An electron starts from rest in a vacuum, in a region of strong field. The electron moves through a potential difference of 44V. (a) What is the kinetic energy of the electron in electron volts (eV)? (b) Which of the following statements would be true if the particle were a proton? Choose both if they are both correct. (1) The kinetic energy of the proton would be negative. (2) The proton would move in the opposite direction from the electron.

Short Answer

Expert verified

(a) The final kinetic energy of the electron is 44eV.

(b) The correct options are (1) The kinetic energy of the proton would be negative, and (2) The proton would move in the opposite direction from the electron.

Step by step solution

01

Given information

The potential difference through the electron moves is, V=44V.

The initial kinetic energy of the electron is, Ki=0.

02

Electrical potential energy

When a charged particle moves in an electric field through a potential difference then the energy required to move the particle is described as the ‘electrical potential energy’.

The value of the electrical potential energy relies upon the particle’s charge and the potential difference between two locations.

03

Step 3(a): The kinetic energy of the electron

The formula for the change in the electrical potential energy required to move the electron is given by,

UeI=-eVUeI=-e44VUeI=-44eV

Applying work-energy principle, the change in kinetic energy of the electron is given by,

Ke=-UeIKe=--44eVKe=44eV

The final kinetic energy of the electron is given by,

Ke=Kf-Ki44eV=Kf-0Kf=44eV

Hence, the final kinetic energy of the electron is 44 eV.

04

Step 4(b): The correct statement

If the particle is a proton, then its charge value is positive. So, the value of the change in the electrical potential energy required to move the proton would also be positive.

Then, applying work-energy principle, the change in kinetic energy of the proton would be negative.

The direction of the electric field of a proton is directly opposite to the direction of the electric field of an electron. So, the proton moves in the opposite direction from the electron.

Hence, the correct options are (1) The kinetic energy of the proton would be negative, and (2) The proton would move in the opposite direction from the electron.

Unlock Step-by-Step Solutions & Ace Your Exams!

  • Full Textbook Solutions

    Get detailed explanations and key concepts

  • Unlimited Al creation

    Al flashcards, explanations, exams and more...

  • Ads-free access

    To over 500 millions flashcards

  • Money-back guarantee

    We refund you if you fail your exam.

Over 30 million students worldwide already upgrade their learning with Vaia!

One App. One Place for Learning.

All the tools & learning materials you need for study success - in one app.

Get started for free

Most popular questions from this chapter

A capacitor with a gap of 2 mm has a potential difference from one plate to the other of 30 V. What is the magnitude of the electric field between the plates?

You travel along a path from location A to location B, moving in a direction opposite to the direction of the net electric field in that region. What is true of the potential difference VB-VA?(1)VB-VA>0,(2)VB-VA<0,(3)VB-VA=0.

A thin spherical shell of radius \({R_1}\)made of plastic carries a uniformly distributed negative charge \( - {Q_1}\). A thin spherical shell of radius \({R_2}\)made of glass carries a uniformly distributed positive charge \( + {Q_2}\). The distance between centers is \(L\), as shown in Figure 16.80. (a) Find the potential difference \({V_B} - {V_A}\). Location A is at the center of the glass sphere, and location \(B\) is just outside the glass sphere. (b) Find the potential difference \({V_C} - {V_B}\). Location \(B\) is just outside the glass sphere, and location \(C\) is a distance d to the right of \(B\). (c) Suppose the glass shell is replaced by a solid metal sphere with radius R2 carrying charge \( + {Q_2}\). Would the magnitude of the potential difference \({V_B} - {V_A}\) be greater than, less than, or the same as it was with the glass shell in place? Explain briefly, including an appropriate physics diagram.

How much work is required to move a proton and an electron at rest a distance 3×10-8mapart to be at rest a distance7×10-8m apart?

What is the kinetic energy of a proton that is traveling at a speed of 3725m/s ?

See all solutions

Recommended explanations on Physics Textbooks

View all explanations

What do you think about this solution?

We value your feedback to improve our textbook solutions.

Study anywhere. Anytime. Across all devices.

Sign-up for free