3. Object A is moving due east, while object B is moving due north. They collide and stick together in a completely inelastic collision. Momentum is conserved. Object A has a mass of mA = 18.5 kg and an initial velocity of voA = 7.90 m/s, due east. Object B, however, has a mass of mB = 28.5 kg and an initial velocity of voB = 5.20 m/s, due north. Find the direction of the final velocity of the two-object system after the collision. ° north of east sf60

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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3. Object A is moving due east, while object B is moving due north. They collide and stick together in a completely inelastic collision. Momentum is conserved. Object A has a mass of \( m_A = 18.5 \, \text{kg} \) and an initial velocity of \( v_{0A} = 7.90 \, \text{m/s} \), due east. Object B, however, has a mass of \( m_B = 28.5 \, \text{kg} \) and an initial velocity of \( v_{0B} = 5.20 \, \text{m/s} \), due north. Find the direction of the final velocity of the two-object system after the collision.

\(\_\_\_\)° north of east
Transcribed Image Text:3. Object A is moving due east, while object B is moving due north. They collide and stick together in a completely inelastic collision. Momentum is conserved. Object A has a mass of \( m_A = 18.5 \, \text{kg} \) and an initial velocity of \( v_{0A} = 7.90 \, \text{m/s} \), due east. Object B, however, has a mass of \( m_B = 28.5 \, \text{kg} \) and an initial velocity of \( v_{0B} = 5.20 \, \text{m/s} \), due north. Find the direction of the final velocity of the two-object system after the collision. \(\_\_\_\)° north of east
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