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Motion of a Charged Particle: in the Figure, a Proton

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Motion of a charged particle: In the figure, a proton is projected horizontally midway between two parallel plates that are separated by Motion of a charged particle: In the figure, a proton is projected horizontally midway between two parallel plates that are separated by   The electrical field due to the plates has magnitude   between the plates away from the edges. If the plates are   long, find the minimum speed of the proton if it just misses the lower plate as it emerges from the field. (e<sub> </sub>= 1.60 × 10<sup>-19 </sup>C, ε<sub>0</sub> = 8.85 × 10<sup>-12</sup> C<sup>2</sup>/N ∙ m<sup>2</sup>, m<sub>el</sub> = 9.11 × 10<sup>-31</sup> kg)  The electrical field due to the plates has magnitude Motion of a charged particle: In the figure, a proton is projected horizontally midway between two parallel plates that are separated by   The electrical field due to the plates has magnitude   between the plates away from the edges. If the plates are   long, find the minimum speed of the proton if it just misses the lower plate as it emerges from the field. (e<sub> </sub>= 1.60 × 10<sup>-19 </sup>C, ε<sub>0</sub> = 8.85 × 10<sup>-12</sup> C<sup>2</sup>/N ∙ m<sup>2</sup>, m<sub>el</sub> = 9.11 × 10<sup>-31</sup> kg)  between the plates away from the edges. If the plates are Motion of a charged particle: In the figure, a proton is projected horizontally midway between two parallel plates that are separated by   The electrical field due to the plates has magnitude   between the plates away from the edges. If the plates are   long, find the minimum speed of the proton if it just misses the lower plate as it emerges from the field. (e<sub> </sub>= 1.60 × 10<sup>-19 </sup>C, ε<sub>0</sub> = 8.85 × 10<sup>-12</sup> C<sup>2</sup>/N ∙ m<sup>2</sup>, m<sub>el</sub> = 9.11 × 10<sup>-31</sup> kg)  long, find the minimum speed of the proton if it just misses the lower plate as it emerges from the field. (e = 1.60 × 10-19 C, ε0 = 8.85 × 10-12 C2/N ∙ m2, mel = 9.11 × 10-31 kg) Motion of a charged particle: In the figure, a proton is projected horizontally midway between two parallel plates that are separated by   The electrical field due to the plates has magnitude   between the plates away from the edges. If the plates are   long, find the minimum speed of the proton if it just misses the lower plate as it emerges from the field. (e<sub> </sub>= 1.60 × 10<sup>-19 </sup>C, ε<sub>0</sub> = 8.85 × 10<sup>-12</sup> C<sup>2</sup>/N ∙ m<sup>2</sup>, m<sub>el</sub> = 9.11 × 10<sup>-31</sup> kg)

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