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Friday, March 29, 2019

Spring Oscillation to Find the Spring Constant

Spring Oscillation to knock the Spring ConstantTitle Using a onslaught shaking to knock the jump off perpetual.The aim of my report is to find the K ( opening constant) by measuring the period of 10 get along oscillations with the range of mass of 0.05kg up to 0.3kg. It was been demonstrated by the reviewer and also the following instruction that Ive been wedded.This experiment in allow show and prove that with this mode acting, we goat calculate the bound constant by using the following formula,In the meantime, well be palpate that we go off get to find the funk constant, k, through this type method.What is a spring constant?Spring constant is a broadside of asperity or the ability to resist shifting under a load. It is denoted by K whereThe SI social unit for the spring constantNm-1The spring constant tells u that it is the ratio of change of squelch with respect of deflection. So in opposite words, it is directly proportional to individually other.The spri ng constant can also be known as the force constant. It is a criterion of the elasticity of the spring. In theory, the more(prenominal) than its elastic value, the more the force you will involve to act to extend the spring.For example, a short spring has a higher spring constant than that of a long spring IF the other aspects or characteristics of it are the same or equal (thickness, material).It will harbor you 10N to extend a short spring with 1cm.To extend the long spring by the same amount, it would take less force, perhaps 5N for example.Introduction on Hookes LawHookes justness is the impartiality of elasticity that was founded by the English scientist, Robert Hooke in the early 1660. It states that the extension or compression of a spring is directly proportional to the force exerted upon it.Sometimes Hookes law is formulated asF=kx where as in this expressionFis no longer the applied force but it was the equal and oppositely directed restoring force that causes elast ic materials same(p) springs to return to their legitimate forms.The law can also be show as the ratio of stress and strain. Stress is the force on unit areas within a material that develops as a result of the outwardly applied force while strain is the relative deformation produced by stress. For relatively small stresses, stress is proportional to strain. For particular expressions of Hookes law in this form, see bulk modulus shear modulus Youngs modulus.plat of the apparatus usedClear Description of the Method UsedAs can be seen from the previous page, these are the description of the method by using the apparatus from the picture and as prepared by the lecturer.At basic, set up the apparatus which demonstrated by the lecturer.Hang the first mass on the spring.Allow the mass to oscillate up and tear with a small amplitude and measure the time for ten complete oscillations.Calculate the average from both of the times sets.Find the time period T by dividing the average time by 10Repeat all of the measuring of time by 5 more times with different masses which are from 0.05g.Make a remit regarding the results that you analysed.Data compend TableGraph of T (y-axis) against m (x-axis)Analysis DiscussionThe first subject that trained to do is get all the information of the data that Ive collected from this experiment using the method and Hookes Law. Next step, all the result data were then arrange in a Microsoft Excel, which is to be completed by using the table.With the results that Ive got from the method to measure k (speed constant) and for every each of the value from the blueweed dots, (from the graph) was completed enough to its original value. Although, most of my values are in the range of 2 N/m, it is acceptable.GradientTo find the slope of the graph, firstly, we need two particular points which included 2 values from x-axis and 2 more values from y-axis.The formula to find gradient is The equation of a frontier is For example, these value s are from the graph (0.06, 0.06) (0.29, 0.46)SUBSTITUTE = 1.74 (value of my gradient) (look at my graph)Therefore it cerebrate with the equation of a line which is,Like this,Therefore the gradient is,Thus, alter the following gradient value with this to find k.Value of k (speed constant) conclusion the value of k, from the equation,The gradient that I found is 1.74N/m. Substitute it into the following gradient formula,Total value of k = 22.7NmPercentage Difference(My total original value of spring constant divided by the value of spring constant)Multiply by 100. 100 = 60.3%Accuracy and reliabilityFirst thing that we should know is that the spring constant is depended on the displacement under a load. So by the result that I have calculated with the method and the formula given to find T from the lecturer is not straight as we would expected because of the formula that we should use is .The required unit for spring constant value is the acceleration of the free fall gravi ty and the displacement of the spring. Even though we can find the constant K by using the method from our lecturer, it will not be as accurate as the one with the formula , and with measuring time on that points a lot of miss accurate because of the possibility of human error.We can also substitute into , however there is no value given for the length or displacement of the springs given, thus, giving us more uncertainties error. chit chatReasons for UncertaintiesAmplitude is different from each of the results causing it not to be precise.The disablement of finding the missing length of the spring which is not constructed by the lecturer is very important to find the spring constant.Spring constant cannot be invented because as the number of how much weight or force that we need to apply to make the spring extended by 1 molar concentration and based on the spring function.Due to the human error, the reaction of reason time of the stopwatch will never be accurate.The measuremen t of an burden from working out the oscillation is inaccurate.Improvement for UncertaintiesFirstly, we need the value of the spring length which will be easier to be calculated and comparing the destiny difference between the method that Ive used and the one with this improvement.If there is a modern technology that can be invented that can measure the length of the spring when they stretch and to determine the time of oscillation with the knowledgeability of lasers to determine the period for each oscillation.Need an instrument that can sway the pendulum before and after the 10 complete oscillations so that every each of the oscillation within both period (time and time 2) will be measured accurately.In my honest opinion, the more accurate method to find the spring constant is to measure the springs displacement kind of than using time as the unit to find k, spring constant, so we can now substitute the one we got previously to the formula Referencing ListsBray, A. Barbato, G. Levi, R. (1990). system and Practise of Force Measurement. SanDiego Academic Press Limited. 52-53.Hosch, W.L. (2006). Hookes law Retrieved from http//www.britannica.com/EBchecked/ exit/271336/Hookes-lawIris. (2009). what is spring constant? Retrieved from http//answers.yahoo.com/question/index?qid=20090902015640AAmDuLnKeller, J.F. (1993). Physics Classical and raw (2nd ed.). McGraw-hill Inc. 331-350.

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