Two particles have the same charge (q1-q2=1.6x101ºC) and different masses undergo circular motion in a constant magnetic field (B 0.40 T) with the same speed of 5x10° m/s. If their circular paths differ in radius by 10.2 cm, what is the difference in the mass of these two particles? m2 m1 O a. 13.06 x10^(-28) kg O b. 17.03 x10^(-28) kg O c. 14.79 x10^(-28) kg O d. 19.18 x10^(-28) kg O e. 10.40 x10^(-28) kg

Physics for Scientists and Engineers: Foundations and Connections
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Two particles have the same charge (q1=q2=1.6x1019C) and different masses undergo
circular motion in a constant magnetic field (B = 0.40 T) with the same speed of
5x10° m/s. If their circular paths differ in radius by 10.2 cm, what is the difference in
the mass of these two particles?
m2
O a. 13.06 x10^(-28) kg
O b. 17.03 x10^(-28) kg
O c. 14.79 x10^(-28) kg
O d. 19.18 x10^(-28) kg
O e. 10.40 x10^(-28) kg
Transcribed Image Text:Two particles have the same charge (q1=q2=1.6x1019C) and different masses undergo circular motion in a constant magnetic field (B = 0.40 T) with the same speed of 5x10° m/s. If their circular paths differ in radius by 10.2 cm, what is the difference in the mass of these two particles? m2 O a. 13.06 x10^(-28) kg O b. 17.03 x10^(-28) kg O c. 14.79 x10^(-28) kg O d. 19.18 x10^(-28) kg O e. 10.40 x10^(-28) kg
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