A cylinder located at the origin has a radius of 2m and a height of 4m. Segments 1, 2, and 3 will contribute to the circulation around the object. Determine the contribution from each of these segments in the presence of the following D field. D = 4cospa, +3cospa +4r³az X Z Y
Q: A uniform electric field of magnitude E = 38 N/C points along the x-axis. A circular loop of radius…
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Q: A uniform electric field of magnitude E = 38 N/C points along the x-axis. A circular loop of radius…
A: Given data :- Electric field along x axis Ex = 38 N/C Radius of a circular loop R = 26 cm = 0.26 m…
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Q: A charge q1 of 38 µC is placed at the origin of the xy-coordinate system and a charge q2 of -62 µC…
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- A 10.0 nC charge is located at position (z, y) = (1.0 cm, 2.0 cm). At what (x, y) position is the electric field -225,000 * N/C? Enter the z and y coordinates separated in centimeters by a comma. I, y = Submit Part B I, y = Submit Part C ΑΣΦ At what (x, y) position is the electric field (161,000 2 +80,500ĵ) N/C? Enter the z and y coordinates in centimeters separated by a comma. Request Answer I, y = ΑΣΦ MIC ? Request Answer ? cm At what (x, y) position is the electric field (21,600 2 -28,800ĵ) N/C? Enter the z and y coordinates in centimeters separated by a comma. IVE ΑΣΦ MIC ? cm cmA uniform electric field of magnitude E = 38 N/C points along the x-axis. A circular loop of radius R = 26 cm is centered at the origin with the normal to the loop pointing θ = 45 degrees above the x-axis. Calculate the electric flux in units of N⋅m2/C that passes through the loop.For each contour map in the figure estimate the e electric fields at points 1 and 2. Don't forget that E is a vector quantity. (а) 0 V 10 V 20 V 30 V 40 V 0 m 1 m 2 m 3 m 4 m (b) 0 V 10 V 20 V 30 V 40 V 0 m 1 m 2 m 3 m 4 m
- Consider two thin, conducting, spherical shells as shown in cross-section in the figure below. The inner shell has a radius r₁ = 19.7cm and a charge of 10.4nC. The outer shell has a radius r₂ = 30.4cm and a charge of -27.0nC. с BPart 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.A certain spherical charge cloud has a volume charge density p(r) = Po e-r²/a² p2 [C/m³] where r is the radius in spherical coordinates, and a is a positive real constant. What must the constant po be if the total charge in the cloud is Q? 0≤r<∞0
- Suppose you initially have a bathtub full of water and then remove the drain plug to let it drain. If the vector field to be studied is the flow velocity of the water in the bathtub, how should the divergence be before and after removing the drain plug? O to. before: zero; after: less than zero O b. before: less than zero; after: greater than zero O c. before: zero; after: greater than zeroA semicircle of radius a is in the first and second quadrants, with the center of curvature at the origin. Positive charge +Q is distributed uniformly around the left half of the semicircle, and negative charge –Q is distributed uniformly around the right half of the semicircle. What are the magnitude and direction of the net electric field at the origin produced by this distribution of charge?Find the flux of F=−zi+yj−xk out of a sphere of radius 4 centered at the origin. Hint: Your answer will involve π .
- Two electrons in a vacuum exert force of F = 4.63E-08 N on each other. They are then moved so that they are separated by x = 6.4 times their original distance. a. What is the force, in newtons, that the electrons experience at the new separation distance? b. How far apart, in meters, were the electrons originally?Consider the following figure. (If you need to use co or -o, enter INFINITY or -INFINITY, respectively.) (a) Find the total electric field in N/C at x = 8.00 cm in part (b) of the figure above given that q = 1.00 uC. N/C (b) Find the total electric field in N/C at x = 11.50 cm in part (b) of the figure above. (Include the sign of the value in your answer.) N/C (c) If the charges are allowed to move and eventually be brought to rest by friction, what will the final charge configuration be? (That is, will there be a single charge, double charge, etc., and what will its value(s) be? Use the following as necessary: q.)In the figure, particle 1 of charge q1 = 9.40×10-5 C and particle 2 of charge q2 = 4.70×10-4 C are fixed to an x axis, separated by a distance d = 0.100 m.Calculate their net electric field E(x) as a function of x for the following positive and negative values of x, taking E to be positive when the vector E points to the right and negative when E points to the left.What is E(-0.100)? What is E(-0.010)? What is E(0.070)? What is E(0.140)?