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Boxes \( A \) and \( B \) are in contact on a horizontal fictionless surface (Figure 1). Box \( A \) has mass 21.0 kg and box \( B \) has mass 7.0 kg . A horizontal force of 130 N is exerted on box \( A \) \( A \).

Ask by Gibbs Frazier. in the United States
Feb 24,2025

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Answer

Both boxes accelerate to the right at about 4.64 m/s². Box A exerts a contact force of approximately 32.5 N on Box B.

Solution

We start by noting that since the boxes are in contact and there’s no friction, they will accelerate together when the 130 N force is applied to Box A. Step 1. Find the Total Acceleration The total mass of the system is   m_total = m_A + m_B = 21.0 kg + 7.0 kg = 28.0 kg. Using Newton’s second law:   a = F_net / m_total = 130 N / 28.0 kg ≈ 4.64 m/s². So, both boxes accelerate to the right with an acceleration of about 4.64 m/s². Step 2. Determine the Contact Force Between the Boxes Now, let’s examine Box B. The only horizontal force acting directly on Box B is the contact force from Box A. We call this force F_contact. Since Box B has a mass of 7.0 kg and accelerates at 4.64 m/s², we apply Newton’s second law to Box B:   F_contact = m_B × a = 7.0 kg × 4.64 m/s² ≈ 32.5 N. Thus, Box A exerts a contact force of about 32.5 N on Box B. Step 3. (Optional) Verify for Box A For Box A, two forces act in the horizontal direction: the applied 130 N to the right and the contact force from Box B (which pushes back on A) to the left. According to Newton’s second law for Box A:   Net force on A = 130 N – F_contact. Setting this equal to m_A × a:   130 N – F_contact = 21.0 kg × 4.64 m/s² ≈ 97.4 N. Solving for F_contact gives:   F_contact = 130 N – 97.4 N ≈ 32.6 N, which is consistent with our earlier calculation (any slight differences are due to rounding). In summary: • The acceleration of both boxes is approximately 4.64 m/s². • The contact force between the boxes (the force that Box A exerts on Box B) is about 32.5 N.

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Bonus Knowledge

Did you know that the concept of Newton's laws of motion forms the foundation of classical mechanics? Essentially, they explain how forces affect the motion of objects. In this case, when the 130 N force is applied to box \( A \), both boxes will accelerate together since they are in contact. This means their combined mass will determine their acceleration as per \( F = ma \), where \( F \) is the total force applied, \( m \) the total mass, and \( a \) the acceleration. As for real-world application, think about how this scenario reflects how we move multiple objects. For instance, when pushing a heavy cart (box \( A \)) with a lighter box (box \( B \)) on top, the force applied to the cart is transmitted to the box on top too. This principle is used in everything from loading vehicles to designing conveyor belts in factories, where understanding how force and mass interact can improve efficiency and effectiveness in operations!

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