Check Your Understanding A 550-kg sports car collides with a 2200-kg truck, and during the collision, the net force on each vehicle is the force exerted by the other. If the magnitude of the truck's acceleration is 5.4 2 10 m/s, what is the magnitude of the sports car's acceleration?

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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Hi,

Please I need help with question 5.4 find attached.

Thank you.

Aisha.

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5.4 **Check Your Understanding**  
A 550-kg sports car collides with a 2200-kg truck, and during the collision, the net force on each vehicle is the force exerted by the other. If the magnitude of the truck’s acceleration is 10 m/s², what is the magnitude of the sports car’s acceleration?

**Component Form of Newton’s Second Law**  
We have developed Newton’s second law and presented it as a vector equation in Equation 5.3. This vector equation can be written as three component equations:

\[ \sum \vec{F}_x = m \vec{a}_x \quad \sum \vec{F}_y = m \vec{a}_y \quad \sum \vec{F}_z = m \vec{a}_z \]  

(5.5)

---

*Note: There are equations presented as part of the explanation of Newton’s Second Law components.*
Transcribed Image Text:Sure! Here is the transcribed text from the image: --- 5.4 **Check Your Understanding** A 550-kg sports car collides with a 2200-kg truck, and during the collision, the net force on each vehicle is the force exerted by the other. If the magnitude of the truck’s acceleration is 10 m/s², what is the magnitude of the sports car’s acceleration? **Component Form of Newton’s Second Law** We have developed Newton’s second law and presented it as a vector equation in Equation 5.3. This vector equation can be written as three component equations: \[ \sum \vec{F}_x = m \vec{a}_x \quad \sum \vec{F}_y = m \vec{a}_y \quad \sum \vec{F}_z = m \vec{a}_z \] (5.5) --- *Note: There are equations presented as part of the explanation of Newton’s Second Law components.*
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