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    Force and Spring Balance

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    SAFETY…………………….……….………..........................3 LABORATORY RULES……………………………………………….…..4 CONTENS OF ASSIGNMENT…………………………………………….5 EXPERIMENT 1: TENSILE TEST…..…………………………………...6 EXPERIMENT 2: SHEAR FORCE……………………………..…………8 2. 2.1 2.2 3. 4. 4. 5. 6. EXPERIMENT 3: BENDING MOMENT…………………………………10 EXPERIMENT 4: FORCES IN FRAME…………………………………..12 EXPERIMENT 5: HOOKS LAW…………………………………………..13 EXPERIMENT 6: MODULUS OF RIGIDITY…………………………….14 7. 8. 9. 3 1. INFORMATION ABOUT

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    Equilibrium: Force Table

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    experimented for the equilibrant force‚ conditions and center of gravity. Our results showed consideration as to disregarding other forces than weight and tension. 1. Introduction Equilibrium is a state of balance in which it is a condition where there is no change in the state of motion of a body. Equilibrium may be observed on objects which are at rest and also to objects which are moving at a constant velocity. Two conditions for equilibrium are that the net force acting on the object is zero

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    Force vector. Equilibrium. Moments. 1. Determine the resultant force and state whether the object is at equilibrium. sin52=0.788; cos52=0.616; sin25=0.423; cos25=0.906; sin27=0.454; cos27=0.891; sin26=0.438; cos26=0.899; 2. If the mass of the plane is 1700kg‚ and drag force is 50kN‚ determine what should be the aerodynamic lift force and engine’s thrust so that the plane flew with constant velocity. 3. The spring was extended to 3cm under mass of 500g. Determine

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    CENTRIPETAL FORCE ON A PENDULUM OBJECTIVE To measure centripetal force exerted on a pendulum using the force sensor bob and in so doing compare this value determined by force calculations based on the height of the pendulum. THEORY Newton’s laws of motion are the basis for this experiment. Newton’s first law of motion states that a body in motion will remain in motion unless acted upon by an external force. Newton’s second law of motion states that the rate of momentum of a body is dependent on

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    work on the principles of gravity and air resistance and in effect‚ terminal velocity. Air resistance (air friction) Air resistance is an upward force exerted on a body while it is in the air and is the result of air molecules that come in contact with the surface of the falling object. This force attempts to counteract gravity and other downwards forces influencing a body. The amount of air resistance encountered by an object is dependent on two factors: speed of the object and surface area. Air

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    Five forces model

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    The Five Competitive Forces Model In this section‚ the structure of our company will be explained using the five competitive forces model developed by Harvard professor Michael Porter. These forces include: rivalry among existing firms‚ threat of new entrants‚ bargaining power of buyers‚ threat of substitutes and bargaining power of suppliers. Each of these forces will have their own distinctive effect on determining industry profitability. Intensity of rivalry among competitors: Recently there

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    Force and Lever Arm

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    size of the wheel in comparison to the axle it is placed on greatly affects the torque (or the pulling force) as well as the pulling distance. If you larger wheels and a smaller axle‚ you will achieve greater distance but less power. Therefore‚ you must find a balanced ratio between the size of the wheel and the axle because if it has too little power‚ it will not end up not moving at all. 5. Explain how Newton’s first‚ second‚ and third laws apply to the performance of your vehicle. Newton’s

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    Physics Lab force

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    yields two integrations: x = x0+v0t+1/2at2 v = v9+at These two expressions show the relationship between position‚ velocity‚ and acceleration at a given time. Newton’s 2nd law states that the acceleration of an object depends on the net force acting upon the object and the mass of the object. If there were no friction in this experiment‚ then the acceleration of the glider would be equal to acceleration of gravity multiplied by the angle between the air track and the horizontal table (g

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    five forces model

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    Force 4: Buyer Power Buyer power is one of the two horizontal forces that influence the appropriation of the value created by an industry (refer to the diagram). The most important determinants of buyer power are the size and the concentration of customers. Other factors are the extent to which the buyers are informed and the concentration or differentiation of the competitors. Kippenberger (1998) states that it is often useful to distinguish potential buyer power from the buyer’s willingness

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    Composition of Concurrent Forces Abstract— The experiment aims to show the relationship of different forces acting at the same time by using different variables namely‚ the equilibrant force‚ the resultant‚ and the given forces Fa and Fb. The equilibrant force is the force that establishes equilibrium while the resultant is the addition of the given forces and is also the opposite of the equilibrant. The objective of the experiment is to determine the resultant of two forces experimentally‚ to be

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