1. A box is hung with two ropes as shown below. Make a model and find the force each rope puts on the box. 30⁰ 25 kg 60⁰

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**Two More Second Law Problems**

1. **Problem 1: Tension in Ropes**
   - A box with a mass of 25 kg is suspended using two ropes. The angles the ropes make with the vertical are 30° and 60°, respectively. 
   - Objective: Create a model to determine the tension in each rope holding the box.

   *Diagram Details*: 
   - The box weighing 25 kg is shown suspended in the middle. 
   - Two ropes are attached to the box, forming angles of 30° and 60° with the horizontal direction. 

2. **Problem 2: Acceleration on an Incline**
   - A box with a mass of 9 kg is placed on a 6.0 m ramp inclined at an angle of 15° to the horizontal.
   - Objective: Create a model to calculate the acceleration of the box as it slides down the ramp, assuming there is no friction. 

   *Diagram Details*: 
   - The box weighing 9 kg is shown on an inclined plane.
   - The incline is 6.0 m long and makes an angle of 15° with the horizontal.
Transcribed Image Text:**Two More Second Law Problems** 1. **Problem 1: Tension in Ropes** - A box with a mass of 25 kg is suspended using two ropes. The angles the ropes make with the vertical are 30° and 60°, respectively. - Objective: Create a model to determine the tension in each rope holding the box. *Diagram Details*: - The box weighing 25 kg is shown suspended in the middle. - Two ropes are attached to the box, forming angles of 30° and 60° with the horizontal direction. 2. **Problem 2: Acceleration on an Incline** - A box with a mass of 9 kg is placed on a 6.0 m ramp inclined at an angle of 15° to the horizontal. - Objective: Create a model to calculate the acceleration of the box as it slides down the ramp, assuming there is no friction. *Diagram Details*: - The box weighing 9 kg is shown on an inclined plane. - The incline is 6.0 m long and makes an angle of 15° with the horizontal.
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