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Why can't a cyclotron accelerate electrons?

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Demetris Boehm

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Q: Why can't a cyclotron accelerate electrons?
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Related questions

Can a cyclotron be use the accelerate electrons?

Yes


What is a betatron?

A betatron is a form of cyclotron used to accelerate electrons to high speed.


Can a cyclotron accelerate negative ions?

Yes. They accelerate in the opposite direction from positively charged species.


Can cyclotron accelerate negative charge?

Yes, in the opposite direction from positive charge.


What is siclotron?

A cyclotron is a type of a particle accelerator in which charged particles accelerate outwards from the center along the spiral path.


Why is charge unit not used in cyclotron?

The Coulomb unit of charge is defined as what is transported by a steady current of 1 Ampere in 1 second. A cyclotron uses a high frequency alternating current to accelerate particles. Therefore, by the definition of a charge unit, it is impossible for a Coulomb to exist within a cyclotron while it is operational.


What is used to accelerate protons?

It is the particle accelerator that we use to accelerate protons in the physics lab. (Accelerators can accelerate other things, too.) There are a number of different accelerators, and they include the cyclotron, the synchrotron, the tevatron, and the new LHC (Large Hadron Collider) to name a few. Use the link below to begin investigating these and other similar machines.


How do you use cyclotron in a sentence?

I cyclotron my computer


What is salary of cyclotron operator?

A cyclotron operator is responsible for running a cyclotron. The average salary of a cyclotron operator is $64,000 per year.


Who is discovered by cyclotron?

The cyclotron was discovered by one Ernest Lawrence.


How does one determine the maximum energy to which a deuteron can be accelerated in a cyclotron?

The final energy attained by a deuteron undergoing cyclotron acceleration depends on the design of the cyclotron. In some machines the final energy may be as low as 3MeV whilst in others, 25MeV. Above 25MeV reletavistic effects kick-in and the cyclotron needs to be more sophisticated in its design. It does depend on the cyclotron. Theres actually an equation for that. It takes into account the maximum radius of the orbit of the particles and the wavelength of the accelerating voltage. So for a given cyclotron with exactly specified values for radius and wavelength, the maximum kinetic energy of a particle depends on its rest energy and, hence, its rest mass. But heres an easy way to figure it out: If a given cyclotron can accelerate protons to an energy of say, 2 MeV, then deuterons can be accelerated to 4 MeV. Multiply by a factor of 2.


How is a cyclotron used to treat patients?

A cyclotron is used to accelerate protons, which are used in the medical treatment of patients prescribed this form of therapy. It is an accelerated proton source. Proton therapy is gaining in use, but as it takes a cyclotron, which is a nuclear particle accelerator, to provide the accelerated protons, it costs a small fortune to set up a treatment center. The treatment begins with winding up the beast to gather and accelerate the protons (which is where the cyclotron comes in), and then the direction of the particle stream through appropriate (highly evacuated) plumbing to a treatment room. There, a patient is set up in front of the "business end" of the proton "gun" and positioned appropriately to administer the dose or radiation. Look below and check the links to related questions and to websites with related material.