E104: NEWTON’S SECOND LAW OF MOTION METHODOLOGY In Part A of the experiment (Constant Mass‚ Changing Net Force)‚ place the dynamics track on the laboratory table. Make sure that it is horizontal by placing the dynamics cart on the track. If the dynamics cart does not move‚ then the track is already horizontal. Otherwise‚ make the necessary adjustments. Get the mass of the dynamics cart. Write this under m1 in Table 1. Set the first photogate at the 20-cm mark of the dynamics track and the second
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in all directions. The knee joint is a compound condylar synovial joint and allows for flexion and extension of the leg. In this experiment the angle‚ angular velocity‚ and the angular acceleration of the knee and hip were analyzed in oscillatory motion. In the first set of experiments‚ the independent oscillation of the hip and knee were isolated and observed. Then the oscillation of these joints was viewed in conjunction while a subject walked‚ speed walked‚ ran‚ and walked on their tip toes.The
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I. Objectives: • To verify Newton’s Second Law of Motion with the use of state-of-the-art devices II. Materials and Equipment: • 2.2 m Track- 1 pc • Plunger Cart- 1pc • Super pulley with clamp – 1pc • .500gram mass- 1pc • Stopwatch1- 1pc • Block ( to act as bumper)- 1pc • Beam Balance- 1 unit • String – 2m long • Set of Weights-1 set III. Data and Results Cart Mass Hanging Mass Trial1 Trial2 Trial3 Trial4 Trial5 Average Time 512g 13g 2.16s 2.15s 2.06s 2.0s 2.1s 2.09s 1016.5 27g
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the effect of the mass of the fan cart on the acceleration of the cart. The mass of the fan cart was the independent variable and acceleration was the dependent variable. We kept the speed of the cart on medium‚ and calculated the acceleration and motion. As a result‚ we had figured out that the bigger the mass the slower the acceleration‚ as we all should have known. To calculate this we used the second law of Newton (F=ma). For the first experiment we got .233 (m/s/s) with a percent error of 76%
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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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CURTIN UNIVERSITY OF TECHNOLOGY DEPARTMENT OF APPLIED PHYSICS Physical Measurement 201 DRIVEN HARMONIC OSCILLATOR Abstract The purpose of this experiment is to investigate the various aspects of harmonic motion using a Driven Harmonic Motion Analyser (DHMA). The aspects that are investigated in this experiment is the spring constant k of two springs‚ the resonant frequency‚ the damping factor‚ and the relationship between phase and resonant frequency. The value of k of the first
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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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Name _____________________________________________ date _________ period _____ Physical Science Unit 2 Motion Chapter 11 1. Motion – when something changes _________________________ 2. Distance – How far an object ____________________ 3. _________________________ - the distance an object has been moved from one position to another. 4. Example: one car travels from one town to another that is ______________ to the east. 5. another car travels around a track for __________________ and ends
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CloJasmine Johnson Dance 3 Professor Douglas May 6‚ 2013 Global Motions Review Global Motion‚ world dance performance company‚ performed in Santa Monica this past Saturday‚ May 4‚ 2013‚ at the Broad Stage in the production titled Poverty and Wealth. The performance featured twelve unique pieces that each presented a different aspect of the world diverse cultures. The performances all told the story of all cultures that represent the world and the diverse student body at Santa Monica College
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