Experiment 5
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Catégorie :Category: nCreator TI-Nspire
Auteur Author: efischbacher
Type : Classeur 3.0.1
Page(s) : 1
Taille Size: 1.44 Ko KB
Mis en ligne Uploaded: 29/04/2025 - 17:39:08
Uploadeur Uploader: efischbacher (Profil)
Téléchargements Downloads: 1
Visibilité Visibility: Archive publique
Shortlink : http://ti-pla.net/a4610586
Type : Classeur 3.0.1
Page(s) : 1
Taille Size: 1.44 Ko KB
Mis en ligne Uploaded: 29/04/2025 - 17:39:08
Uploadeur Uploader: efischbacher (Profil)
Téléchargements Downloads: 1
Visibilité Visibility: Archive publique
Shortlink : http://ti-pla.net/a4610586
Description
Fichier Nspire généré sur TI-Planet.org.
Compatible OS 3.0 et ultérieurs.
<<
Experiment 5: Simple Harmonic Motion Dr. Dipti Samantaray Period and Frequency in Oscillations Where: T = Time for 1 oscillation m = Load k = Spring constant Y0 = Equilibrium position before weight Y1 = New equilibrium after the mass is attached y = Y0 - Y1 A very common type of periodic motion is called simple harmonic motion (SHM). A system that oscillates with SHM is called a simple harmonic oscillator. The angular frequency (É) depends only on the force constant and the mass, andnot the amplitude. The angular frequency is defined as: É = 2À / T which yields an equation for the period of the motion. Made with nCreator - tiplanet.org
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Compatible OS 3.0 et ultérieurs.
<<
Experiment 5: Simple Harmonic Motion Dr. Dipti Samantaray Period and Frequency in Oscillations Where: T = Time for 1 oscillation m = Load k = Spring constant Y0 = Equilibrium position before weight Y1 = New equilibrium after the mass is attached y = Y0 - Y1 A very common type of periodic motion is called simple harmonic motion (SHM). A system that oscillates with SHM is called a simple harmonic oscillator. The angular frequency (É) depends only on the force constant and the mass, andnot the amplitude. The angular frequency is defined as: É = 2À / T which yields an equation for the period of the motion. Made with nCreator - tiplanet.org
>>