Study Electric Potential 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: State the relationship between potential difference and electric field.
Answer: E=−d△V. Field strength relates to potential gradient.
Flashcard 2: What is the electric potential energy of a 2C charge at 3V?
Answer: 6 J. Using U=qV=2×3=6.
Flashcard 3: Find the potential difference if the electric field is 5 V/m across $3m$.
Answer: 15 V. Using △V=Ed=5×3=15.
Flashcard 4: How is work done related to electric potential difference?
Answer: W=q△V. Standard work-voltage relationship formula.
Flashcard 5: Calculate the potential difference for a 4V and 12V junction.
Answer: 8 V. Difference equals 12−4=8 volts.
Flashcard 6: Calculate the potential energy of a 2C charge in a 10V field.
Answer: 20 J. Using U=qV=2×10=20.
Flashcard 7: What is the formula for electric potential energy?
Answer: U=qV. Energy equals charge times potential.
Flashcard 8: What is the formula for the potential difference in a uniform field?
Answer: △V=Ed. Potential difference in uniform electric field.
Flashcard 9: Find the potential energy of 3C in a 6V field.
Answer: 18 J. Using U=qV=3×6=18.
Flashcard 10: What is the potential difference between two points in a 4V and 10V field?
Answer: 6 V. Difference equals 10−4=6 volts.
Flashcard 11: What is the potential energy of a charge in a uniform electric field?
Answer: U=qEd. Energy stored in uniform field configuration.
Flashcard 12: Identify the relationship between electric potential and electric field.
Answer: E=−∇V. Electric field is negative gradient of potential.
Flashcard 13: Define electric potential.
Answer: Electric potential is the work done per unit charge. Describes energy per unit charge at a point.
Flashcard 14: Define the term 'electric potential energy'.
Answer: Energy a charge has due to its position in an electric field. Energy stored due to electric field position.
Flashcard 15: Identify the potential difference needed to store 20J in 2C of charge.
Answer: 10 V. From U=qV, solve for V=qU=220=10.
Flashcard 16: Calculate the work done in moving a charge of 2C through a potential difference of 5V.
Answer: 10 J. Work equals charge times potential difference: W=qV=2×5=10.
Flashcard 17: What is the electric potential at a point equidistant from two equal charges?
Answer: Zero. Equal charges create symmetric cancellation.
Flashcard 18: State the relationship between potential difference and electric field.
Answer: E=−d△V. Field strength relates to potential gradient.
Flashcard 19: Calculate the potential energy of 5C in a 4V potential.
Answer: 20 J. Using U=qV=5×4=20.
Flashcard 20: What is the potential energy of a charge in a uniform electric field?
Answer: U=qEd. Energy stored in uniform field configuration.
Flashcard 21: Which quantity is measured in volts?
Answer: Electric potential. Voltage measures electric potential difference.
Flashcard 22: State the formula for potential energy in terms of electric field and distance.
Answer: U=qEd. Energy from charge, field, and displacement.
Flashcard 23: What is the potential difference between two points in a 4V and 10V field?
Answer: 6 V. Difference equals 10−4=6 volts.
Flashcard 24: Find the electric field from a potential function V(x)=3x2.
Answer: E=−6x V/m. Field equals negative derivative: E=−dxdV=−6x.
Flashcard 25: What is the relation between potential difference and energy change?
Answer: △U=q△V. Energy change equals charge times voltage change.
Flashcard 26: How is potential difference related to work done on a charge?
Answer: W=q△V. Fundamental relationship between work and voltage.
Flashcard 27: Calculate the potential at a point $3m$ from a 5C charge.
Answer: V=3k×5. Direct substitution into point charge formula.
Flashcard 28: Calculate the potential energy of 5C in a 4V potential.
Answer: 20 J. Using U=qV=5×4=20.
Flashcard 29: State the unit of electric potential.
Answer: Volt (V). Standard unit for measuring electric potential.
Flashcard 30: How is work done related to electric potential difference?
Answer: W=q△V. Standard work-voltage relationship formula.
Flashcard 31: State the unit of electric potential energy.
Answer: Joule (J). Standard unit for measuring energy quantities.
Flashcard 32: Find the electric field from a potential function V(x)=3x2.
Answer: E=−6x V/m. Field equals negative derivative: E=−dxdV=−6x.
Flashcard 33: Define the term 'electric potential energy'.
Answer: Energy a charge has due to its position in an electric field. Energy stored due to electric field position.
Flashcard 34: State the formula for potential energy in terms of electric field and distance.
Answer: U=qEd. Energy from charge, field, and displacement.
Flashcard 35: Calculate the potential difference for a 4V and 12V junction.
Answer: 8 V. Difference equals 12−4=8 volts.
