Physics Flashcards: Apply Physics To Collision Design
Study Apply Physics To Collision Design in Physics with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.
Physics
Apply Physics To Collision Design
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QUESTION
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What quantity equals the loss of kinetic energy in an inelastic collision (as heat, sound, deformation)?
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ANSWER
ΔK=Kafter−Kbefore<0. Energy is lost to heat, sound, and permanent deformation.
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This deck focuses on Apply Physics To Collision Design, giving you a quick way to review the definitions, rules, and examples that matter most for Physics.
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Flashcard 1: What quantity equals the loss of kinetic energy in an inelastic collision (as heat, sound, deformation)?
Answer: ΔK=Kafter−Kbefore<0. Energy is lost to heat, sound, and permanent deformation.
Flashcard 2: What is the impulse–momentum theorem relating impulse J to momentum change?
Answer: J=Δp. Impulse equals the change in momentum by Newton's second law.
Flashcard 3: Which design change reduces peak force for the same Δp: increase or decrease Δt?
Answer: Increase Δt. Since J=FavgΔt=Δp, larger Δt reduces Favg.
Flashcard 4: In a 1D collision, what does e=0 indicate about the post-collision motion?
Answer: Objects move together: v1f=v2f. Zero restitution means perfectly inelastic collision.
Flashcard 5: Find Favg if Δp=12N⋅s and Δt=0.06s.
Answer: Favg=200N. Favg=ΔtΔp=0.0612=200N.
Flashcard 6: Which option increases stopping distance and reduces peak force: rigid bumper or crumple zone?
Answer: Crumple zone. Crumple zones deform to extend collision time and reduce peak force.
Flashcard 7: State the formula for linear momentum of an object in collision analysis.
Answer: p=mv. Momentum equals mass times velocity vector.
Flashcard 8: Which collision type has e=0 with objects sticking together after impact?
Answer: Perfectly inelastic collision. Maximum energy loss, objects move together after impact.
Flashcard 9: Identify the correct relation between force and momentum change during a collision.
Answer: Fnet=ΔtΔp. Average force equals momentum change divided by time interval.
Flashcard 10: What principle states that total momentum of an isolated collision system stays constant?
Answer: Conservation of momentum: ∑pbefore=∑pafter. In isolated systems, no external forces change the total momentum.
Flashcard 11: What design change reduces average impact force for the same momentum change?
Answer: Increase collision time Δt. Longer impact time reduces force by F=ΔtΔp.
Flashcard 12: Find the average deceleration magnitude if a car slows from 25 to 0m/s in 0.50s.
Answer: ∣a∣=50m/s2. a=ΔtΔv=0.500−25=−50m/s2.
Flashcard 13: Find the stopping distance if a 1000kg car at 20m/s is stopped by Favg=2.0×105N.