simple harmonic motion lab report conclusionshriner funeral ritual

Harmonic motions are found in many places, which include waves, pendulum motion, & circular motion. This was done by mapping the max position values of a series of 7 oscillations to their corresponding time value. This was proved experimentally with incredible accuracy. Conclusion: Effects the spring constant and the mass of the oscillator have on the characteristics of the motion of the mass. PDF The Simple Pendulum - Florida Gulf Coast University 15.1 Simple Harmonic Motion - University Physics Volume 1 - OpenStax of the spring constant. This conclusion meets our objective to find the relationship between Mass and F in a spring. The negative sign in Equation 1 indicates that the direction of Let the speed of the particle be 'v0' when it is at position p (at a distance x from the mean position O). record in order to take data for a Hooke's Law experiment when the spring-mass If you do not stretch the spring does not affect any power installed on the block, i.e. S/n Total length measured Number of oscillation between measured length Average wavelength of one oscillation Calculated speed Time of one oscillation (T) Frequency (F) we say that the mass has moved through one cycle, or oscillation. The spring force must balance the weight of the added mass We also found that our measurement of \(g\) had a much larger uncertainty (as determined from the spread in values that we obtained), compared to the \(1\)% relative uncertainty that we predicted. This page of the essay has 833 words. Investigate the length dependence of the period of a pendulum. }V7 [v}KZ . @%?iYucFD9lUsB /c 5X ~.(S^lNC D2.lW/0%/{V^8?=} y2s7 ~P ;E0B[f! We will determine the spring constant, values. The value of mass, and the the spring constant. , The next part, you will determine the period, T, of oscillation caused by two springs attached to either side of a sliding mass. What is the uncertainty in the mass measurements? In this lab, we will observe simple harmonic motion by studying masses on springs. This cookie is set by GDPR Cookie Consent plugin. Sign in|Recent Site Activity|Report Abuse|Print Page|Powered By Google Sites, Lab 3: Simple Harmonic motions Spring/Mass Systems Lab. However, you may visit "Cookie Settings" to provide a controlled consent. These cookies will be stored in your browser only with your consent. Simple Harmonic Motion Lab Report Free Essay Example At the University of Birmingham, one of the research projects we have been involved in is the detection of gravitational . We are using the do-it-yourself , simple pendulum as the materials to determine the value of gravitational acceleration and, investigate the relationship between lengths of pendulum to the period of motion in simple, harmonic motion. Another variable we care about is gravity g, and then we are able to change the equation from T to g as follows: =2 (Equation 1) . Hooke's Law and Simple Harmonic Motion Lab Report - StuDocu The position of the mass before the spring is charged, the path of the mass, the peak of the oscillation, as well as the force the mass and the spring exert on each other. 1.1 Theoretical Background There are various kinds of periodic motion in nature, among which the sim- plest and the most fundamental one is the simple harmonic motion, where the restoring force is proportional to the displacement from the equilbrium position and as a result, the position of a particle depends on time a the sine (cosine) function. x}xT{y%3yN2 s2'LB$ 9yL $(E\hjo1hVk[qV#2s>^o~Nck X? The purpose of this lab experiment is to study the behavior of springs in static and dynamic situations. oscillation of a mass-spring system. means the period will also increase, thereby requiring more time for the The string is clamped, and when it is displaced, it . Simple Harmonic Motion. c. Project works: Research work (survey and mini research) innovative work or experiential learning connection to theory and application, 0.5 credit hr spent in field work. for an individual spring using both Hooke's Law and the PDF Lab 1: damped, driven harmonic oscillator 1 Introduction Whatever you put into the conclusion must be something, which the data you measured will prove or support. the spring will exert a force on the body given by Hooke's Law, namely. The same thing should happen if the mass stays constant and the spring constant is doubled. ?? Each person should experiment (MS Excel format): Enter TA password to view answers to questions from this P14: Simple Harmonic Motion - Mass on a Spring 012-07000A p. The block is released, follows the trajectory shown, and strikes the floor a horizontal distance D from the edge of the table. for 14-16. This is consistent with the fact that our measured periods are systematically higher. Simple harmonic motion is governed by a restorative force. , For example in Figure 3, the initial position of When a mass is added to the spring it takes the length of . This cookie is set by GDPR Cookie Consent plugin. It should be noted that the period of download the Lab Report Template The values were subtracted by one another to give a period the results are shown in table 2.1. Simple harmonic motion lab report conclusion. V Conclusion This Damped Harmonic Motion Lab Report - 838 Words | Studymode This movement is described with a capacity of vibration (which is always positive) and the time the league (the time it takes the body to work full vibration) and frequency (number of vibrations per second) and finally phase, which determines where the movement began on the curve, and have both frequency and time constants league either vibration and phase capacity are identified by primary traffic conditions. . Then a motion sensor was setup to capture the movement of the mass as it traveled through its oscillations. Simple harmonic motion is important in research to model oscillations for example in wind turbines and vibrations in car suspensions. The relative uncertainty on our measured value of \(g\) is \(4.9\)% and the relative difference with the accepted value of \(9.8\text{m/s}^{2}\) is \(22\)%, well above our relative uncertainty. After this data was collected we studied to determine the length of the period of each oscillation. , Each person in the group . 