Question

In a nonrelativistic experiment, an electron and a proton are each located along the x-axis to...

In a nonrelativistic experiment, an electron and a proton are each located along the x-axis to within an uncertainty of 2.45 µm. Determine the minimum uncertainty in the x-component of the velocity of the electron and the proton. (Enter your answers in m/s.)

HINT

(a)

the electron

m/s

(b)

the proton

m/s

Homework Answers

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
You measure the x component of the position of an electron along an x axis as...
You measure the x component of the position of an electron along an x axis as 7.5 x 10- 12 m, with certainty of 99.59. What is the least uncertainty in any simultaneous measurement of the x component of the velocity of this electron?
A proton moves along the x axis according to the equation x = 50t + 10t2,...
A proton moves along the x axis according to the equation x = 50t + 10t2, where x is in meters and t is in seconds. For the time range, -8 s ≤ t ≤ 4s, answer the questions below. Show all work and explain your answers. a) Estimate the fathest distance this proton could move in the negative direction of the x axis. What is the velocity at the moment? b) In this time range, find out when the...
A proton is located at the origin, and a second proton is located on the x-axis...
A proton is located at the origin, and a second proton is located on the x-axis at x = 6 fm (1 fm = 10-15 m). (ma = 6.64 × 10-27 kg, e = 1.6 × 10-19 C) (c) Starting with the three-particle system, find the change in electric potential energy if the alpha particle is allowed to escape to infinity while the two protons remain fixed in place. (Throughout, neglect any radiation effects.) ------------ J (d) Use conservation of...
A proton is located at the origin, and a second proton is located on the x-axis...
A proton is located at the origin, and a second proton is located on the x-axis at x = 6 fm (1 fm = 10-15 m). (ma = 6.64 × 10-27 kg, e = 1.6 × 10-19 C) (a) An alpha particle (charge = 2e, mass = 6.64 x 10-27 kg) is now placed at (x, y) = (3, 5) fm. Calculate the electric potential energy associated with this configuration. 0.641  J 0.345  J 1.962  J 1.141  J (b) Starting with the three-particle system,...
A proton is located at the origin, and a second proton is located on the x-axis...
A proton is located at the origin, and a second proton is located on the x-axis at x1 = 5.56 fm (1 fm = 10?15 m). (a) Calculate the electric potential energy associated with this configuration. J (b) An alpha particle (charge = 2e, mass = 6.64 ? 10?27 kg) is now placed at (x2, y2) = (2.78, 2.78) fm. Calculate the electric potential energy associated with this configuration. J (c) Starting with the three particle system, find the change...
A proton is located at the origin, and a second proton is located on the x-axis...
A proton is located at the origin, and a second proton is located on the x-axis at x1 = 6.96 fm (1 fm = 10−15 m). (a) Calculate the electric potential energy associated with this configuration. J (b) An alpha particle (charge = 2e, mass = 6.64 ✕ 10−27 kg) is now placed at (x2, y2) = (3.48, 3.48) fm. Calculate the electric potential energy associated with this configuration. J (c) Starting with the three particle system, find the change...
A proton moving with a velocity of 4.0×10^4 m/s along the +y-axis enters a magnetic field...
A proton moving with a velocity of 4.0×10^4 m/s along the +y-axis enters a magnetic field of 0.20 T directed towards the -x-axis. What is the magnitude force acting on the proton?
An electron that has a velocity with x component 1.9 × 106 m/s and y component...
An electron that has a velocity with x component 1.9 × 106 m/s and y component 3.4 × 106 m/s moves through a uniform magnetic field with x component 0.033 T and y component -0.15 T. (a) Find the magnitude of the magnetic force on the electron. (b) Repeat your calculation for a proton having the same velocity.
An electron that has a velocity with x component 2.0 × 106 m/s and y component...
An electron that has a velocity with x component 2.0 × 106 m/s and y component 3.9 × 106 m/s moves through a uniform magnetic field with x component 0.035 T and y component -0.21 T. (a) Find the magnitude of the magnetic force on the electron. (b) Repeat your calculation for a proton having the same velocity.
An electron is located on the x ‑axis at x 0 = − 2.51 × 10...
An electron is located on the x ‑axis at x 0 = − 2.51 × 10 − 6 m . Find the magnitude and direction of the electric field at x = 4.55 × 10 − 6 m on the x ‑axis due to this electron. N / C direction: negative x ‑direction positive x ‑direction neither of these