The resultant of these three forces has magnitude 37 N . Determine, as a bearing, the angle at which the resultant of these three forces is acting. ° Page 9 ... |
(a) The diagram shows two forces acting on an object. What is the resultant force acting on the object? Tick ( ) one box. 8 N to the right. 8 N to the left. 4 ... |
The forces acting on the boat are shown in Diagram 1. The fisherman exerts a force of 300 N on the boat. The sea exerts a resistive force of 250 N on the boat. |
The total weight of the box is 3000N. The force exerted by the fork-lift truck on the box is 3500 Nupwards. What is the resultant force on the box? A. |
Practise questions – 1. Resultant Force. Q1. What is meant by the term resultant force? A single force that has the same effect as all the forces combined. |
1: Determine the magnitude and direction of the resultant forces system shown in Figure. Solution: F1x = 250 × sin45 = 176.8 N →. F1y = 250 × cos45 = 176.8 N ↑. |
A force of 10 N north and 3 N west act concurrently on an object. What is the resultant of these forces? What is the equilibrant of these forces? Q2. SFy ... |
Explain how to derive the equation relating force applied to the rate of change of momentum. Attempt questions 1-7. In 15 mins answer as many questions as you ... |
a) Determine the resultant of the following system of parallel forces. Solution: Magnitude of Resultant. R = ∑ F = 500 + 150 + 200 – 200 -350. |
Calculate the size of the initial resultant force acting on the swimmer. Initial resultant force = N. (1). Page 10 ... |
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