F2 = 125 N %3D 3 20% 60° 45° 60° F = 400 N %3D
Q: Three coplanar forces act at a point as shown in the diagram below. Determine the magnitude and…
A: Three forces and their angles are given . To find = resultant force .
Q: Three forces F, F2 and F, act on a ring that is in equilibrium. Which of these statements is not…
A:
Q: 15. Draw and label a force vector diagram for the individual forces on wire 1, and on wire 2. What…
A: Given that:I1=6 AI2=3 AI3=4 AI4=12 A (there is a typing error, we are assuming this following the…
Q: 16. Three particles are placed in a line. The left particle has a charge of - 67 × 10-6 C, the…
A:
Q: If the angle between two equal forces (F) is 90 degree, what is the magnitude of the resultant? O a.…
A:
Q: 1. Determine the magnitude of the resultant force and its direction, measured counterclockwise from…
A:
Q: Determine the resultant of concurrent coplanar forces system shown in fig.
A: We need to determine the resultant vector with geometry and drawing.
Q: 8. Two forces of 40N and 80N act at an angle of 120° to each other. Find the magnitude and direction…
A: Given data, Forces, F1=40 NF2=80 N The angle between them, θ=120°
Q: 13 Two forces act concurrently on an object. The magnitude of the resultant will be greatest when…
A: Let us assume the magnitude of the two forces acting from the same point (concurrent) be equal i.e.
Q: 1. Two Riders players tackle the Argos quarterback in a football game. The first Riders player…
A:
Q: 2) Workmen are trying to free an SUV stuck in the mud. y B (350 N) To extricate the vehicle, they…
A: In the given problem, four different forces are acting on the SUV. These are A=600 N, acting along…
Q: Replace the three forces shown by an equivalent force-couple system at point A. If the forces are…
A:
Q: An inclined plane with one sloping side that changes the direction of the input force is called a…
A: The wedges are the moving inclined planes that are driven under loads to lift, or into a load to…
Step by step
Solved in 3 steps
- 6. Robots are pulling on a toy at the same time and the toy is not moving. Robot A is applying 10.235 N to the toy at an angle of 155°. Robot B is applying 24.762N to the toy at an angle of 68°. What is the magnitude and direction Robot C must exert in order for the toy to exist in a state of equilibrium?2. Twoforces,oneofmagnitude2Nandoneofmagnitude3N,areappliedto the ring of a force table. The directions of both forces are unknown. Which of the following best describes the magnitude of the equilibrium force? Justify your answer.a. FE ≤ 5N b. 2N≤FE≤3N c. FE ≥ 3Nd. 1N≤FE≤5N e. FE ≤ 2N15. At what angle 8 must the 800-lb force be applied in order that the resultant R of the two forces has a magnitude of 2000 lb? For this condition determine the angle ß between R and the vertical. 1400 lb 800 lb
- 8. Consider a 50-N weight suspended by two wires as shown. If the magnitude of vector F, is 35 N, find the angle a and the magnitude of vector F2. 60 50PHY 210 Problems September 11 2013 1. Determine the resultant (R) of the two forces F₁ and F2, knowing y = 10° and = 15°. +y Y F₁ = 40N Ф F₂ = 35N T +x Tiv) Three 0.5 N pulling forces are applied from a common point with one on the +x axis. If the angle between each subsequent force vector is 30 degrees, what is the magnitude of the balancing force? a. 1 N b. 1.366 N c. 0.433 N d. 1.5 N
- 1. There are four forces acting on a pole, one points north, one points south, one points east, and the last one points west. Suppose that the initial magnitudes of these forces are all equal, at which direction you should increase the force magnitude so that the equilibrant force will point at NW? 2. The direction of the body being accelerated by an applied force must the same as the direction of the applied force. This is one of the premises of what law of motion?6. If FB = 570 N and FC = 740 N, Determine the magnitude of the resultant force acting on the flag pole. Determine the co-ordinate direction angle 'a' and 'b' and 'y' symbols of the resultant force. Reference of symbols attached below3. Use vector components to find the magnitude and direction of a force vector needed to balance the forces of 400 N @ 145 degrees and 400 N @ 260 degrees.