
Electrostatics and Gauss's Law Concepts
Interactive Video
•
Science
•
9th Grade
•
Practice Problem
•
Hard
Turkan Argin
FREE Resource
8 questions
Show all answers
1.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What does Gauss's Law relate?
Electric flux to enclosed charge
Electric field to current
Magnetic flux to resistance
Voltage to capacitance
2.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
For a point charge 'q' enclosed by a spherical Gaussian surface, what is the charge enclosed (Q_in) used in Gauss's Law?
0
q
2q
4πr²q
3.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What is the electric field inside a metal conductor in electrostatic equilibrium?
Directly proportional to the charge
Inversely proportional to the charge
Zero
Dependent on the material's resistance
4.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
A point charge 'q' is placed inside a metal shell with a net charge 'Q'. If a Gaussian surface is drawn outside the metal shell, what is the total charge enclosed by this Gaussian surface?
q
Q
q + Q
0
5.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
A metal shell with a net charge Q surrounds a point charge q at its center. What is the total charge enclosed by a Gaussian surface placed outside the metal shell?
q
Q
q + Q
q - Q
6.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
What is the electric field inside a solid metal shell that has a net charge Q, assuming no other charges are present inside the shell?
Zero
Proportional to Q
Proportional to the distance from the center
Dependent on the shell's thickness
7.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
An insulating sphere has a uniform charge density ρ. If a Gaussian surface is placed inside the sphere with a radius 'r' (where r < R, the sphere's radius), how is the charge enclosed related to the charge density?
Q_enclosed = ρ * (4/3)πR³
Q_enclosed = ρ * (4/3)πr³
Q_enclosed = ρ * 4πr²
Q_enclosed = ρ * 4πR²
8.
MULTIPLE CHOICE QUESTION
30 sec • 1 pt
An insulating charged shell has a total charge Q₀. The shell has an inner radius 'a' and an outer radius 'b'. What is the charge density (ρ) of the material in the shell?
ρ = Q₀ / ((4/3)πb³)
ρ = Q₀ / ((4/3)πa³)
ρ = Q₀ / ((4/3)π(b³ - a³))
ρ = Q₀ / (4π(b² - a²))
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