3. A proton is fired parallei in between a set of parallel plates at a height that is exactly midway between the set of plates with an initial speed of 2.50x106 m/s, as shown in the diagram below. The electric potential difference between the plates is 175 V. If the proton travelled a total distance of 15.0cm parallel to the plates, what is the separation distance between the plates? [0.777 cm) d = ?
3. A proton is fired parallei in between a set of parallel plates at a height that is exactly midway between the set of plates with an initial speed of 2.50x106 m/s, as shown in the diagram below. The electric potential difference between the plates is 175 V. If the proton travelled a total distance of 15.0cm parallel to the plates, what is the separation distance between the plates? [0.777 cm) d = ?
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
Transcribed Image Text:3. A proton is fired parallei in between a set of parallel plates at a height that is
exactly midway between the set of plates with an initial speed of 2.50x106 m/s,
as shown in the diagram below. The electric potential difference between the
plates is 175 V. If the proton travelled a total distance of 15.0cm parallel to the
plates, what is the separation distance between the plates? [0.777 cm)
d = ?
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