[Numbers change] A proton is flying through space with an initial velocity v, = 1.9 x 106 m/s, as shown below. It interacts with a fixed negative charge q = - 7 nC along the path shown. What is its speed in m/s when it reaches the point P, given that x = 1.3 cm and y = 5.6 cm? Give your answer to 3 significant digits. (note the drawing may not be to scale) y Vo
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- 1 and 2Question 14 of 35 A particle that carries a net charge of-41.8 uC is held in a constant electric field that is uniform over the entire region. The electric field vector is oriented 25.2° clockwise from the vertical axis, as shown in the figure. If the magnitude of the electric field is 4.32 N/C, how much work is done by the electric field as the particle is made to E move a distance of d = 0.556 m straight up? d. 25.2° work: J What is the potential difference AV between the particle's initial and final positions? AV =Pls help
- Part A Two stationary positive point charges, charge 1 of magnitude 3.85 nC and charge 2 of magnitude 1.70 nC are separated by a distance of 39.0 cm An electron is released from rest at the point midway between the two charges, and it moves along the line connecting the two charges. What is the speed vfinal of the electron when it is 10.0 cm from charge 1? Express your answer in meters per second. > View Available Hint(s) ΑΣφ Ufinal m/s[Numbers change] A proton is flying through space with an initial velocity v, = 1.9 x 106 m/s, as shown below. It interacts with a fixed negative charge q = - 7 nC along the path shown. What is its %3D speed in m/s when it reaches the point P, given that x = 1.3 cm and y = 5.6 cm? Give your answer to 3 significant digits. (note the drawing may not be to scale) y Vo 1 XYou Answered Correct Answer A line of charge is placed along the negative x axis from x=-0.4m to x=0. The charge is uniformly distributed with linear charge density 3.06pC/m. A proton is released from rest at a point on the positive x axis 2.53m. When the proton has a speed of 472.1m/s, how far will it have moved (in m}? 1.0975 margin of error +/-1%