[pic] Laboratory 1 Simple Pendulum Motion By Ryan Williams Foundation Degree Mechanical Engineering Introduction In Mechanics and Physics‚ simple harmonic motion (SHM) is a periodic motion that is neither driven on damped by external forces. An object in simple harmonic motion experiences a net force which relates to Hooke’s law. Hooke’s law states “Force is directly proportional to the displacement from the equilibrium position and acts
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1- What are the risks if the current status quo is maintained and Ron remains CEO for a few more years? Ron is 70 years old. He might be too old too hold an important rank as CEO at his age. He is ineligible for an executive role as this one because of health conditions. It would be acting as a "monarch" and lead the members of the company whether they are family or not to leave. The position Ron would be entitled to would affect the growth of the company if he were to do as he would like
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CBSE TEST PAPER-02 CLASS - IX BIOLOGY (Improvement in food Resources) 1. Weeds affect the crop plants by – (a) Killing of plants in field before they grow. (b) Dominating the plants to grow. (c) Competing for various resources of crops (plants) (d) All the above. 2. ‘Operation Flood’ in India refers to – (a) Controlling floods during rainy season. (b) Increase in milk production by development of co-operative dairy on a large scale. (c)Increase in fish production during floods.
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Analyzing Uniform Circular Motion Group Names: Zixuan He,Wendy Chen Course: SPH4U1 Teacher: Ms.Kang Due Date: 10/20/ 14 Experimental Investigation of the relationship between centripetal force(Fc) and velocity. In this lab‚ students need to design an experimental about the circular motion and measure the value of the centripetal force Equipment: A rubber stopper A straw Masses with 50g
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Uniform Circular Motion PES 115 Report Objective The purpose of this experiment is to determine the relationships between radiuses‚ mass‚ velocity and centripetal force of a spinning body. We used logger pro to accurately measure the orbital period of the spinning mass and used these measurements to determine the interrelated interactions of the specified properties and viewed the results graphically. Data and Calculations The black markings on the string are about 10 cm apart in length‚ measured
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HSC PHYSICS 2011 HSC PHYSICS 2011 PENDULUM MOTION BY NATHAN LOCKE Image taken from http://www.practicalphysics.org/go/Experiment_480.html Pendulum Motion Aim: To determine the rate of acceleration due to gravity by using a pendulum. Background Information: Equation One: T=2πlg Where T = the period of the pendulum (s). This is the time taken for the pendulum to return to its starting position. l = length of the pendulum g = the rate of acceleration due to gravity (ms-2) * In
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of the velocity is changing not the magnitude) then there must still be an acceleration. The acceleration is directed towards the center of the motion. This acceleration is call centripetal acceleration! 2.6.2 State the expression for centripetal acceleration. The acceleration of any object moving in a circle at a constant speed is given by the equation: (1) a⃗ =v2r It is important to note that centripetal acceleration is very special. It is the acceleration required for an object to move in
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Brownian motion This is‚ presumably the random drifting of particles suspended in a fluid (a liquid or a gas) .This movement was discovered and later named after botanist Robert Brown (1773-1858). He was a Scottish botanist and palaeobotanist who made important contributions (including Brownian motion) to botany largely through his pioneering use of the microscope. The scientist who made Brownian motion famous is Albert Einstein‚ who brought the phenomenon to the attention of the larger physics community
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people believe that this is only a myth created to simply illustrate Newton’s discovery. <br><br>Along with Newton’s many discoveries‚ the three laws of motion are famous. These include inertia‚ acceleration‚ and the idea that for every action‚ there is an equal and opposite reaction. Inertia is the idea that a body in motion will remain in motion‚ and a body at rest will remain at rest. For example‚ if I were to throw a baseball into the air‚ it would keep going until grasvity pulled it back down
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RIM – Research In Motion STRENGTHS Application Development: I couldn’t find much on this‚ please research on this. Brand Image: BlackBerry remains a favorite among professionals and corporate users. Email‚ calendar management‚ messaging‚ durability‚ battery life and security are the areas where BlackBerry stands out Better Hardware: Superior physical keyboards - it allows users to type without looking at the phone because of the QWERTY keypad. It is durable enough to stand up repeated
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