Constants An annulus with an inner radius of a and an outer radius of b has charge density o and lies in the xy-plane with its center at the origin, as shown in (Figure 1). Part B Determine the r-, y-, z-components of the electric field at all points on the z-axis by differentiating the potential. Enter your answers separated by commas. Express your answers in terms of the electric constant e0, ở, a, b, x, y, and z. ην ΑΣφ Ez, Ey, E; = Figure < 1 of 1 > Submit Request Answer Part C b K If a = 5.00 cm, b = 10.0 cm and the total charge on the annulus is 1.00 µC, what is the potential at the origin? Express your answer with the appropriate units. a HẢ V(0) = Value Units Submit Request Answer P Pearson

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Constants
An annulus with an inner radius of a and an outer radius
of b has charge density o and lies in the xy-plane with its
center at the origin, as shown in (Figure 1).
Part B
Determine the x-, Y-, z-components of the electric field at all points on the z-axis by differentiating the potential.
Enter your answers separated by commas. Express your answers in terms of the electric constant e0, 0, a, b, x, y,
and z.
ΑΣφ
Ez, Ey, Ez =
Figure
< 1 of 1
Submit
Request Answer
Part C
If a = 5.00 cm, b= 10.0 cm and the total charge on the annulus is 1.00 µC, what is the potential at the origin?
Express your answer with the appropriate units.
a
?
y
V(0) =
Value
Units
Submit
Request Answer
P Pearson
Transcribed Image Text:Constants An annulus with an inner radius of a and an outer radius of b has charge density o and lies in the xy-plane with its center at the origin, as shown in (Figure 1). Part B Determine the x-, Y-, z-components of the electric field at all points on the z-axis by differentiating the potential. Enter your answers separated by commas. Express your answers in terms of the electric constant e0, 0, a, b, x, y, and z. ΑΣφ Ez, Ey, Ez = Figure < 1 of 1 Submit Request Answer Part C If a = 5.00 cm, b= 10.0 cm and the total charge on the annulus is 1.00 µC, what is the potential at the origin? Express your answer with the appropriate units. a ? y V(0) = Value Units Submit Request Answer P Pearson
Part D
If a particle with mass 1.00 g (much less than the mass of the annulus) and charge 1.00 µC is placed at the origin and given
the slightest nudge, it will be projected along the z-axis. In this case, what will be its ultimate speed?
Express your answer with the appropriate units.
µA
v =
Value
Units
Submit
Request Answer
Transcribed Image Text:Part D If a particle with mass 1.00 g (much less than the mass of the annulus) and charge 1.00 µC is placed at the origin and given the slightest nudge, it will be projected along the z-axis. In this case, what will be its ultimate speed? Express your answer with the appropriate units. µA v = Value Units Submit Request Answer
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