What is the velocity of a proton with an energy of 0.12 keV?

In summary, to calculate the velocity of a proton with an energy of 0.12 keV, we can use the equation E=0.5mv^2 and convert from eV to Joules using dimensional analysis. We get the correct answer of 1.5 x 10^5 ms^-1 when we use the correct conversion factor and solve for v.
  • #1
James...
25
0

Homework Statement



Calculate the veolcity of a proton of energy 0.12 keV

proton mass = 1.7 x 10^-27

Homework Equations


The Attempt at a Solution



I thought...

0.12 keV = 120 eV

120/1.60 x 10^-19 = 7.5 x 10^20 J

E = 0.5mv^2

sqrt(2E/m) = v

but I'm getting something to x 10^23 so its obviously wrong.

its A-Level physics so shouldn't be a really complex answer...

Going wrong somewhere but can't work it out. Probably where I divided by the charge of an electron?

Any help appreciated.

James
 
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  • #2
What exactly is an electronVolt?
 
  • #3
You divided instead of multiplying. Try using dimensional analysis to convert from eV to Joules. It takes a lot of guess work out of the problem.
 
  • #4
willem2 said:
What exactly is an electronVolt?

By definition, it is equal to the amount of kinetic energy gained by a single unbound electron when it accelerates through an electrostatic potential difference of one volt. (from Wiki)

efekwulsemmay said:
You divided instead of multiplying. Try using dimensional analysis to convert from eV to Joules. It takes a lot of guess work out of the problem.

Oh, my tutor told me to divide...

Is it because 1 Volt = 1 Joule/1 Coulomb

There for Joules = V * C ?

So eV multiplied but the charge of an electron give the Energy of the proton?

Also, I've not heard of Dinentional Analysis before, what exactly is it?

Thanks alot

james
 
  • #5
So would the correct answer be...

120 * 1.6 x 10-19

= 1.92 x 10 -17

sqrt(2*1.92 x 10 -17/1.7 x 10-27) = v = 1.5 x 105 ms-1
 

1. What is the velocity of a proton?

The velocity of a proton can vary depending on its energy and the force acting on it. However, the average velocity of a proton is about 2.19 × 10^6 meters per second.

2. How is the velocity of a proton measured?

The velocity of a proton can be measured using particle accelerators, which use electromagnetic fields to accelerate the protons and measure their velocity.

3. What factors affect the velocity of a proton?

The velocity of a proton can be affected by its energy, the electric and magnetic fields it encounters, and the medium it is traveling through.

4. Can the velocity of a proton be faster than the speed of light?

No, according to Einstein's theory of relativity, the speed of light is the maximum speed at which any object can travel. Therefore, the velocity of a proton cannot exceed the speed of light.

5. How does the velocity of a proton compare to other particles?

The velocity of a proton is relatively fast compared to other particles. For example, electrons have a much lower velocity, while other subatomic particles such as neutrinos can have velocities close to the speed of light.

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