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The reason why, has a negative value is to show that the force exerted by the spring is in the opposite direction of. or the slotted ones? Performance cookies are used to understand and analyze the key performance indexes of the website which helps in delivering a better user experience for the visitors. Well occasionally send you promo and account related email. It was, found that a longer pendulum length would result, in a longer period and that the period of the, pendulum was directly proportional to the square, root of the its length. to some final position, Write the kinetic, potential and total energy of a baseball having a mass of 0.145kg held 10 meters. The cookie is used to store the user consent for the cookies in the category "Other. We thus expect that we should be able to measure \(g\) with a relative uncertainty of the order of \(1\)%. We recorded these oscillations with data studio for about 10 seconds. Once such physical system where If you use part of this page in your own work, you need to provide a citation, as follows: Essay Sauce, Simple Harmonic Motion lab report. and fill in the relevant information In Simple harmonic motion, the mean position is a stable equilibrium. Now we were ready to test, One partner would have control of the movementmade to the pendulum, another partner recorded the process. In SHM, we are interested in its period of oscillation. Don't use plagiarized sources. In the first part of this lab, you will determine the period, T, of the spring by . Calculation and Result: Some of the examples, of physical phenomena involving periodic motion are the swinging of a pendulum, string, vibrations, and the vibrating mass on a spring. Figure 5.38 (a) The plastic ruler has been released, and the restoring force is returning the ruler to its equilibrium position. body to move through one oscillation. Guidelines for a Physics Lab Reports A laboratory report has three main functions: (1) To provide a record of the experiments and raw data included in the report, (2) To provide sufficient information to reproduce or extend the data, and (3) To analyze the data, present conclusions and make recommendations based on the experimental work. (See. The simple mass-spring system assumes that the spring is massless, or at least it has a mass that is much smaller than the masses added to the spring. The cookie is set by the GDPR Cookie Consent plugin and is used to store whether or not user has consented to the use of cookies. Introduction to simple harmonic motion review - Khan Academy Lab report no 2 pemdulum phyisc 212 1. %PDF-1.7 = ln A0 / A1 All of our essays are donated in exchange for a free plagiarism scan on one of our partner sites. section 20362. We repeat this experiment also 2-3 time, after that we start the calculation and the measurement. Also, you must find the uncertainty in the period, kinetic energy, and potential energy. 3: Dashpot (an oil-filled cylinder with a piston) It will be interesting to understand what gives the mass the oscillating property.It should be a combination of the springs properties and the sheer amout of mass it self. However, you may not have changed the spring constant, and if you didnt change it and measure what happened to the time T when you did, you cannot put that proportionality into your conclusion. or the change in the position; or both? oscillating body and the spring constant, Subject-Physices-Professor V. Hooke's Law and Simple Harmonic Motion Lab Report Introduction: This lab is set up for us to to be able to determine the spring constant with two different methods and the gravitational acceleration with a pendulum. If the mass is tripled, t squared should triple also. Conclusion: Each of the reasons for errors 10 0 obj Simple Pendulum lab report - Experiment: Simple Harmonic Motion Simple /Registry (Adobe) Simple harmonic motion | IOPSpark But opting out of some of these cookies may affect your browsing experience. This experiment was designed with an intention of gaining a deeper understanding. Accessibility StatementFor more information contact us atinfo@libretexts.orgor check out our status page at https://status.libretexts.org. 3 0.20 5 21.30 17.73 0.18 19.05 13.57 0.33 As the stiffness of the spring increases (that is, as be sure to rename the lab report template file. SIMPLE HARMONIC MOTION:MASS ON SPRING Lab Report - Studentshare Then when the spring is charged with additional potential energy, by increasing the length to, the spring will exert whats called a restoring force which is defined as, is a spring constant. Damped Harmonic Motion Lab Report. In this lab we will study three oscillating systems that exhibit nearly ideal simple harmonic motion. If the body in Figure 4 is displaced from its equilibrium position some Essay Sauce, Simple Harmonic Motion - lab report . . By clicking Accept All, you consent to the use of ALL the cookies. Download Free PDF. 1: Rectangular beam clamped one one end and free on the other They must be answered by In this lab, we will observe simple harmonic motion by studying masses on springs. as "5 Gas Law.doc". obey Hooke's Law? Fig 4. b) To investigate the relationship between lengths of the pendulum to the period of motion in simple harmonic motion. 206Conclusion Sample-2004 206ConSam. How many data points will you take for this experiment? the system is balanced and stable. Simple harmonic motion is a motion that repeats itself every time, and be constant movement vibration amplitude, fit the wheel with an offset from the body into balance and direction is always subject to the balance The body motion. This has a relative difference of \(22\)% with the accepted value and our measured value is not consistent with the accepted value. >> The law states that F = -ky, where F is in this case Mg and y equals the negative displacement. Data studio and a force sensor, and a position sensor will be used to get accurate measurements of these values. Additional materials, such as the best quotations, synonyms and word definitions to make your writing easier are also offered here. No- 3. In a simple pendulum, moment of inertia is I = mr, so 2 T =. A good example of SHM is an object with mass m attached to a spring on a frictionless surface, as shown in Figure 15.2.2. Sample conclusion for a pendulum experiment lab - DePaul University Convert the magnitude to weight, The customer uses their computer to go the Find Your Food website and enters their postcode. Give us your email address and well send this sample there. The exercises carried out involved recording the position of . /Supplement 0 This is shown below in Graph 1 below is for all the masses. Keeping the mass constant (either smaller or larger bob) and the amplitude (om <10') constant, determine the period for five different lengths (see Eq.

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