Finding the Scattering Angle of a 0.88Mev Photon & Electron

In summary, the conversation discusses the concept of Compton scattering, where a 0.88Mev photon is scattered by a free electron at rest, resulting in a scattered electron with an equal scattering angle to the photon. The individual is seeking assistance in finding the angle using a given formula, but is unsure about how to substitute the necessary information. They are directed to a resource that explains the principles of Compton scattering and provides a formula for further understanding.
  • #1
bluesnake
2
0
A 0.88Mev photon is scattered by a free electron initially at rest such that the scattering angle of the scattered electron is equal to the scattered photon.How to find the angle??
 
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  • #2
Hi bluesnake. Welcome to PF.

Quoting from the posting rules:

NOTE: You MUST show that you have attempted to answer your question in order to receive help. You MUST make use of the homework template, which automatically appears when a new topic is created in the homework help forums.
 
  • #3
kuruman said:
Hi bluesnake. Welcome to PF.

Quoting from the posting rules:

NOTE: You MUST show that you have attempted to answer your question in order to receive help. You MUST make use of the homework template, which automatically appears when a new topic is created in the homework help forums.

Hi, i tried already.My teacher only give us this formula.
lamdai =lamda o+ lamda(c)Contant* (1-cosdegree)
the problem is i don't have the other information n lamda.how to sub ?
 
  • #4

1. What is the purpose of finding the scattering angle of a 0.88Mev photon and electron?

The purpose of finding the scattering angle is to understand the behavior of particles when they interact with each other, specifically in this case, when a photon and electron collide. This information can help us understand the fundamental laws of physics and can also have practical applications in fields such as medicine and nuclear energy.

2. How is the scattering angle of a photon and electron calculated?

The scattering angle is calculated using various equations, such as the Compton scattering formula, which takes into account the energy and momentum of the particles before and after the collision. These equations are based on the principles of conservation of energy and momentum.

3. What factors can affect the scattering angle?

The scattering angle can be affected by the energy and momentum of the particles, as well as the angle at which they collide. Other factors such as the properties of the particles (e.g. mass, charge) and the medium in which they are traveling can also play a role.

4. Why is it important to consider the scattering angle in experiments involving photons and electrons?

The scattering angle provides valuable information about the interaction between particles, which can help us better understand the underlying physical processes. It also allows us to make predictions and verify theoretical models, which is crucial in the field of scientific research.

5. How does the scattering angle of a 0.88Mev photon and electron differ from other energy levels?

The scattering angle can vary depending on the energy of the particles involved. In general, higher energy particles tend to have smaller scattering angles, while lower energy particles have larger scattering angles. However, there may be other factors at play, such as the properties of the particles and the medium in which they are traveling, which can affect the scattering angle at different energy levels.

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