Two point charges, - 80 nC and -120 nC, are located inside a sphere of solid dielectric material. Another point charge. +200 nC, is located outside of this sphere. What is the net electric flux which passes through this spherical surface, S.

icon
Related questions
Question

Question 1 given below slove all parts

Q1 (b) Two point charges, -80 nC and -120 nC, are located inside a
sphere of solid dielectric material. Another point charge.
+200 nC, is located outside of this sphere. What is the net
electric flux which passes through this spherical surface, S.
(c)
(d)
(e)
+200 nC
-80 nC
-120 nC
Spherical
surface, S
An isolated conducting sphere is charged positively. The
sphere is surrounded-by air. The electric field near the surface
of this sphere is 100 V/m. The radius of this sphere is 1 cm.
Calculate the total charge on the sphere.
Calculate the total electric force in vector form acting on a
charge of -10 nC, if the total electric field, Ee, at the point of
location of this charge is a sum of two individual components,
E₁ E2, where E,=-15-250 (V/m) and
+
E₂=-35-50, (V/m).
Two identical capacitors (with capacitance of 10 nF each) are
connected in series and attached to a battery of 200 V. Find
the total charge stored in these two capacitors.
Transcribed Image Text:Q1 (b) Two point charges, -80 nC and -120 nC, are located inside a sphere of solid dielectric material. Another point charge. +200 nC, is located outside of this sphere. What is the net electric flux which passes through this spherical surface, S. (c) (d) (e) +200 nC -80 nC -120 nC Spherical surface, S An isolated conducting sphere is charged positively. The sphere is surrounded-by air. The electric field near the surface of this sphere is 100 V/m. The radius of this sphere is 1 cm. Calculate the total charge on the sphere. Calculate the total electric force in vector form acting on a charge of -10 nC, if the total electric field, Ee, at the point of location of this charge is a sum of two individual components, E₁ E2, where E,=-15-250 (V/m) and + E₂=-35-50, (V/m). Two identical capacitors (with capacitance of 10 nF each) are connected in series and attached to a battery of 200 V. Find the total charge stored in these two capacitors.
Expert Solution
steps

Step by step

Solved in 2 steps with 2 images

Blurred answer