College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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- Calculate the magnitude of the electric field at one corner of a square 1.82 m on a side if the other three corners are occupied by 6.25×10−6 C charges. Express your answer to three significant figures and include the appropriate units.arrow_forwardFind the electric field at the location of qa in the figure given that qb = qc = qd = +2.00 mC, q = -1.00 nC, and the square is 20.0 cm on a side. a) Calculare the electric field at qa due to q and qd (add the fields due to those two charges together). Give a positive value if the field is in the second quadrant, and negative if it is in the fourth quadrant. b) Now calculate the field due to qb and qc. Add the fields together, remembering that they are vectors. GIve a positive value for 2nd quadrant, negative for 4th.arrow_forwardphyarrow_forward
- Give an expression for the electric field strength ?E at a point in terms of the charge ?q and distance ?r from the charge to that point. Use ?k for 14??014πε0 (i.e. ?≡14??0k≡14πε0). Use the following notation (without the quotes): "/" for division, "*" for multiplication, "+" an "-" as usual. For powers used "^2", while for square root use "sqrt". To indicate that square root applies to the whole expression use brackets - for example, for ??‾‾‾‾√AB use sqrt(A*B). For Greek letters such as ?π, ?α etc. use pi, alpha. For example to get 1??2???‾‾‾‾√1πA2BAB use 1/pi*A^2/B*sqrt(AB). Please use the exact variables given in the conditions of the problem: e.g if ?L is given, then do not use ?l.arrow_forward(a) Two protons in a molecule are 4.40 × 10 -10 m apart. Find the electric force exerted by one proton on the other. magnitude What is the equation for the electrical force acting between two charged objects? N direction repulsive (b) State how the magnitude of this force compares with the magnitude of the gravitational force exerted by one proton on the other. Fe %D F. What is the mass of a proton? (c) What must be a particle's charge-to-mass ratio if the magnitude of the gravitational force between two of these particles is equal to the magnitude of electric force between them? С/kgarrow_forwardpractice, not a graded assignmentarrow_forward
- Find the x and y components of the electric field produced by 91 and 92 in the figure shown below at point A and point B. (Take q₁ = 2.16 μC and q2 = -1.09 μC.) y, m 3 2 1 B 914 Point A Ex= Ey= Point B Ex = Ey = I 1 2 3 4 -x, marrow_forwardUsing the values given below, find the electric field at point X due to the two charges q1 and 92. qi -0.077.μ., q,= 8.μ., a = 0.56_m, b = 0.2_m, c = 0.74_m %3D 5. magnitude 86230_N/C 90830_N/C 115400_N/C 238800_N/C 203900_N/C 123000_N/C A. D. В. Е. С. F. |--/ 0.7 lm r1 r2 C 6. direction А. 104.8° D. 141.2° a b 91 q2 % В. 167.6° E. 170.4° C. 152.1° F. 116° |--/arrow_forwardWhat is the electric field midway between charges of 2 micro C and 2 mC separated by 5 cm?arrow_forward
- 03. The distance between two charges q1 = + 2 μC and q2 = + 6 μC is 15.0 cm. Calculate the distance from charge q1 to the points on the line segment joining the two charges where the electric field is zero. Express your answer in cm with 3 - significant figures.arrow_forwardAn electric field of magnitude 5.25 ✕ 105 N/C points due east at a certain location. Find the magnitude and direction of the force on a −4.70 ?C charge at this location.arrow_forward
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