In the image, three men are shown carrying a load using sticks and a suspended bag. At first glance, it may seem they share the burden equally. But take a closer look. The trick lies not in how heavy the load is—but in how it’s distributed.

Breaking Down the Setup

  • Man 1 (Green Shirt): Positioned at the front, the knot holding the bag is closest to him.

  • Man 2 (Red Shirt): In the middle but not bearing any visible tension.

  • Man 3 (Blue Shirt): At the rear, farthest from the load.

The rope holding the weight hangs closer to Man 1, meaning the center of mass leans toward him. Physics tells us that the man closer to the load’s pivot point bears more force. The farther you are from the pivot, the less weight you carry.

The Physics Behind Weight Distribution

This setup resembles a lever. When a weight hangs closer to one end, that side supports most of the force. Since the load is near Man 1, he supports a majority of it. Man 3 is so far back that he barely contributes.

Man 2? He’s just holding the stick. There’s no strain visible, and his arms are relaxed. This visual cue confirms he carries no weight at all—he’s simply balancing the bar.

The Correct Answer: Man 1 Carries the Most Weight

If you guessed Man 1, you’re right.

The stick bows slightly downward near him, proving that’s where the pressure builds. Man 3’s end is elevated—he supports very little. This is a clear application of mechanical advantage and torque.

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