Question

Let q1 = 15 μC and q2 = 5 μC. The two are separated by d...

Let q1 = 15 μC and q2 = 5 μC. The two are separated by d = 20 cm. Find the magnitude and direction of the net electric force on a third charge q3 = -10μC, positioned another 20 cm to the right of q2.

Homework Answers

Answer #1

If your doubt is cleared please give an upvote it means a lot. Its a humble request to you. If you have any doubts feel free to ask in comment section.

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
A negative charge Q1 = -50.0 μC is located at a point X1 = -3.00 m,...
A negative charge Q1 = -50.0 μC is located at a point X1 = -3.00 m, a negative charge Q2 = -100.0 μC is located at a point X2 = 0.00 m and a positive charge Q3 = 70.0 μC is located at a point X3 = 8.00 m.a. Draw free body diagrams for the electric force acting on Q1, Q2 and Q3. b. Find the magnitude of the force between Q1 and Q2. c. Find the magnitude of the...
Two charges, q1 = 5 μC and q2 = 7 μC, are separated by 25 cm....
Two charges, q1 = 5 μC and q2 = 7 μC, are separated by 25 cm. Where should a third charge be placed on the line between them such that the resultant force on it will be zero? Does it matter if the third charge is positive or negative?
Two charges Q1 = -3 μC and Q2 = +3 μC are located on the y-axis...
Two charges Q1 = -3 μC and Q2 = +3 μC are located on the y-axis at y1 = -5 cm and y2 = +5 cm respectively. A third charge Q3 is added on the y-axis at y3 = -10 cm so that the electric field at the origin is equal to zero. What is the charge Q3?
How Can I solve this problem? Three charges, q1= -10 μC, q2= 4 μC and q3=...
How Can I solve this problem? Three charges, q1= -10 μC, q2= 4 μC and q3= 10 μC are aligned vertically, 6 cm apart. Point P is located 8 cm directly to the right of q2. a) Find the electric field contribution from q1 on point P. b) Find the electric field contribution from q2 on point P. c) Find the electric field contribution from q3 at point P. d) Find the magnitude of the net electric field at point...
Pictured on the right are three point charges Q1 = 21.4 μC, Q2 = -33.6 μC,...
Pictured on the right are three point charges Q1 = 21.4 μC, Q2 = -33.6 μC, and Q3 = 87.3 μC arranged according to the figure on the right. A fourth point charge is located at point A with a charge of QA = 15.5 μC. Calculate the magnitude of the net force on the charge at point A. with a 20.1 distance
Charges of –1.0 μC and +1.0 μC are separated by 1.0 m with the negative charge...
Charges of –1.0 μC and +1.0 μC are separated by 1.0 m with the negative charge to the left of the positive charge. Another charge of +2.0 μC can be placed at various positions near them. Find the magnitude and direction of the force acting on the third charge for the following situations.(a) Let the third charge be 1.0 m to the right of the positive charge. (b) Let the third charge be 1.0 m to the left of the...
1. Given q1 = 1.05 μC, q2 = 5.51 μC and q3 = -2.15 μC. r1...
1. Given q1 = 1.05 μC, q2 = 5.51 μC and q3 = -2.15 μC. r1 = 20.1 cm and r2 = 15.3 cm as shown below: a. Calculate the Coulomb force on q1. Positive force is defined to the right. b. Calculate the Coulomb force on q2.
Three charges, q1 = +2.5 μC, q2 = -3.6 μC, and q3 = -5.0 μC, are...
Three charges, q1 = +2.5 μC, q2 = -3.6 μC, and q3 = -5.0 μC, are located at the corners of an equilateral triangle with sides of length 0.5 m centered at the origin. The corner locations are at (-0.250 m, -0.145 m), (+0.250 m, -0.145 m), and (0 m,+0.290 m) respectively. Part 1: What is the magnitude of the net ELECTRIC FORCE on the +2.5 μC charge? Part 2: Which of the following is a correct expression for the...
Two charges, Q1 and Q2, are separated by 6·cm. The repulsive force between them is 25·N....
Two charges, Q1 and Q2, are separated by 6·cm. The repulsive force between them is 25·N. In each case below, find the force between them if the original situation is changed as described. (a) The magnitude of charge Q1 is reduced to Q1/5.  N (b) The distance between the charges is reduced to 2·cm.  N (c) The magnitude of charge Q2 is increased to 5Q2 and the distance is increased to 30·cm.  N
Two equal positive charges q1 = q2 = 2.0µC are located at x=0, y= 0.30m and...
Two equal positive charges q1 = q2 = 2.0µC are located at x=0, y= 0.30m and x= 0, y= -0.30m. What are the magnitude and direction of the net electric force that these charges exert on a third point charge q3 = 4.0µC at x=0.40m, y=0.