Study Electric Charge And Electric Force in AP Physics 2 with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.
All flashcards
Flashcard 1: What is the direction of the electric field due to a positive charge?
Answer: Radially outward from the charge. Field lines point away from positive charges.
Flashcard 2: Find the force on a charge in a uniform electric field.
Answer: F=qE. Force equals charge times field strength.
Flashcard 3: Identify the SI unit for electric field strength.
Answer: Newton per Coulomb (N/C). Also equivalent to V/m (volts per meter).
Flashcard 4: What is the electric field on the surface of a charged conductor?
Answer: Perpendicular to the surface. Field is normal to equipotential surfaces.
Flashcard 5: What is the electric field on the surface of a charged conductor?
Answer: Perpendicular to the surface. Field is normal to equipotential surfaces.
Flashcard 6: What is the direction of the electric field due to a negative charge?
Answer: Radially inward toward the charge. Field lines point toward negative charges.
Flashcard 7: State the formula for electric force between two charges.
Answer: F=kr2∣q1q2∣. Coulomb's Law for electrostatic force.
Flashcard 8: What is the effect of a charged insulator on a nearby uncharged conductor?
Answer: Induces a charge separation. Creates surface charges that cancel internal field.
Flashcard 9: Find the force on a charge in a uniform electric field.
Answer: F=qE. Force equals charge times field strength.
Flashcard 10: What is the charge of an electron?
Answer: −1.6×10−19 C. Fundamental negative charge magnitude.
Flashcard 11: What is the principle of superposition for electric forces?
Answer: Net force is vector sum of individual forces. Forces add vectorially from all charges.
Flashcard 12: What is the electric potential at a point due to a point charge?
Answer: V=krq. Potential decreases with distance from positive charge.
Flashcard 13: State the relationship between potential energy and work done by electric forces.
Answer: Ui−Uf=Wdone. Conservation of energy in electric fields.
Flashcard 14: What is the formula for the potential energy of a dipole in an electric field?
Answer: U=−pEcos(θ). Energy depends on dipole orientation relative to field.
Flashcard 15: State the formula for electric force between two charges.
Answer: F=kr2∣q1q2∣. Coulomb's Law for electrostatic force.
Flashcard 16: Determine the potential difference between two points in an electric field.
Answer: △V=Ed. For uniform field, voltage change is field times distance.
Flashcard 17: Calculate the electric potential at 2 m from a 3 C charge.
Answer: V=1.35×1010 V. Using V=krq with given values.
Flashcard 18: Calculate the force between two 1 C charges 1 m apart.
Answer: F=8.99×109 N. Using F=kr2∣q1q2∣ with given values.
Flashcard 19: What is the electric potential at a point due to a point charge?
Answer: V=krq. Potential decreases with distance from positive charge.
Flashcard 20: Determine the electric force on a 5 C charge in a 10 N/C field.
Answer: F=50 N. Using F=qE with given charge and field.
Flashcard 21: State Coulomb's Law.
Answer: F=kr2∣q1q2∣. Force between charges is proportional to product of charges, inversely proportional to distance squared.
Flashcard 22: Determine the electric force on a 5 C charge in a 10 N/C field.
Answer: F=50 N. Using F=qE with given charge and field.
Flashcard 23: What is the electric field inside a conductor in electrostatic equilibrium?
Answer: Zero. Charges redistribute to cancel internal field.
Flashcard 24: What is the net charge inside a conductor in electrostatic equilibrium?
Answer: Zero inside the conductor. All excess charge resides on surface.
Flashcard 25: Identify the relationship between electric field and force on a charged particle.
Answer: F=qE. Definition of electric field strength.
Flashcard 26: State Gauss's Law.
Answer: Flux=ε0Qenc. Electric flux through closed surface equals enclosed charge over ε0.
Flashcard 27: Calculate the work done moving a 1 C charge across 10 V.
Answer: W=10 J. Work equals charge times potential difference.
Flashcard 28: Calculate the electric potential at 2 m from a 3 C charge.
Answer: V=1.35×1010 V. Using V=krq with given values.
Flashcard 29: What is meant by a conservative electric field?
Answer: Work done is path independent. Electric fields are conservative force fields.
Flashcard 30: What is the principle of superposition for electric forces?
Answer: Net force is vector sum of individual forces. Forces add vectorially from all charges.
Flashcard 31: What is the relationship between electric field and voltage?
Answer: E=−dxdV. Field points from high to low potential.
Flashcard 32: Calculate the force between two 1 C charges 1 m apart.
Answer: F=8.99×109 N. Using F=kr2∣q1q2∣ with given values.
Flashcard 33: What is the magnitude of the electric field in a parallel plate capacitor?
Answer: E=dV. Uniform field between parallel plates.
Flashcard 34: Calculate the work done moving a 1 C charge across 10 V.
Answer: W=10 J. Work equals charge times potential difference.
