Exploring Hooke’s Law and the Constant (K): Data Collection and Processing: Data of the Hanging Masses and the Caused Displacement of the Spring Mass Hanging (kg): Displacement of Spring Including Original Length (m): 0.050 0.413 0.100 0.451 0.150 0.458 0.200 0.485 0.250 0.504 0.300 0.522 0.350 0.543 0.400 0.567 0.450 0.587 0.500 0.610 0.550 0.633 0.600 0.655 0.650 0.674 0.700 0.698 Original Length of Spring (m): 0.392 Table 2.1 Constant K: 22.5kg/ms2 *Refer to attached graph and calculations.
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V. Analysis and Conclusion In this experiment we studied the elastic properties of the spring‚ the Hooke’s Law and the total work done on the spring when it is being stretch. Also‚ this experiment tackles the elasticity and deformation of a material that obeys the Hooke’s Law which states that “Within the elastic limit of a body‚ the deforming force is directly proportional to the elongation of the body.” Our experiment is to determine the force constant of the spring. The calculations used throughout
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spring stretches the spring by an amount‚ ∆x‚ measured from the equilibrium position – the position of the free end when no force is applied. With the force applied to the spring‚ the spring now comes to rest in a new position. If we apply Newton’s Laws to the mass attached to the spring in the figure shown below‚ it is clear that the gravitational force of the mass on the spring must be balanced by a force from the spring in order for the spring-mass system to remain at rest. This force is called
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Due Date: March 12‚ 2013 Introduction Hooke’s law states that force is directly proportional to the displacement of the spring that has been stretched or compressed from the equilibrium position. The force that takes place is referred to as a restoring force because it acts on an object to return it to a state of equilibrium. This is Hooke’s Law. It can be shown as: F = -kx In the first formula ---> F is the force of weight k is the spring constant x is the displacement In this
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Physics 1405 Name(s)_____________________ HOOKE’S LAW and SIMPLE HARMONIC MOTION INTRODUCTION Any motion that repeats itself in equal intervals of time is called periodic motion. A special form of periodic motion is called Simple Harmonic Motion (SHM). Simple Harmonic Motion is defined as oscillatory motion in which the resultant force on the oscillating body at any instant is directly proportional to its displacement from the rest position and opposite in direction to its motion
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Robert Hooke Georgia Priest 23 September 2011 1st period Biology Honors On July 18‚ 1635‚ Robert Hooke was born in the small community of Freshwater on the Isle of Wright. His father John Hooke was a clergyman‚ as a child Hooke had ingenuity for mechanics. When Hooke was thirteen his father committed suicide by hanging himself. Hooke was left one hundred pounds in inheritance from his father. Robert went to London after the death of his father as an apprentice to the painter Sir Peter
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Robert Hooke Physics is the center of anything and everything in this universe. It is why we always come down after jumping up. It is why our Earth circles the Sun and the Moon circles our Earth. Behind all of these answers through equations stand many men and women who have been patient and determined enough to figure it all out. One of these fine beings would be a man by the name of Robert Hooke. Robert Hooke was born in July of 1635. He was the son of John Hooke‚ a churchman‚ who
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Hooke’s Law Lab Report Please complete the following tables and questions and submit them on Blackboard. Observations Data Table 1. Force (N) Top position of spring‚ cm Bottom position of spring‚ cm Elongation‚ cm Bottom reading – top reading Data Point 1 .8 4 5 1 6Data Point 2 1.3 4 6 2 Data Point 3 1.5 4 7 3 Data Point 4 2 4 8 4 Data Point 5 2.2 4 9 5 Data Point 6 2.5 4 10 6 Data Point 7 2.7 4 11 7 Data Point 8 3 4 12 8 Data Point 9 3.3 4 13 9 Data Point 10 3.6 4 14 10 Data Table 2.
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reputation for hard work and scrupulous honesty following the great fire of 1666‚ but eventually becoming ill and party to jealous intellectual disputes. These issues may have contributed to his relative historical obscurity. Robert Hooke was at one time simultaneously the curator of experiments of the Royal Society and a member of its council‚ Gresham Professor of Geometry and a Surveyor to the City of London after the Great Fire of London‚ in which capacity he appears to have performed
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Erica Chan Sinh Nguyen Dat Nguyen Wed 2:00-5:00 02/19/2014 OHM’S LAW I. Purpose The purpose of this lab is to help understand how voltage‚ current and resistance are closely related to one another. The outcome from this lab is to be able to differentiate when to use ohmmeter and voltmeter for the individual circuit. II. Theory Ohm’s Law states that the electric current through a material is directly proportional to the voltage across a piece of material (such as wire) while the resistance is held
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