At t₁ = 3.0 s, a car has velocity components vx1 = 5.0 m/s and vy1 = 4.0 m/s. From t₁ = 3.0 s to t₂ = 17.0 s, it has an average acceleration aave = 2.0 m/s² i + 1.0 m/s2 j. What is the car's velocity at t2 = 17.0 s? OA. 10 m/s i + 4 m/s j B. 28 m/si + 14 m/s j OC. 30 m/si + 15 m/s j OD. 33 m/si + 18 m/sj OE. 35 m/si + 19 m/s j

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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At t₁ = 3.0 s, a car has velocity components Vx1 = 5.0 m/s and vy1 = 4.0 m/s. From t₁ = 3.0 s to t2 = 17.0 s, it has an average acceleration aave =
2.0 m/s2 i + 1.0 m/s2 j. What is the car's velocity at t2 = 17.0 s?
A. 10 m/s i + 4 m/s j
OB. 28 m/si + 14 m/s j
OC. 30 m/s i + 15 m/s j
OD. 33 m/si + 18 m/sj
OE. 35 m/si + 19 m/sj
Transcribed Image Text:At t₁ = 3.0 s, a car has velocity components Vx1 = 5.0 m/s and vy1 = 4.0 m/s. From t₁ = 3.0 s to t2 = 17.0 s, it has an average acceleration aave = 2.0 m/s2 i + 1.0 m/s2 j. What is the car's velocity at t2 = 17.0 s? A. 10 m/s i + 4 m/s j OB. 28 m/si + 14 m/s j OC. 30 m/s i + 15 m/s j OD. 33 m/si + 18 m/sj OE. 35 m/si + 19 m/sj
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