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This deck focuses on Scalars And Vectors In One Dimension, giving you a quick way to review the definitions, rules, and examples that matter most for AP Physics 1.
Study Scalars And Vectors In One Dimension in AP Physics 1 with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.
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Which is a scalar: volume or velocity?
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Volume is a scalar. Volume only has magnitude, no direction.
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This deck focuses on Scalars And Vectors In One Dimension, giving you a quick way to review the definitions, rules, and examples that matter most for AP Physics 1.
Work through these flashcards in short sessions. Try to answer each prompt before flipping the card, then revisit any cards you miss until the explanation feels automatic.
Answer: Volume is a scalar. Volume only has magnitude, no direction.
Answer: Speed is a scalar. Speed only indicates how fast, not direction.
Answer: Distance is scalar; displacement is vector. Distance is total path; displacement is net change in position.
Answer: Temperature is a scalar. Temperature has no directional component.
Answer: Temperature is a scalar. Temperature has no directional component.
Answer: Power is a scalar. Power has no direction, momentum does.
Answer: The result is a resultant vector. The sum combines both vectors into one.
Answer: It indicates motion in the opposite direction. Shows movement toward the negative direction.
Answer: Impulse is a vector. Impulse has direction, work does not.
Answer: Displacement is a vector. Displacement has both magnitude and direction.
Answer: Time is a scalar quantity. Time has magnitude but no direction.
Answer: The direction of the arrow determines it. Arrow direction shows which way vector points.
Answer: Force is a vector quantity. Force has both magnitude and direction.
Answer: Electric field is a vector. Electric field has direction, charge does not.
Answer: Use the head-to-tail method. Connect tail of second to head of first.
Answer: Distance is scalar; displacement is vector. Distance is total path; displacement is net change in position.
Answer: A scalar quantity has magnitude only. Examples include mass, speed, time, and energy.
Answer: Average speed=total timetotal distance. Uses total distance traveled along the path.
Answer: Averagevelocity=total timetotal displacement. Uses total displacement, not total distance.
Answer: A vector quantity has both magnitude and direction. Examples include velocity, force, and displacement.
Answer: The SI unit for displacement is meter (m). Same as distance since both measure length.
Answer: Energy is a scalar. Energy has no direction, momentum does.
Answer: Speed is a scalar. Speed only indicates magnitude, not direction.
Answer: Magnitude is the length of the vector. Also called the absolute value of the vector.
Answer: Mass is a scalar. Mass only has magnitude, no direction.
Answer: Velocity is a vector. Velocity includes both speed and direction.
Answer: Speed is a scalar. Speed only indicates magnitude, not direction.
Answer: Velocity can be negative. Negative indicates direction opposite to positive reference.
Answer: Time is a scalar quantity. Time has magnitude but no direction.
Answer: Force is a vector quantity. Force has both magnitude and direction.
Answer: The direction of the arrow determines it. Arrow direction shows which way vector points.
Answer: Average speed=total timetotal distance. Uses total distance traveled along the path.
Answer: Displacement is a vector. Displacement includes direction from start to end.
Answer: Power is a scalar. Power has no direction, momentum does.
Answer: Speed is a scalar. Speed only indicates how fast, not direction.
Answer: Torque is a vector. Torque has direction, pressure does not.
Answer: The SI unit for distance is meter (m). Same as displacement since both measure length.
Answer: Acceleration is a vector. Acceleration has direction, temperature does not.
Answer: Displacement is a vector. Displacement has both magnitude and direction.
Answer: Velocity is a vector. Velocity includes both speed and direction.
Answer: Energy is a scalar. Energy has no direction, momentum does.
Answer: Mass is a scalar. Mass has no direction, force has direction.
Answer: Volume is a scalar quantity. Volume has magnitude but no direction.
Answer: Electric field is a vector. Electric field has direction, charge does not.
Answer: The SI unit for displacement is meter (m). Same as distance since both measure length.
Answer: The result is a resultant vector. The sum combines both vectors into one.
Answer: Acceleration is a vector. Acceleration has direction, temperature does not.
Answer: The direction represents the vector's direction. The arrowhead points in the vector's direction.
Answer: Velocity can be negative. Negative indicates direction opposite to positive reference.
Answer: Magnitude is the length of the vector. Also called the absolute value of the vector.
Answer: Volume is a scalar. Volume only has magnitude, no direction.
Answer: Displacement is a vector. Displacement includes direction from start to end.
Answer: The direction represents the vector's direction. The arrowhead points in the vector's direction.
Answer: A scalar quantity has magnitude only. Examples include mass, speed, time, and energy.
Answer: Use the head-to-tail method. Connect tail of second to head of first.
Answer: The length represents the magnitude. Longer arrows indicate larger magnitudes.
Answer: The SI unit for distance is meter (m). Same as displacement since both measure length.
Answer: Torque is a vector. Torque has direction, pressure does not.
Answer: A vector quantity has both magnitude and direction. Examples include velocity, force, and displacement.
Answer: The length represents the magnitude. Longer arrows indicate larger magnitudes.
Answer: Mass is a scalar. Mass has no direction, force has direction.
Answer: Impulse is a vector. Impulse has direction, work does not.
Answer: It indicates motion in the opposite direction. Shows movement toward the negative direction.