College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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- Charge q1 = -10 nC is located at the point (x = 0 cm, y = 3 cm), and a second charge, q2 = 10 nC is at the point (x = 4 cm, y = 0 cm). A third charge, q3 = +10 nC is located at the origin (x = 0 cm, y = 0 cm). 3.1. CALCULATE the NET Electric FIELD at Point, P1. (both magnitude and direction) Hint: Present your answer in the following steps (i) Pictorial representation of the charges. Identify the point of interest and circle it (ii) Physical representation. Draw a labeled vector-diagram at the Point of interest. (Write down all the other relevant angles). (iii) Mathematical representation. Calculate the magnitudes of Electric Field and Use the unit vector with a diagram to determine the direction of the ne Electric Field. (iv) Calculate the NET Electric FIELD at Point P (both magnitude and direction). 3.2. How much work was done to assemble the three charges? (Hint: Same…arrow_forwardRefer to the charge pattern shown above with all charges and Point A at the corners of a square with side of 3 cm. Use charges of Q1 = 15.5 μC; Q2 = -5.16 μC; Q3 = -4.69 μC. SKETCH the Electric Field vectors at Point A due to EACH of the charges shown. What is the direction (vector angle) of the resultant electric field at Point A, in degrees?arrow_forwardCalculate the magnitude of the electric field at the center of a square 42.5 cm on a side if one corner is occupied by a -38.3 μC charge and the other three are occupied by -27.3 μC charges. Express your answer to three significant figures and include the appropriate units. E = HÅ Value Units ?arrow_forward
- Sir, please solve this problem asap. thank youarrow_forwardPart a) A +6 nC charge is located 3.6 meters to the right of a +5 nC charge. Determine the magnitude of the electric field at the midpoint of the two charges. Express your answer as a positive number in N/C. Part b) A 10 nC charge generates an electric field within an isolated chamber. At a point a distance d meters away from the charge, the electric field is measured to be 4 N/C. Determine d in meters. Use k=9 x109 for the electric constant.arrow_forwardThree charges are at the corners of a square. q1 is located at the origin, q2 is located at (1, 0),and q3 is located at (1,1) (the position coordinates are in millimeters). The charges are all equalin magnitude; 1.5x10-6 C. Calculate the electric field at the point (0,1).arrow_forward
- In a rectangular coordinate system a positive point charge q = 6.00 x 10-9 C is placed at the point x = +0.150m, y = 0, and an identical point charge is placed at x = -0.150m, y = 0. Find the x- and y-components, the magnitude, and the direction of the electric field at x = 0.300 m, y = 0. (with precise solution please) A. Ex = 129N/C and Ey = -510N/C with direction of 284 degrees counterclockwise from +x axis B. Ex = 2663.1 N/C and Ey = 0 to the +x direction C. Ex = 0 and Ey = 0 D. none of the abovearrow_forwardConsider the symmetrically arranged charges in the figure, in which ?a=?b=−2.45 μC and ?c=?d=+2.45 μC . Determine the direction of the electric field at the location of charge ? . right up and left down and left up and right up down left down and right Calculate the magnitude of the electric field ? at the location of ? given that the square is 6.35 cm on a side.arrow_forwardSuppose three charges: q = 4.00 nC, q, =-4.00 nC, q3 =2.40 nC are enclosed by five surfaces as shown below.Give the electric flux through each surface. Input all numerical values in three significant figures. Do not forget to include the sign if the value is negative.arrow_forward
- A charge of 0.600 nC is placed at the center of a cube that measures 4.20 m along each edge. Calculate the electric flux (in N m2/C) through one face of the cube. Note: no other charges are present in this region of space. Round your answer to 2 decimal places.arrow_forwardWhat is the linear charge density of a thin wire bent into a circle (or ring) of radius 6.48 cm if the total charge on the wire is 3.86 µC? Give your answer in μC/m.arrow_forwardTwo equal charges Q are positioned at points (x=L,y=0) and (x=−L,y=0). Part A) Determine the electric field as a function of y for points along the y axis.Express your answer in terms of the variables and appropriate constants. Part B) Find where the field is a maximum. Express your answer in terms of the variables Q, L, and appropriate constants. If there is more than one answer, separate them by a comma.arrow_forward
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