Physics: Electricity & Magnetism Flashcards
7 cards from real AP practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.
Read the first 7 Physics: Electricity & Magnetism flashcards as text
An electron moves in a circular path in a uniform magnetic field. If the magnetic field strength is doubled, the radius of the circular path:
Answer: Halves
The radius r = mv/(qB); doubling B with fixed speed and mass halves the radius.
A conducting loop is placed in a region where the magnetic flux through it is increasing at a constant rate. The induced EMF in the loop:
Answer: Is constant and opposes the change
By Faraday's Law, EMF = −dΦ/dt; a constant rate of flux change produces a constant induced EMF.
Two point charges +2Q and −Q are separated by distance d. Where on the line through the charges (outside the pair) is the electric field zero?
Answer: On the side of −Q, farther from +2Q
The weaker −Q charge requires a closer distance to match the field of +2Q, so the null point is beyond −Q on its far side.
What is the energy stored in an inductor with inductance L carrying current I?
Answer: ½LI²
The energy stored in an inductor is U = ½LI², analogous to ½kx² for a spring.
A capacitor with capacitance C is connected to a battery of EMF ε. The energy stored in the capacitor is:
Answer: ½Cε²
Energy stored in a capacitor is U = ½CV² = ½Cε² when fully charged to voltage V = ε.
According to Lenz's Law, the direction of the induced current in a loop is such that it:
Answer: Opposes the change in magnetic flux
Lenz's Law states that induced current flows in a direction to oppose the change in flux that caused it, consistent with energy conservation.
A point charge Q is at the center of a spherical shell of radius R with surface charge −Q. The electric field just outside the shell is:
Answer: Zero
The total enclosed charge is Q + (−Q) = 0, so by Gauss's Law the net flux and thus the electric field just outside is zero.