A positive charge of mass, 6.68 x 10-27 kg, passes through a velocity selector in a horizontal path as shown in the diagram below. The radius of the semicircular path of the positive charge, after it emerges through the slit on the right end of the velocity selector, is 6.96 cm. If the electric and magnetic fields have magnitudes of E = 500 N/C and B₁ = B₂ = 0.0100 T, what is the value of the positive charge? Positive Charge O a-4.80 x 10-19 C O b. 6.40 x 10-19 C O c. 3.20 x 10-19 C O d. 1.60 x 10-19 C O e. 1.20 x 10-19 C it E +Q Q>0 ∞∞ B₂
A positive charge of mass, 6.68 x 10-27 kg, passes through a velocity selector in a horizontal path as shown in the diagram below. The radius of the semicircular path of the positive charge, after it emerges through the slit on the right end of the velocity selector, is 6.96 cm. If the electric and magnetic fields have magnitudes of E = 500 N/C and B₁ = B₂ = 0.0100 T, what is the value of the positive charge? Positive Charge O a-4.80 x 10-19 C O b. 6.40 x 10-19 C O c. 3.20 x 10-19 C O d. 1.60 x 10-19 C O e. 1.20 x 10-19 C it E +Q Q>0 ∞∞ B₂
Chapter16: Electromagnetic Waves
Section: Chapter Questions
Problem 37P: The potential difference V(t) between parallel plates shown above is instantaneously increasing at a...
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A positive charge of mass, 6.68 x 10-27 kg, passes through a velocity selector in a horizontal path as shown in the diagram below. The radius of the semicircular path of the positive charge, after it emerges through the slit on the right end of the velocity selector, is 6.96 cm. If the electric and magnetic fields have magnitudes of E = 500 N/C and B1 = B2 = 0.0100 T, what is the value of the positive charge?
a. |
4.80 x 10-19 C |
|
b. |
6.40 x 10-19 C |
|
c. |
3.20 x 10-19 C |
|
d. |
1.60 x 10-19 C |
|
e. |
1.20 x 10-19 C |
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