Question

A 10-cm-long thin glass rod uniformly charged to 6.00 nCnC and a 10-cm-long thin plastic rod uniformly charged to - 6.00 nCnC are placed side by side, 4.20 cmcm apart. What are the electric field strengths E1E1E_1 to E3E3E_3 at distances 1.0 cm, 2.0 cm, and 3.0 cm from the glass rod along the line connecting the midpoints of the two rods? Specify answers for E1, E2, E3

Answer #1

A 10-cm-long thin glass rod uniformly charged to 7.00 nCnC and a
10-cm-long thin plastic rod uniformly charged to - 7.00 nCnC are
placed side by side, 4.10 cmcm apart. What are the electric field
strengths E1E1 to E3E3 at distances 1.0 cm, 2.0 cm, and 3.0 cm from
the glass rod along the line connecting the midpoints of the two
rods?
Specify the electric field strength E1, E2, and E3.

A 10-cm-long thin glass rod uniformly charged to 13.0 nC and a
10-cm-long thin plastic rod uniformly charged to - 13.0 nC are
placed side by side, 4.50 cm apart. What are the electric field
strengths E1 to E3 at distances 1.0 cm, 2.0 cm, and 3.0 cm from the
glass rod along the line connecting the midpoints of the two
rods?
1) Specify the electric field strength E1. Express your
answer with the appropriate units.
2) Specify the electric...

A 10-cm-long thin glass rod uniformly charged to 13.0 nCnC and a
10-cm-long thin plastic rod uniformly charged to - 13.0 nCnC are
placed side by side, 4.40 cmcm apart. What are the electric field
strengths E1E1E_1 to E3E3E_3 at distances 1.0 cm, 2.0 cm, and 3.0
cm from the glass rod along the line connecting the midpoints of
the two rods?
part A
Specify the electric field strength E1E1E_1
Express your answer with the appropriate units.
Part B
Specify...

A 10-cm-long thin glass rod uniformly charged to 14.0 nC and a
10-cm-long thin plastic rod uniformly charged to - 14.0 nCare
placed side by side, 3.80 cm apart. What are the electric field
strengths E1 to E3 at distances 1.0 cm, 2.0 cm,
and 3.0 cm from the glass rod along the line connecting the
midpoints of the two rods?

Two 18 cm -long thin glass rods uniformly charged to +10nC are
placed side by side, 4.0 cm apart. What are the electric field
strengths E1, E2, and E3 at distances
1.0 cm, 2.0 cm, and 3.0 cm to the right of the rod on the left,
along the line connecting the midpoints of the two rods?
part A
Specify the electric field strength E1.
Express your answer to two significant figures and include the
appropriate units.
B
Specify the...

A thin rod 39.2 cm long is charged uniformly with a
positive charge density of 46.0 ?C/m. The rod is
placed along the y-axis and is centered at the origin. A charge of
+43.0 ?C is placed 51.2 cm from the midpoint of
the rod on the positive x-axis. Calculate the electric field at a
point on the x-axis, which is halfway between the point charge and
the center of the rod. (Express your answer in terms of the unit...

A very thin glass rod 4 meters long is rubbed all over with a
silk cloth. It gains a uniformly distributed charge 1.7 ✕
10−6 C. Two small spherical rubber balloons of radius
1.2 cm are rubbed all over with wool. They each gain a uniformly
distributed charge of -3 ✕ 10−8 C. The balloons are near
the midpoint of the glass rod, with their centers 3 cm from the
rod. The balloons are 2 cm apart (4.4 cm between...

12-A rod 16.0 cm long is uniformly charged and has a total
charge of -21.0 µC. Determine the magnitude and direction of the
electric field along the axis of the rod at a point 40.0 cm from
its center.
magnitude
17-The charge per unit length on a long, straight filament is
-94.7 µC/m.
(a) Find the electric field 10.0 cm from the filament, where
distances are measured perpendicular to the length of the filament.
(Take radially inward toward the filament...

A rod 12.0 cm long is uniformly charged and has a total charge
of -25.0 µC. Determine the magnitude and direction of the electric
field along the axis of the rod at a point 36.0 cm from its center.
magnitude=?

A rod 12.0 cm long is uniformly charged and has a total charge
of -21.0 µC. Determine the magnitude and direction of the electric
field along the axis of the rod at a point 36.0 cm from its
center.
magnitude
N/C

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