At time t = 0, a point charge with -3.2 C accelerates very briefly in the direction having an angle 1.2 rad with the +x-axis. The magnitude of its acceleration is 5 × 109 m/s². An electric/magnetic field detector is placed at location A, 9 meters from the electron, as shown in the diagram. A. At what time t₁ does the detector at A first detect radiative electric and magnetic fields? 3.10-8 S B. Calculate the radiative component of the \textbf{electric} field detected at location A at time t₁ due to the accelerated electron. Ex = V/m Ey = 0 V/m Ez = 0 V/m C. Calculate the radiative component of the \textbf{magnetic} field detected at location A at time t₁ due to the accelerated electron. 0T Bx By=0T Bz = T

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At time t = 0, a point charge with -3.2 C accelerates very briefly in the direction having an angle 1.2 rad with the +x-axis. The magnitude of its acceleration is 5 × 109 m/s². An electric/magnetic field
detector is placed at location A, 9 meters from the electron, as shown in the diagram.
A. At what time t₁ does the detector at A first detect radiative electric and magnetic fields?
3.10-8
S
B. Calculate the radiative component of the \textbf{electric} field detected at location A at time t₁ due to the accelerated electron.
Ex
=
V/m
Ey = 0 V/m
Ez = 0 V/m
C. Calculate the radiative component of the \textbf{magnetic} field detected at location A at time t₁ due to the accelerated electron.
0T
Bx
By=0T
Bz
=
T
Transcribed Image Text:At time t = 0, a point charge with -3.2 C accelerates very briefly in the direction having an angle 1.2 rad with the +x-axis. The magnitude of its acceleration is 5 × 109 m/s². An electric/magnetic field detector is placed at location A, 9 meters from the electron, as shown in the diagram. A. At what time t₁ does the detector at A first detect radiative electric and magnetic fields? 3.10-8 S B. Calculate the radiative component of the \textbf{electric} field detected at location A at time t₁ due to the accelerated electron. Ex = V/m Ey = 0 V/m Ez = 0 V/m C. Calculate the radiative component of the \textbf{magnetic} field detected at location A at time t₁ due to the accelerated electron. 0T Bx By=0T Bz = T
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