Three forces of magnitudes F,-4.0 N , F;=6.0 N, and Fy=8.0 N are applied to a block of mass m=2.0 kg, initialy at rest, at angles shown on the diagram. In this problem, you will determine the resultant (net) force by combining the three individual force vectors. All angles should be measured counterclockwise. A)Find the magnitude of the resultant F, = F; + F; + F, B) Find magnitude and direction C) Magnitude and direction of the acceleration D) How far (in meters) will the block move in 5.0s? Recall that it starts from rest.

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Three forces of magnitudes F,=4.0 N, F,=6.0 N, and F3=8.0 N are applied to a block of mass m=2.0 kg, initially
at rest, at angles shown on the diagram. In this problem, you will determine the resultant (net) force by combining
the three individual force vectors. All angles should be measured counterclockwise.
325°
25
A)Find the magnitude of the resultant F, = F, + F, + F,
B) Find magnitude and direction
C) Magnitude and direction of the acceleration
D) How far (in meters) will the block move in 5.0s? Recall that it starts from rest.
Transcribed Image Text:Three forces of magnitudes F,=4.0 N, F,=6.0 N, and F3=8.0 N are applied to a block of mass m=2.0 kg, initially at rest, at angles shown on the diagram. In this problem, you will determine the resultant (net) force by combining the three individual force vectors. All angles should be measured counterclockwise. 325° 25 A)Find the magnitude of the resultant F, = F, + F, + F, B) Find magnitude and direction C) Magnitude and direction of the acceleration D) How far (in meters) will the block move in 5.0s? Recall that it starts from rest.
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