together. What is their final velocity? 26. What is the velocity of a 900-kg car initially moving at 30.0 m/s, just after it hits a 150-kg deer initially running at 12.0 m/s in the same direction? Assume the deer remains on the car. rou puck slanned at him at a velocity of

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Chapter1: Units, Trigonometry. And Vectors
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Question 26
Certainly! Here is a transcription suitable for an educational website:

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**Physics Problem Set: Momentum and Collisions**

**Problem 26:** 
What is the velocity of a 900-kg car initially moving at 30.0 m/s, just after it hits a 150-kg deer initially running at 12.0 m/s in the same direction? Assume the deer remains on the car.

**Problem 30:** 
A 70.0-kg ice hockey goalie, originally at rest, catches a 0.150-kg hockey puck slapped at him at a velocity of 35.0 m/s. Suppose the goalie and the ice puck have an elastic collision and the puck is reflected back in the direction from which it came. What would their final velocities be in this case? See text example 8.4. 

---

There are no graphs or diagrams accompanying these problems, so no further explanation is needed.
Transcribed Image Text:Certainly! Here is a transcription suitable for an educational website: --- **Physics Problem Set: Momentum and Collisions** **Problem 26:** What is the velocity of a 900-kg car initially moving at 30.0 m/s, just after it hits a 150-kg deer initially running at 12.0 m/s in the same direction? Assume the deer remains on the car. **Problem 30:** A 70.0-kg ice hockey goalie, originally at rest, catches a 0.150-kg hockey puck slapped at him at a velocity of 35.0 m/s. Suppose the goalie and the ice puck have an elastic collision and the puck is reflected back in the direction from which it came. What would their final velocities be in this case? See text example 8.4. --- There are no graphs or diagrams accompanying these problems, so no further explanation is needed.
Expert Solution
Step 1

Given 

Mass of car ,Mc = 900 kg 

Mass of deer, Md = 150 kg 

Initial velocity of car, Vc = 30.0 m/s 

Initial velocity of deer ,Vd = 12.0 m/s 

Both are moving in same direction ..lets right 

 

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