A 65 kg man is being pulled away from a building on fire as shown in the figure. Calculate the tension T1 on the left side of the rope, in newtons, if the man is in static equilibrium.

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A 65 kg man is being pulled away from a building on fire as shown in the figure. Calculate the tension T1 on the left side of the rope, in newtons, if the man is in static equilibrium. 

The image illustrates a firefighter rescue scenario using principles of physics. It shows the following details:

1. **Wall and Fire**: On the left, a brick wall is depicted with flames suggesting a fire emergency.

2. **Person Being Rescued**: A person is hanging from a ledge on the wall, positioned beneath the flames.

3. **Firefighter**: A firefighter is extending a rescue pole towards the person, standing in a raised platform, possibly an aerial lift.

4. **Angles and Forces**:
   - **Tension (T₁)**: The tension in the pole from the wall to the person is labeled as "T₁," angled at 15° with respect to the vertical wall.
   - **Tension (T₂)**: The tension from the firefighter’s pole to the person is labeled as "T₂," angled at 10° with respect to the horizontal plane.

The schematic emphasizes the angular forces in play during a rescue operation, demonstrating the importance of tension direction and magnitude in safely retrieving someone from a hazardous situation.
Transcribed Image Text:The image illustrates a firefighter rescue scenario using principles of physics. It shows the following details: 1. **Wall and Fire**: On the left, a brick wall is depicted with flames suggesting a fire emergency. 2. **Person Being Rescued**: A person is hanging from a ledge on the wall, positioned beneath the flames. 3. **Firefighter**: A firefighter is extending a rescue pole towards the person, standing in a raised platform, possibly an aerial lift. 4. **Angles and Forces**: - **Tension (T₁)**: The tension in the pole from the wall to the person is labeled as "T₁," angled at 15° with respect to the vertical wall. - **Tension (T₂)**: The tension from the firefighter’s pole to the person is labeled as "T₂," angled at 10° with respect to the horizontal plane. The schematic emphasizes the angular forces in play during a rescue operation, demonstrating the importance of tension direction and magnitude in safely retrieving someone from a hazardous situation.
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