EBK PHYSICS FOR SCIENTISTS AND ENGINEER
EBK PHYSICS FOR SCIENTISTS AND ENGINEER
1st Edition
ISBN: 9780100546714
Author: Katz
Publisher: YUZU
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Chapter 24, Problem 16PQ

Figure P24.16 shows three charged particles arranged in the xy plane at the coordinates shown, with qA = qB = −3.30 nC and qC = 4.70 nC. What is the electric field due to these particles at the origin?

Chapter 24, Problem 16PQ, Figure P24.16 shows three charged particles arranged in the xy plane at the coordinates shown, with

FIGURE P24.16

Expert Solution & Answer
Check Mark
To determine

The electric field due to the particles at the origin.

Answer to Problem 16PQ

The electric field at the origin is E=(9331N/C)i^+(3719N/C)j^.

Explanation of Solution

Write the formula for the x component of the electric field due to charge qA at the origin.

  EAx=kqArA2cosθ

Here, EAx is the x component of the electric field due to charge qA, k is the coulomb’s constant, θ is the angle made by EA with x-axis, and rA is the distance of charge qA from origin.

Re-write the above equation by substituting expression for cosθ.

    EAx=kqAxArA3

Here, xA is the x component of the distance of qA from origin.

Similarly write the formula for the x component of the electric field due to qB.

    EBx=kqBxBrB3

Here, EBx is the x component of the electric field due to qB, rB is the distance of qB from origin, and xB is the x-component of the distance of qB from origin.

Write the formula for the x component of the electric field due to qC.

    ECx=kqCxCrC3

Here, ECx is the x component of the electric field due to qC, rC is the distance of qC from origin, and xC is the x-component of the distance of qC from origin.

Write the x component of the net electric field at origin.

    Ex=kqAxArA3+kqBxBrB3+kqCxCrC3                                                                          (I)

Similarly write the y component of the electric field at origin.

    Ey=kqAyArA3+kqByBrB3+kqCyCrC3                                                                         (II)

Here, Ey is the y component of the net electric field at origin, yA is the y component of distance of qA, yB is the y component of distance of qB, and yC is the y component of distance of qC.

Substitute 8.99×109Nm2/C2 for k, 3.30nC for qA, 3.30nC for qB, 4.70nC for qC, 7.60cm for xA, 7.60cm for xC, 0 for xB, (7.60cm)2+(3.50cm)2 for rA, (7.60cm)2+(3.50cm)2 for rC, 10cm for rB in equation (I).

Ex=(8.99×109Nm2/C2)(|(3.30nC)(7.60cm)((7.60cm)2+(3.50cm)2)3|+(3.30nC)(0)(10cm)3|(4.70nC)(7.60cm)((7.60cm)2+(3.50cm)2)3|)=(8.99×109Nm2/C2)(|(3.30×109C)(7.60×102m)((7.60×102m)2+(3.50×102m)2)3|+(3.30×109C)(0)(10×102m)3|(4.70×109C)(7.60×102m)((7.60×102m)2+(3.50×102m)2)3|)=3849N/C+0-5482N/C=9331N/C

Substitute 8.99×109Nm2/C2 for k, 3.30nC for qA, 3.30nC for qB, 4.70nC for qC, 3.50cm for yA, 3.50cm for yC, 10.0cm for yB, (7.60cm)2+(3.50cm)2 for rA, (7.60cm)2+(3.50cm)2 for rC, 10cm for rB in equation (II).

Ey=(8.99×109Nm2/C2)((3.30nC)(3.50cm)((7.60cm)2+(3.50cm)2)3|(3.30nC)(10.0cm)(10cm)3||(4.70nC)(3.50cm)((7.60cm)2+(3.50cm)2)3|)=(8.99×109Nm2/C2)((3.30×109C)(3.50×102m)((7.60×102m)2+(3.50×102m)2)3|(3.30×109C)(10.0×102m)(10×102m)3||(4.70×109C)(3.50×102m)((7.60×102m)2+(3.50×102m)2)3|)=1772N/C-2967N/C-2524N/C=-3719N/C

Conclusion:

The electric field at the origin is E=(9331N/C)i^+(3719N/C)j^.

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Chapter 24 Solutions

EBK PHYSICS FOR SCIENTISTS AND ENGINEER

Ch. 24 - A sphere with a charge of 3.50 nC and a radius of...Ch. 24 - Is it possible for a conducting sphere of radius...Ch. 24 - Prob. 7PQCh. 24 - For each sketch of electric field lines in Figure...Ch. 24 - Prob. 9PQCh. 24 - Two large neutral metal plates, fitted tightly...Ch. 24 - Given the two charged particles shown in Figure...Ch. 24 - Prob. 12PQCh. 24 - Prob. 13PQCh. 24 - A particle with charge q on the negative x axis...Ch. 24 - Prob. 15PQCh. 24 - Figure P24.16 shows three charged particles...Ch. 24 - Figure P24.17 shows a dipole. If the positive...Ch. 24 - Find an expression for the electric field at point...Ch. 24 - Figure P24.17 shows a dipole (not drawn to scale)....Ch. 24 - Figure P24.20 shows three charged spheres arranged...Ch. 24 - Often we have distributions of charge for which...Ch. 24 - Prob. 22PQCh. 24 - A positively charged rod with linear charge...Ch. 24 - A positively charged rod of length L = 0.250 m...Ch. 24 - Prob. 25PQCh. 24 - Prob. 26PQCh. 24 - A Find an expression for the position y (along the...Ch. 24 - The electric field at a point on the perpendicular...Ch. 24 - Prob. 29PQCh. 24 - Find an expression for the magnitude of the...Ch. 24 - What is the electric field at point A in Figure...Ch. 24 - A charged rod is curved so that it is part of a...Ch. 24 - If the curved rod in Figure P24.32 has a uniformly...Ch. 24 - aA plastic rod of length = 24.0 cm is uniformly...Ch. 24 - A positively charged disk of radius R = 0.0366 m...Ch. 24 - A positively charged disk of radius R and total...Ch. 24 - A uniformly charged conducting rod of length =...Ch. 24 - Prob. 38PQCh. 24 - Prob. 39PQCh. 24 - Prob. 40PQCh. 24 - Prob. 41PQCh. 24 - Prob. 42PQCh. 24 - What are the magnitude and direction of a uniform...Ch. 24 - An electron is in a uniform upward-pointing...Ch. 24 - Prob. 45PQCh. 24 - Prob. 46PQCh. 24 - A very large disk lies horizontally and has...Ch. 24 - An electron is released from rest in a uniform...Ch. 24 - In Figure P24.49, a charged particle of mass m =...Ch. 24 - Three charged spheres are suspended by...Ch. 24 - Figure P24.51 shows four small charged spheres...Ch. 24 - Prob. 52PQCh. 24 - A uniform electric field given by...Ch. 24 - A uniformly charged ring of radius R = 25.0 cm...Ch. 24 - Prob. 55PQCh. 24 - Prob. 56PQCh. 24 - A potassium chloride molecule (KCl) has a dipole...Ch. 24 - Prob. 58PQCh. 24 - Prob. 59PQCh. 24 - Prob. 60PQCh. 24 - A total charge Q is distributed uniformly on a...Ch. 24 - A simple pendulum has a small sphere at its end...Ch. 24 - A thin, semicircular wire of radius R is uniformly...Ch. 24 - Prob. 64PQCh. 24 - Prob. 65PQCh. 24 - Prob. 66PQCh. 24 - Prob. 67PQCh. 24 - Prob. 68PQCh. 24 - A thin wire with linear charge density =0y0(14+1y)...Ch. 24 - Prob. 70PQCh. 24 - Two positively charged spheres are shown in Figure...Ch. 24 - Prob. 72PQCh. 24 - Prob. 73PQCh. 24 - Prob. 74PQCh. 24 - A conducting rod carrying a total charge of +9.00...Ch. 24 - Prob. 76PQCh. 24 - A When we find the electric field due to a...Ch. 24 - Prob. 78PQCh. 24 - Prob. 79PQCh. 24 - Prob. 80PQCh. 24 - Prob. 81PQCh. 24 - Prob. 82PQ
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