Suppose the mass of the raft in the previous problem is 500 kg. What is the raft's speed immediately after the 72 kg diver jumps off at 3.8 m/s? A. 0.00 m/s B. 0.27 m/s C. 0.55 m/s D. 3.8 m/s O A O B O C OD

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**Problem Statement:**

Suppose the mass of the raft in the previous problem is 500 kg. What is the raft's speed immediately after the 72 kg diver jumps off at 3.8 m/s?

**Answer Choices:**

- A. 0.00 m/s 
- B. 0.27 m/s 
- C. 0.55 m/s 
- D. 3.8 m/s

**Options for Selection:**

- ○ A
- ○ B
- ○ C
- ○ D

**Explanation:**

In this problem, the goal is to find the speed of the raft right after the diver jumps off, using the principle of conservation of momentum. When the diver jumps off the raft, their momentum must equal the momentum of the raft in the opposite direction, assuming an isolated system with no external forces like friction acting.

To solve this, apply the conservation of momentum formula:

\[ m_1 \times v_1 = m_2 \times v_2 \]

Where:
- \( m_1 \) is the mass of the diver (72 kg),
- \( v_1 \) is the speed of the diver (3.8 m/s),
- \( m_2 \) is the mass of the raft (500 kg),
- \( v_2 \) is the speed of the raft, which needs to be calculated.
Transcribed Image Text:**Problem Statement:** Suppose the mass of the raft in the previous problem is 500 kg. What is the raft's speed immediately after the 72 kg diver jumps off at 3.8 m/s? **Answer Choices:** - A. 0.00 m/s - B. 0.27 m/s - C. 0.55 m/s - D. 3.8 m/s **Options for Selection:** - ○ A - ○ B - ○ C - ○ D **Explanation:** In this problem, the goal is to find the speed of the raft right after the diver jumps off, using the principle of conservation of momentum. When the diver jumps off the raft, their momentum must equal the momentum of the raft in the opposite direction, assuming an isolated system with no external forces like friction acting. To solve this, apply the conservation of momentum formula: \[ m_1 \times v_1 = m_2 \times v_2 \] Where: - \( m_1 \) is the mass of the diver (72 kg), - \( v_1 \) is the speed of the diver (3.8 m/s), - \( m_2 \) is the mass of the raft (500 kg), - \( v_2 \) is the speed of the raft, which needs to be calculated.
**Physics Problem: Interaction of a Swimmer and a Raft**

A 72 kg swimmer dives horizontally off a raft floating in a lake. The diver's speed immediately after leaving the raft is 3.8 m/s. If the time interval of the interaction between the diver and the raft is 0.25 s, what is the magnitude of the average horizontal force by the diver on the raft?

**Options:**

A. 270 N  
B. 68 N  
C. 2300 N  
D. 1100 N  

_Answer Selections:_

- ⭕ C
- ⭕ D
- ⭕ B
- ⭕ A
Transcribed Image Text:**Physics Problem: Interaction of a Swimmer and a Raft** A 72 kg swimmer dives horizontally off a raft floating in a lake. The diver's speed immediately after leaving the raft is 3.8 m/s. If the time interval of the interaction between the diver and the raft is 0.25 s, what is the magnitude of the average horizontal force by the diver on the raft? **Options:** A. 270 N B. 68 N C. 2300 N D. 1100 N _Answer Selections:_ - ⭕ C - ⭕ D - ⭕ B - ⭕ A
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