(c) Calculate the magnitude of the force on the charge q, given that the square is 10.0 cm on a side and q =2 μC. 0 F₁ N Case II. 9a9b = +8 μC and qc = qd = -8 μC. net (e) Due to symmetry the direction of the net force is D. In the -y direction ✔ (d) In your notebook, draw the forces on q due to qar qb, qc, and qd. Or use the result of of Homework: Charges on a Square Free Body Diagram. F net q Hint: For each force draw the x and y components. Some will add and some will cancel. (f) Calculate the magnitude of the force on the charge q, given that the square is 10.0 cm on a side and q=2 μC. = 83.91 ! No, that's only partially correct. Oqd N X

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Chapter15: Electric Forces And Electric Fields
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Problem 16P: Panicle A of charge 3.00 104 C is at the origin, particle B of charge 6.00 104 C is at (4.00 m,...
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(c) Calculate the magnitude of the force on the charge q, given that the square is 10.0 cm on a
side and q=2 μC.
Fr
net
= 0
Case II. 9a = b = +8 μC and qc = qd = -8 μC.
N
(e) Due to symmetry the direction of the net force is
D. In the -y direction
Fnet
(d) In your notebook, draw the forces on q due to qa, qb, qc, and qd. Or use the result of of
Homework: Charges on a Square Free Body Diagram.
= 83.91
qc
Hint: For each force draw the x and y components. Some will add and some will cancel.
(f) Calculate the magnitude of the force on the charge q, given that the square is 10.0 cm on a
side and q=2 μC.
X N
No, that's only partially correct.
O qd
X
Transcribed Image Text:(c) Calculate the magnitude of the force on the charge q, given that the square is 10.0 cm on a side and q=2 μC. Fr net = 0 Case II. 9a = b = +8 μC and qc = qd = -8 μC. N (e) Due to symmetry the direction of the net force is D. In the -y direction Fnet (d) In your notebook, draw the forces on q due to qa, qb, qc, and qd. Or use the result of of Homework: Charges on a Square Free Body Diagram. = 83.91 qc Hint: For each force draw the x and y components. Some will add and some will cancel. (f) Calculate the magnitude of the force on the charge q, given that the square is 10.0 cm on a side and q=2 μC. X N No, that's only partially correct. O qd X
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