Flashcard 35: What is the permittivity of free space, ε0?
Answer: 8.85×10−12 C2/N m2. Fundamental constant in electromagnetism.
Flashcard 36: Define electric field.
Answer: Force per unit charge, E=qF. Electric force per unit test charge.
Flashcard 37: Identify the formula for the work done by an electric force.
Answer: W=qEd. Work equals force times distance moved.
Flashcard 38: What are the units of electric potential (voltage)?
Answer: Volt (V). One volt equals one joule per coulomb.
Flashcard 39: What is the charge of a proton?
Answer: +1.6×10−19 C. Fundamental positive charge magnitude.
Flashcard 40: State Coulomb's Law.
Answer: F=kr2∣q1q2∣. Force between charges is proportional to product of charges, inversely proportional to distance squared.
Flashcard 41: What is the formula for electric potential energy?
Answer: U=krq1q2. Energy increases when like charges approach.
Flashcard 42: What is the formula for the potential energy of a dipole in an electric field?
Answer: U=−pEcos(θ). Energy depends on dipole orientation relative to field.
Flashcard 43: Determine the potential difference between two points in an electric field.
Answer: △V=Ed. For uniform field, voltage change is field times distance.
Flashcard 44: State the formula for electric potential (voltage).
Answer: V=qU. Electric potential energy per unit charge.
Flashcard 45: Calculate the potential energy of a 2 C charge at 5 V.
Answer: U=10 J. Using U=qV with given charge and potential.
Flashcard 46: What is the magnitude of the electric field in a parallel plate capacitor?
Answer: E=dV. Uniform field between parallel plates.
Flashcard 47: What is the formula for electric field due to a point charge?
Answer: E=kr2∣q∣. Field strength decreases with distance squared.
Flashcard 48: What is the formula for electric field due to a point charge?
Answer: E=kr2∣q∣. Field strength decreases with distance squared.
Flashcard 49: What is the charge of an electron?
Answer: -1.6×10−19 C. Fundamental negative charge magnitude.
Flashcard 50: What is the net charge inside a conductor in electrostatic equilibrium?
Answer: Zero inside the conductor. All excess charge resides on surface.
Flashcard 51: What is the charge of a proton?
Answer: +1.6×10−19 C. Fundamental positive charge magnitude.
Flashcard 52: State the formula for the torque on a dipole in a uniform electric field.
Answer: τ=pEsin(θ). Maximum torque when dipole perpendicular to field.
Flashcard 53: What is the value of the Coulomb constant, k?
Answer: 8.99×109 N m2/C2. Also written as 4πε01.
Flashcard 54: Identify the formula for the work done by an electric force.
Answer: W=qEd. Work equals force times distance moved.
Flashcard 55: Define electric field.
Answer: Force per unit charge, E=qF. Electric force per unit test charge.
Flashcard 56: Calculate the potential energy of a 2 C charge at 5 V.
Answer: U=10 J. Using U=qV with given charge and potential.
Flashcard 57: What is the electric field inside a conductor in electrostatic equilibrium?
Answer: Zero. Charges redistribute to cancel internal field.
Flashcard 58: What is the relationship between electric field and voltage?
Answer: E=−dxdV. Field points from high to low potential.
Flashcard 59: What is the effect of a charged insulator on a nearby uncharged conductor?
Answer: Induces a charge separation. Creates surface charges that cancel internal field.
Flashcard 60: State the formula for the torque on a dipole in a uniform electric field.
Answer: τ=pEsin(θ). Maximum torque when dipole perpendicular to field.
Flashcard 61: State the formula for electric potential (voltage).
Answer: V=qU. Electric potential energy per unit charge.
Flashcard 62: What are the units of electric potential (voltage)?
Answer: Volt (V). One volt equals one joule per coulomb.
Flashcard 63: What is the permittivity of free space, ε0?
Answer: 8.85×10−12 C2/N m2. Fundamental constant in electromagnetism.
Flashcard 64: What is the direction of the electric field due to a negative charge?
Answer: Radially inward toward the charge. Field lines point toward negative charges.
Flashcard 65: State the relationship between potential energy and work done by electric forces.
Answer: Ui−Uf=Wdone. Conservation of energy in electric fields.
Flashcard 66: What is the direction of the electric field due to a positive charge?
Answer: Radially outward from the charge. Field lines point away from positive charges.
Flashcard 67: Identify the SI unit for electric field strength.
Answer: Newton per Coulomb (N/C). Also equivalent to V/m (volts per meter).
Flashcard 68: Identify the relationship between electric field and force on a charged particle.
Answer: F=qE. Definition of electric field strength.
Flashcard 69: What is the value of the Coulomb constant, k?
Answer: 8.99×109 N m2/C2. Also written as 4πε01.
Flashcard 70: What is meant by a conservative electric field?
Answer: Work done is path independent. Electric fields are conservative force fields.