Question

Incorrect Question 9 0/1 pts Choose the correct statement concerning electric field lines: At any point, the electric field lines are vectors in the direction of the electric field None of these answers are correct. At any point, the electric field is parallel to the tangent to a curved field line at that point Electric field lines are trajectories of a test charge. Electric field lines point away from negative charge.

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
Incorrect Question 9 0/1 pts Choose the correct statement concerning electric field lines: At any point,...
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. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Which of the following statements about electric field lines are true? (choose all that are true)...

    Which of the following statements about electric field lines are true? (choose all that are true) a) They are only defined for positive charges. b) They are always tangent to electric field vectors. c) They are always perpendicular to charged surfaces. d) They are a simple way to visualize the electric field vectors. e) None of the above. If a negative charge is placed in an electric field, what direction will it be accelerated? a) In the direction of the...

  • Electric Field Lines and Potential The figure shows the E-field in the plane of two point...

    Electric Field Lines and Potential The figure shows the E-field in the plane of two point charges. Determine for each of the following statements whether it is correct or incorrect. 2 Incorrect The electric potential (volts) is larger at 'c' than 'e'. Incorrect The net charge Q1+Q2 is negative. Correct The E-field at 'b' points north. Incorrect The E-field at 'c is zero. Correct The E-field at 'b' points directly toward Q2. Incorrect The magnitude of the E-field at 'a'...

  • Question 9 of 17> Select the options that best complete the statement. follow electric field lines,...

    Question 9 of 17> Select the options that best complete the statement. follow electric field lines, because never Positively charged particle trajectories never can but do not have to always electric field lines are de ist charges travel. about us careers privacy poliky erms ofuse contactus hetp ion 9 of 17> Select the options that best complete the statement. Positively charged particle trajectories never follow electric field lines, because electric field lines are defined by the path positive test charges...

  • Electric Field Activity By the end of this activity you will be able to do the...

    Electric Field Activity By the end of this activity you will be able to do the following: • Recognize correct and incorrect features in electric field lines • Qualitatively sketch field lines for a charge distribution. • Qualitatively sketch the motion of a charge given the field lines. 1. General Features of electric field lines Electric field lines are a way of repre- senting the electric field. There are three rules for drawing these lines: • At each point Ē...

  • Incorrect Question 8 0/10.5 pts At some point, an electric field is directed at an angle...

    Incorrect Question 8 0/10.5 pts At some point, an electric field is directed at an angle of 220.3 degrees measured counter-clockwise from the +x axis. If a negative charge is placed at that point, what is the angle of the electric force on the charge measured counter-clockwise from the +x axis in degrees?

  • At any point the magnetic field lines are in the direction of: the magnetic force on...

    At any point the magnetic field lines are in the direction of: the magnetic force on a moving positive charge. the magnetic force on a moving negative charge. the velocity of a moving negative charge. None of the above

  • 2 WEEK 1. ELECTRIC CHARGE AND DRAWING FIELD LINES 1.3 Definition of Electric Field 1. The...

    2 WEEK 1. ELECTRIC CHARGE AND DRAWING FIELD LINES 1.3 Definition of Electric Field 1. The gravitational field was defined in terms of the force on a test mass. For the electric field, should we specify that the test charge should be positive or negative? Does it matter which we choose? What would be the result if we made the other choice. 2. What does the direction of the field lines indicate? 3. What aspect of the drawing indicates the...

  • Choose the correct statement below about the uniform electric field shown below Thoose the correct statement...

    Choose the correct statement below about the uniform electric field shown below Thoose the correct statement below about the norm electriched shown below. The neticenergy of negative charge moved from point At po will decrease A positive charge moved from point A to point will have a negative change in potential energy The electrostatic force on a charge is weaker at point that point A The electrostatic force on a charge is greater at point than at point The electrostatic...

  • Electric Field lines of Force, Direction For each of the following statements, determine whether it is...

    Electric Field lines of Force, Direction For each of the following statements, determine whether it is correct or incorrect. Where the E-field lines are dense the E-field must be weak. A: Correct B: Incorrect E-field lines make circles around + charges. A: Correct B: Incorrect E-field lines do not begin or end in a charge-free region (except at infinity). A: Correct B: Incorrect A point charge q, released from rest will initially move along an E-field line. A: Correct B:...

  • Electric Field Lines and Potential The figure shows the E-field in the plane of two point...

    Electric Field Lines and Potential The figure shows the E-field in the plane of two point charges. Determine for each of the following statements whether it is correct or incorrect. 2 <a The E-field at 'a' points directly toward Q2. rect The net charge Q1+Q2 is negative The E-field at 'd' points south. The electric potential (volts) is larger at 'e' than 'd'. The E-field at 'c is zero. The magnitude of the E-field at 'e' is larger than at...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT