College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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- 28. Consider the four particles shown, with q1 = -40.0 µC, q2 = -20.0 µC, q3 = 15.0 µC, and q4 = -25 µC. The square has sides of length a = 25.0 cm. %3! y B a A a 93 a) What is the change in the electric potential energy of the system of the four charges in the configuration shown in the figure if they were originally infinitely far away? b) Charges q3 and q4 are now moved to points A and B, respectively. What is the change in potential energy of the system after these charges are moved? c) What are the magnitude and direction of the electric field at the location of charge q4 due to the other three charges? d) What is the initial acceleration of the charge q4 due to the electric force exterted by the other three charges on q4 if m4 = 40.0 g? e) With what speed is charge q4 (with m4 = 40.0 g) moving when it is infinitely far away from the other charges? %3Darrow_forwardI+= 3.04 A 6031 15/60+ 10/60+ 1/60 1/3½60 7) The electric potential at points in the xy V= 2x²-3y² plane is X The electric field at the point (3m, 2m) 15 a)-6² +63 c) -12² + 123 Ex = -2v 2x Ey =-2v чу b) 122-125 4) 62-63 v=2x²-3y² z dv=4x-64 z Ex = − 2 (23) ²-3 (3) 18 = 3 2×(3) V=2x²-3y² 3.92 3í + 4.5g Ey = -2(2x=3y²) 18 = 4.5 2y 4 е) поне above of thearrow_forward3 cm / - 2 nC O -6.2E-6 J O-1.1E-5 J -8.2E-5 J What is the electric potential energy of the charge configuration? O -7.8E-6 J 4nC + O -4.8E-6 J 3 cm 3 cm -4 nCarrow_forward
- A uniform electric field with a magnitude of 6960 N/C points in the positive z direction Part A Find the change in electric potential energy when a +16.5-uC charge is moved 5 25 cm in the positive z direction και ? 190 AEC AU. -6.02.10 J Submit Previous Answers Request Answer Part B Find the change in electric potential energy when a +16.5-uC charge is moved 5.25 cm in the negative z direction Ρ ΑΣΦ και ? AU - J Submit Begunst Answer - Part Find the change in electric potential energy when a +16.5-uC charge is moved 5 25 cm in the positivo y direction Express your answer using one significant figure.arrow_forwardI need help on thatarrow_forward5. Four point-like charges are placed as shown in the figure, a = 32.0 cm and b = 48.0 cm. Find the electric potential energy of the entire system of charges. Let q = +3.10 uC, q = -2.90 uC, q = +3.60 uC, and q. = -8.70 uC. 940 b 15/12/201arrow_forward
- Attached question and diagram.arrow_forward2) Three charges are arranged in the pattern shown. They have equal magnitudes of 1nC but have the signs shown. Three locations, labeled X, Y, and Z, are highlighted. ΟΥ 3 m ox 1 + -4.5E-9 J -3.4E-9 J 0 2 OZ 4 m 4 m i. The electric potential energy stored by this arrangement of charges (using the standard reference point) is A. B. C. D. 1.1E-18 J E. 5.6E-9 J ii. The electric potential at point Y (using the standard reference point) is A. 0.60 V 3 + B. 1.8 V C. 3.0 V D. 6.6 V E. 9.0 V iii. The electric potential at point X (using the standard reference point) is A. 0.15 V B. 2.2 V C. 3.0 V D. 6.6 V E. 9.0 Varrow_forward2. Three point-like charges are placed at the corners of a rectangle as shown in the figure, a = 28.0 cm and b What is the electric potential energy of the charge 92? 91 = -32.0 μC, 92 = –22.0 μC, 93 = J ssfoss sf60 ssf60 ssf60 ssf60 ssf60 92 soojas de ojas (jss Brojs8 09J800955198 09 +45.0 μC. ssf60 s** ssfóssissf60) 2160 48.0 cm. 0 s60 ssf60 ssf60 ssf60 ssf60 ssf60 s ssf60 ssf60 ssf60 ssf60 f60 ssfarrow_forward
- Regarding the Earth and a cloud layer 650 m above the Earth as the "plates" of a capacitor, calculate the capacitance if the cloud layer has an area of 1.53 km2. If an electric field of 2.0 × 106 N/C makes the air breakdown and conduct electricity (lightning), what is the maximum charge the cloud can hold? εo = 8.85 x 10−12 F/marrow_forwardA charge -78 pC is placed at the origin and a charge 32 pC is placed at a distance of 5 cm from the origin on the x-axis. Find the location from the origin where the net electric potential is zero. Distance from the origin =? What is the potential energy of a charge 58 μμC placed at a distance of 0 cm from the origin on the x-axisarrow_forwardA point charge q1= 2.40 uC is helf stationary at the origin. A second point charge q2= -4.30 uC moves from the point ×=0.150m, y=0 to the point ×=0.250, y=0.250. Calculate the change in three electrical potential energy between the charges.arrow_forward
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