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Show [E]= v/m & [E] N/c is the same
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- Show (see also Problem 1–11) that1) A proton (p) and electron (e-) are released when they are 4 Å (4 Angstroms). Find the initial accelerations of each particle, from one of the selections below. a) a(p) = 8.63 x 1017 m/s2, a(e-) = 1.58 x 1021 m/s2; b) a(p) = 3.4 x 1018 m/s2, a(e-) = 6.3 x 1021 m/s2; c) a(p) = 4.315 x 1016 m/s2, a(e-) = 7.9 x 1020 m/s2; d) a(p) = 3.45 x 1018 m/s2, a(e-) = 6.32 x 1021 m/s2. 1) Two small spheres are placed a distance 20 cm apart and have equal charge. How many excess electrons must be placed on each sphere if the magnitude of the Coulomb repulsive force is F = 3.33 x 10-21 N? a) 2 x 103; b) 350; c) 760; d) 1.2 x 103. 3)Three individual point charges are placed at the following positions in the x-y plane: Q3 = 5.0 nC at (x, y) = (0,0); Q2 = -3.0 nC at (x, y) = (4 cm, 0); and Q1 = ? nC at (x, y) = (2 cm,0); What is the magnitude, and sign, of charge Q1 such that the net force exerted on charge Q3, exerted by charges Q1 and Q2, is zero? a) Q1 = + 0.5 nC; b) Q1 = - 0.25 nC; c) Q1 = +…Also find an example of an important industrial device in which electricity is created by varying the angle OB,A between the conductor-enclosed area and the B vector. What is this device called?
- need help solving for C A constant electric field accelerates a proton from rest through a distance of 1.55 m to a speed of 1.97 ✕ 105 m/s. (The mass and charge of a proton are mp = 1.67 ✕ 10−27 kg and qp = e = 1.60 ✕ 10−19 C.) HINT (a) Find the change in the proton's kinetic energy (in J). 3.24E-17 J (b) Find the change in the system's electric potential energy (in J). The work done by the electric force and the change in electric potential energy are related by WFe = −ΔPE. This relationship holds for any conservative force: the work done by any conservative force equals the negative of the change in the associated potential energy. -3.24E-17J (c) Calculate the magnitude of the electric field (in N/C). N/CDon't use chat gpt It Chatgpt means downvoteIf a proton and an electron are released when they are 2.50×10−10 m apart (typical atomic distances), find the initial acceleration of each of them. Express your answer in meters per second squared.
- How do you make the assumption that the answer is C, when the math states something else? From Above Therefore, Electric field, E = kq/d2 = (8.98 × 109)(5×10-9)/0.01×0.01 = 4.49 × 105 N/C From Given option E = 3.6 × 105 N/CSuppose we've managed to set up an electric field that can be described by the function E→=w1y2i+w2z2j+w3x2k, where w1=8 N/(C⋅ m2), w2=9 N/(C⋅ m2), and w3=9 N/(C⋅ m2). Let's look at a rectangular box in the Cartesian coordinate axes, shown below, with dimensions a=2.5 m along the x-axis, b=6 m along the y-axis, c=4 m along the z-axis. What is the magnitude of the electric flux passing through the shaded area?Repeat the previous problem, given that the circular area is (a) in the yz-plane and (b) 45( above the xy-plane.