, Jeff SannyPublisher:OpenStax