A baseball of mass m1 = 0.46 kg is thrown at another ball hanging from the ceiling by a length of string L = 1.75 m. The second ball m2 = 0.76 kg is initially at rest while the baseball has an initial horizontal velocity of V1 = 3.5 m/s. After the collision the first baseball falls straight down (no horizontal velocity). What is the angle that the string makes with the vertical at the highest point of travel in degrees?

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Chapter1: Units, Trigonometry. And Vectors
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A baseball of mass m1 = 0.46 kg is thrown at another ball hanging from the ceiling by a length of string L = 1.75 m. The second ball m2 = 0.76 kg is initially at rest while the baseball has an initial horizontal velocity of V1 = 3.5 m/s. After the collision the first baseball falls straight down (no horizontal velocity).

What is the angle that the string makes with the vertical at the highest point of travel in degrees? 


The image illustrates a collision scenario involving two objects. 

- The first object, represented by a ball with mass \( m_1 \), is moving with an initial velocity \( V_1 \) directed horizontally to the right.
- The second object is a ball with mass \( m_2 \), which is initially at rest. It is attached to a string of length \( L \), forming a pendulum.
- The pendulum is shown at an angle \( \theta \) from the vertical, indicating potential displacement after the collision.

The diagram indicates a typical setup for analyzing collision dynamics and pendulum motion, including concepts of conservation of momentum and energy transfer.
Transcribed Image Text:The image illustrates a collision scenario involving two objects. - The first object, represented by a ball with mass \( m_1 \), is moving with an initial velocity \( V_1 \) directed horizontally to the right. - The second object is a ball with mass \( m_2 \), which is initially at rest. It is attached to a string of length \( L \), forming a pendulum. - The pendulum is shown at an angle \( \theta \) from the vertical, indicating potential displacement after the collision. The diagram indicates a typical setup for analyzing collision dynamics and pendulum motion, including concepts of conservation of momentum and energy transfer.
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