Ex. 4: How much work does the electric field do in moving a proton from a point at a potential +125 V to a point at -45 V Express your answer both in joules and electron volts.
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- The electric field of ?(?) = 1/r + 3(v/m), where r is the distance from the origin, is applied in a region of space. Find the electric potential between the two points ?1=0,5 m and r2 =2 m . Hint: you will have to use integration here, with r1 and r2 as your bounds of integrationAn electric force does W=78.0 J of work on a q=-10 C charge as it moves from A to B in an electric field. The potential at A is V=60 V. Calculate the potential at B.OD OC Part 2: Does the electric potential energy of the electron increase or decrease? A) positive, increase B) positive, decrease C) negative, increase D) negative, decrease O A #2. Electron moves from i tof in a uniform electric field as shown. Part 1: Does the electric field do positive or negative work on the electron? OB f B Ē
- Q8. Assume the electric potential at the negatively charged plate is zero. Clearly show all work! a) A charged particle A with charge + 0.020 C and mass 3.0x10-8 kg is at rest as shown next to the positive plate which has electric potential of 120 V. What is its kinetic energy when it reaches the negatively charged plate? What is its speed? b) Another charged particle B with charge + 0.060 C and mass 3.0x10-8 kg is at rest as shown. What is its kinetic energy when it reaches the negatively charged plate? What is its speed? c) A third charged particle C (not shown) with charge 0.070 C and mass 3.0x10-8 kg is at rest in the middle of the two parallel plates. How much work is needed to move it to the positively charged plate? Is the work positive or negative? 0 0 0 0 0 0 0 0As stated in the picA uniform electric field of magnitude 255 V/m is directed in the negative y direction as shown in the figure below. The coordinates of point O are (-0.900, -0.400) m, and those of point ® are (0.600, 0.850) m. Calculate the electric potential difference V. - V, using the dashed-line path. 510 Va - V, is the work required to move a test charge from point A to point B. V