PENYELESAIAN NUMERIK SISTEM GETARAN TEREDAM DENGAN METODE RUNGE KUTTA ORDE EMPAT

A numerical solution of damped vibration has been done by using the fourthorder Runge-Kutta method in Microsoft Office Excel worksheet. The vibration system is modelled by a second-order differential equation that describes the damped vibration of mass � connected to a rigid support by a linier s...

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Main Authors: , RIZQAN DESMAN, , Drs. Eko Sulistya, M.Si.
Format: Thesis
Published: [Yogyakarta] : Universitas Gadjah Mada 2013
Subjects:
ETD
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author , RIZQAN DESMAN
, Drs. Eko Sulistya, M.Si.
author_facet , RIZQAN DESMAN
, Drs. Eko Sulistya, M.Si.
author_sort , RIZQAN DESMAN
collection UGM
description A numerical solution of damped vibration has been done by using the fourthorder Runge-Kutta method in Microsoft Office Excel worksheet. The vibration system is modelled by a second-order differential equation that describes the damped vibration of mass � connected to a rigid support by a linier spring with coefficient ��, and a vibration damper with coefficient ��. The second-order differential is tranformed to two first-order differential equation and then solved to find the three variables, namely the position �, velocity ��, and acceleration ��� as a function of time �. The soution is presented in the form of list of values and in graphs in Microsoft Office Excel worksheet.
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spelling oai:generic.eprints.org:1239992016-03-04T08:42:34Z https://repository.ugm.ac.id/123999/ PENYELESAIAN NUMERIK SISTEM GETARAN TEREDAM DENGAN METODE RUNGE KUTTA ORDE EMPAT , RIZQAN DESMAN , Drs. Eko Sulistya, M.Si. ETD A numerical solution of damped vibration has been done by using the fourthorder Runge-Kutta method in Microsoft Office Excel worksheet. The vibration system is modelled by a second-order differential equation that describes the damped vibration of mass � connected to a rigid support by a linier spring with coefficient ��, and a vibration damper with coefficient ��. The second-order differential is tranformed to two first-order differential equation and then solved to find the three variables, namely the position �, velocity ��, and acceleration ��� as a function of time �. The soution is presented in the form of list of values and in graphs in Microsoft Office Excel worksheet. [Yogyakarta] : Universitas Gadjah Mada 2013 Thesis NonPeerReviewed , RIZQAN DESMAN and , Drs. Eko Sulistya, M.Si. (2013) PENYELESAIAN NUMERIK SISTEM GETARAN TEREDAM DENGAN METODE RUNGE KUTTA ORDE EMPAT. UNSPECIFIED thesis, UNSPECIFIED. http://etd.ugm.ac.id/index.php?mod=penelitian_detail&sub=PenelitianDetail&act=view&typ=html&buku_id=64117
spellingShingle ETD
, RIZQAN DESMAN
, Drs. Eko Sulistya, M.Si.
PENYELESAIAN NUMERIK SISTEM GETARAN TEREDAM DENGAN METODE RUNGE KUTTA ORDE EMPAT
title PENYELESAIAN NUMERIK SISTEM GETARAN TEREDAM DENGAN METODE RUNGE KUTTA ORDE EMPAT
title_full PENYELESAIAN NUMERIK SISTEM GETARAN TEREDAM DENGAN METODE RUNGE KUTTA ORDE EMPAT
title_fullStr PENYELESAIAN NUMERIK SISTEM GETARAN TEREDAM DENGAN METODE RUNGE KUTTA ORDE EMPAT
title_full_unstemmed PENYELESAIAN NUMERIK SISTEM GETARAN TEREDAM DENGAN METODE RUNGE KUTTA ORDE EMPAT
title_short PENYELESAIAN NUMERIK SISTEM GETARAN TEREDAM DENGAN METODE RUNGE KUTTA ORDE EMPAT
title_sort penyelesaian numerik sistem getaran teredam dengan metode runge kutta orde empat
topic ETD
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AT drsekosulistyamsi penyelesaiannumeriksistemgetaranteredamdenganmetoderungekuttaordeempat