Flashcard 36: Define the term 'equipotential surface'.
Answer: A surface with constant electric potential. Surface where potential remains constant everywhere.
Flashcard 37: Calculate the work done in moving a charge of 2C through a potential difference of 5V.
Answer: 10 J. Work equals charge times potential difference: W=qV=2×5=10.
Flashcard 38: What is the formula for electric potential difference?
Answer: △V=Vf−Vi. Change in potential equals final minus initial.
Flashcard 39: How is electric potential related to electric potential energy?
Answer: V=qU. Potential equals energy per unit charge.
Flashcard 40: State the formula for the potential energy of a system of two charges.
Answer: U=rkq1q2. Interaction energy between two point charges.
Flashcard 41: State the formula for the electric potential due to a point charge.
Answer: V=rkq. Coulomb's law for potential from point charge.
Flashcard 42: What is the electric potential at infinity?
Answer: Zero. Reference point for electric potential measurements.
Flashcard 43: State the formula for the potential energy of a system of two charges.
Answer: U=rkq1q2. Interaction energy between two point charges.
Flashcard 44: Define electric potential.
Answer: Electric potential is the work done per unit charge. Describes energy per unit charge at a point.
Flashcard 45: Which quantity is measured in volts?
Answer: Electric potential. Voltage measures electric potential difference.
Flashcard 46: How is potential difference related to work done on a charge?
Answer: W=q△V. Fundamental relationship between work and voltage.
Flashcard 47: Identify the potential energy formula for a system of charges.
Answer: U=rkq1q2. Standard formula for charge interaction energy.
Flashcard 48: How is the work done on a charge related to potential difference?
Answer: W=q△V. Work done equals charge times voltage change.
Flashcard 49: State the unit of electric potential energy.
Answer: Joule (J). Standard unit for measuring energy quantities.
Flashcard 50: What is the potential energy of a 3C charge at a potential of 4V?
Answer: 12 J. Using U=qV=3×4=12.
Flashcard 51: How is the work done on a charge related to potential difference?
Answer: W=q△V. Work done equals charge times voltage change.
Flashcard 52: Define the term 'equipotential surface'.
Answer: A surface with constant electric potential. Surface where potential remains constant everywhere.
Flashcard 53: What is the potential energy of a 3C charge at a potential of 4V?
Answer: 12 J. Using U=qV=3×4=12.
Flashcard 54: Calculate the potential energy of a 2C charge in a 10V field.
Answer: 20 J. Using U=qV=2×10=20.
Flashcard 55: What is the electric potential at infinity?
Answer: Zero. Reference point for electric potential measurements.
Flashcard 56: Identify the relationship between electric potential and electric field.
Answer: E=−∇V. Electric field is negative gradient of potential.
Flashcard 57: Identify the potential difference needed to store 20J in 2C of charge.
Answer: 10 V. From U=qV, solve for V=qU=220=10.
Flashcard 58: What is the potential at a point midway between two equal charges?
Answer: Zero. Symmetric positioning cancels equal contributions.
Flashcard 59: Find the potential energy of 3C in a 6V field.
Answer: 18 J. Using U=qV=3×6=18.
Flashcard 60: Find the potential difference if the electric field is 5 V/m across $3m$.
Answer: 15 V. Using △V=Ed=5×3=15.
Flashcard 61: What is the formula for electric potential energy?
Answer: U=qV. Energy equals charge times potential.
Flashcard 62: What is the electric potential energy of a 2C charge at 3V?
Answer: 6 J. Using U=qV=2×3=6.
Flashcard 63: How is electric potential related to electric potential energy?
Answer: V=qU. Potential equals energy per unit charge.
Flashcard 64: What is the electric potential at a point equidistant from two equal charges?
Answer: Zero. Equal charges create symmetric cancellation.
Flashcard 65: Calculate the potential at a point $3m$ from a 5C charge.
Answer: V=3k×5. Direct substitution into point charge formula.
Flashcard 66: State the formula for the electric potential due to a point charge.
Answer: V=rkq. Coulomb's law for potential from point charge.
Flashcard 67: Identify the potential energy formula for a system of charges.
Answer: U=rkq1q2. Standard formula for charge interaction energy.
Flashcard 68: What is the formula for the potential difference in a uniform field?
Answer: △V=Ed. Potential difference in uniform electric field.
Flashcard 69: What is the relation between potential difference and energy change?
Answer: △U=q△V. Energy change equals charge times voltage change.
Flashcard 70: State the unit of electric potential.
Answer: Volt (V). Standard unit for measuring electric potential.
Flashcard 71: What is the formula for electric potential difference?
Answer: △V=Vf−Vi. Change in potential equals final minus initial.