A 1.65 kg falcon catches a 0.495 kg dove from behind in midair. What is their velocity after impact if the falcon's velocity is initially 29.5 m/s and the dove's velocity is 6.15 m/s in the same direction? velocity: m/s

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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**Problem Statement:**

A 1.65 kg falcon catches a 0.495 kg dove from behind in midair. What is their velocity after impact if the falcon's velocity is initially 29.5 m/s and the dove's velocity is 6.15 m/s in the same direction?

**Solution Box:**
- Velocity: [_______] m/s

**Question Credit:**
- OpenStax College Physics

---

This problem involves applying the principle of conservation of momentum in physics to calculate the resulting velocity after a collision between two birds in flight. The initial conditions including masses and velocities are provided, and the solution requires the use of the combined momentum equation:

\[ (m_1 \times v_1) + (m_2 \times v_2) = (m_1 + m_2) \times v_f \]

Where:
- \( m_1 \) and \( m_2 \) are the masses of the falcon and dove, respectively.
- \( v_1 \) and \( v_2 \) are the initial velocities of the falcon and dove, respectively.
- \( v_f \) is the final velocity after impact.
Transcribed Image Text:**Problem Statement:** A 1.65 kg falcon catches a 0.495 kg dove from behind in midair. What is their velocity after impact if the falcon's velocity is initially 29.5 m/s and the dove's velocity is 6.15 m/s in the same direction? **Solution Box:** - Velocity: [_______] m/s **Question Credit:** - OpenStax College Physics --- This problem involves applying the principle of conservation of momentum in physics to calculate the resulting velocity after a collision between two birds in flight. The initial conditions including masses and velocities are provided, and the solution requires the use of the combined momentum equation: \[ (m_1 \times v_1) + (m_2 \times v_2) = (m_1 + m_2) \times v_f \] Where: - \( m_1 \) and \( m_2 \) are the masses of the falcon and dove, respectively. - \( v_1 \) and \( v_2 \) are the initial velocities of the falcon and dove, respectively. - \( v_f \) is the final velocity after impact.
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