In the third part of the experiment, the equilibrium can be realized when the forces are generated by several masses as F = mg. In this case, the first force makes an angle with the negative horizontal axis as well as the third force as shown in the following figure. Three different measurements of the angles and the masses are given in the following table. Using the equilibrium state, find the components of the forces for each measurement.

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3-In the third part of the experiment, the equilibrium can be realized when the forces are generated by several masses as F = mg. In this case, the first force makes an angle with the negative horizontal axis as well as the third force as shown in the following figure. Three different measurements of the angles and the masses are given in the following table. Using the equilibrium state, find the components of the forces for each measurement.
3-In the third part of the experiment, the equilibrium can be realized when the forces are generated by.
several masses as F = mg. In this case, the first force makes an angle with the negative horizontal axis as well
as the third force as shown in the following figure. Three different measurements of the angles and the masses
are given in the following table. Using the equilibrium state, find the components of the forces for each
measurement.
سلام
B
0
17° 34°
26° 55°
35° 49°
m₁ (g)
m2 (g) m3 (g)
21.401 24.488
21.053
30.642 47.778
54.658
42.522 54.568 64.987
Transcribed Image Text:3-In the third part of the experiment, the equilibrium can be realized when the forces are generated by. several masses as F = mg. In this case, the first force makes an angle with the negative horizontal axis as well as the third force as shown in the following figure. Three different measurements of the angles and the masses are given in the following table. Using the equilibrium state, find the components of the forces for each measurement. سلام B 0 17° 34° 26° 55° 35° 49° m₁ (g) m2 (g) m3 (g) 21.401 24.488 21.053 30.642 47.778 54.658 42.522 54.568 64.987
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