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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Introduction: Summer vacation has long been associated with sleeping in‚ lazy days by the pool‚ hanging out with friends‚ learning the vocabulary of harmonic motion‚ constructing cheesy experiments‚ and graphing data. Summer 2012 will be no exception. First‚ I want you to read 3 pages on the internet (Step 1 in “Procedure” below). Then‚ I want you to print a worksheet from the internet (Step 2). You are to apply what you learned from reading by filling in the 29 boxes on the worksheet with as many correct
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PCS125 Lab – The Simple Pendulum Objective and Background Objective: The Objective of this experiment is to examine the simple harmonic motion and to determine the value of the acceleration due to gravity from the analysis of the period of the simple pendulum. [1] Background: There are three equations that will be used to calculate the period of motion of the simple pendulum. They are the slope of the line of the graph of T² against L‚ and the gravity of the pendulum motion. The period of the
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Q1. Outline the historical development of the models of the universe from the time of Aristotle to the time of Newton. Aristotle: Geocentric model of the universe involved a series of 56 concentric spheres to which celestial objects were attached. The Earth was not in motion as the stars showed no measureable parallax. Each planet‚ the Sun‚ and the Moon were in their own sphere and the stars were positioned on a larger sphere surrounding all the others. Ptolemy: Geocentric model of the universe
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and length would have any effect on the period of a pendulum. Hypothesis As the length‚ mass and angle of release change‚ the period (T) will change for each one of these factors. Materials Lab stand Protractor Cardboard Fishing line Stopwatch Weights Hook for weights Tape Ruler Weighing scale Logger Pro Variables Independent Angle of release Dependent Period Length of string Mass of bob Design Procedure First you have to set the lab up as seen above. Draw the protractor
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Curriculum ll the learning which is planned and guided by the school‚ whether it is carried on in groups or individually‚ inside or outside the school. (John Kerr) Outlines the skills‚ performances‚ attitudes‚ and values pupils are expected to learn from schooling. It includes statements of desired pupil outcomes‚ descriptions of materials‚ and the planned sequence that will be used to help pupils attain the outcomes. The total learning experience provided by a school. It includes the
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The Inverted Pendulum is inherently unstable‚ higher order multi-variable and highly coupled system which can be treated as typical non-linear control problem. [1] This is the benchmark for designing‚ testing‚ evaluating and comparing of different classical and contemporary control methods. The control of IP has been a research interest in the field of control engineering because it is the most difficult system being an inherently unstable and highly nonlinear. So this system became a choice of dynamic
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“The Pit and the Pendulum” Edgar Allan Poe’s “The Pit and the Pendulum” was one of his most famous works of artistic literature. With his unusually morbid writing technique‚ Poe created a story in which real fears came alive. “The Pit and the Pendulum” consists of two main themes as well as symbolism. The first theme is the terror a human goes through when being confined and sentenced to mental and physical torture‚ which may end in death. Poe shows us the fear from the narrator within the
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Using a Pendulum to Determine g Aim: To determine the rate of acceleration due to gravity using the motion of a pendulum. Hypothesis: The numerical g value measured on earth is estimated to be 9.8 ms-2 Apparatus: * Retort Stand * Boss head and clamp * Approximately 1 metre of string * 50g mass carrier or pendulum bob * Stopwatch * Metre ruler Theory: When a simple pendulum swings with a small angle‚ the mass on the end performs a good approximation of the back-and-forth
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DEPARTMENT OF MECHANICAL ENGINEERING ALL Sections must be completed using Block Capitals or typed CODE AND TITLE OF COURSEWORK Course code: MECH1008 Title: OSCILLATION OF A TORSIONAL PENDULUM STUDENT NAME: CHEW KOK HAO‚ DANIEL DEGREE AND YEAR: MENG IN MECHANICAL ENGINEERING LAB GROUP: 1 DATE OF LAB. SESSION: 03 OCT 2011 DATE COURSEWORK DUE FOR SUBMISSION: 10 OCT 2011 ACTUAL DATE OF SUBMISSION: 09 OCT 2011 LECTURERS NAME: Dr. PAUL FROMME PERSONAL TUTORS NAME: Dr. A R GREIG
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