Experiment 4
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Catégorie :Category: nCreator TI-Nspire
Auteur Author: efischbacher
Type : Classeur 3.0.1
Page(s) : 1
Taille Size: 1.74 Ko KB
Mis en ligne Uploaded: 29/04/2025 - 17:37:05
Uploadeur Uploader: efischbacher (Profil)
Téléchargements Downloads: 1
Visibilité Visibility: Archive publique
Shortlink : http://ti-pla.net/a4610580
Type : Classeur 3.0.1
Page(s) : 1
Taille Size: 1.74 Ko KB
Mis en ligne Uploaded: 29/04/2025 - 17:37:05
Uploadeur Uploader: efischbacher (Profil)
Téléchargements Downloads: 1
Visibilité Visibility: Archive publique
Shortlink : http://ti-pla.net/a4610580
Description
Fichier Nspire généré sur TI-Planet.org.
Compatible OS 3.0 et ultérieurs.
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Work by friction WORK BY FRICTION EXPERIMENT 4 " THE WORK, W, DONE BY A CONSTANT FORCE DURING A LINEAR DISPLACEMENT ALONG THEX-AXIS IS W = FX X " FX IS THE X-COMPONENT OF THE FORCE AND X IS THE OBJECTS DISPLACEMENT " W = F X " THIS EQUATION APPLIES WHEN THE FORCE IS IN THE SAME DIRECTION AS THEDISPLACEMENT " W = (F COS ¸) X " F IS THE MAGNITUDE OF THE FORCE " X IS THE MAGNITUDE OF THE OBJECTS DISPLACEMENT " ¸ IS THE ANGLE BETWEEN THE APPLIED FORCE AND SURFACE Work in General Force and Work in Inclined Plane Work of Friction F - applied force to move the car F|| - Parallel force applied on the cart f - frictional force / force of friction of the car The force up on the car must be equal to the force down the plane: F = F|| + Ff The magnitude of F is equal to the weight (w2) of the suspended mass: F = w2 = m2 g Also, F|| = mcg sin ² Therefore, Ff = F - F|| Ff = M2 g - Mcg sin ² Work of friction = Ff × d Where: M2 suspended mass Mc mass of the car d distance traveled by the car Made with nCreator - tiplanet.org
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Compatible OS 3.0 et ultérieurs.
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Work by friction WORK BY FRICTION EXPERIMENT 4 " THE WORK, W, DONE BY A CONSTANT FORCE DURING A LINEAR DISPLACEMENT ALONG THEX-AXIS IS W = FX X " FX IS THE X-COMPONENT OF THE FORCE AND X IS THE OBJECTS DISPLACEMENT " W = F X " THIS EQUATION APPLIES WHEN THE FORCE IS IN THE SAME DIRECTION AS THEDISPLACEMENT " W = (F COS ¸) X " F IS THE MAGNITUDE OF THE FORCE " X IS THE MAGNITUDE OF THE OBJECTS DISPLACEMENT " ¸ IS THE ANGLE BETWEEN THE APPLIED FORCE AND SURFACE Work in General Force and Work in Inclined Plane Work of Friction F - applied force to move the car F|| - Parallel force applied on the cart f - frictional force / force of friction of the car The force up on the car must be equal to the force down the plane: F = F|| + Ff The magnitude of F is equal to the weight (w2) of the suspended mass: F = w2 = m2 g Also, F|| = mcg sin ² Therefore, Ff = F - F|| Ff = M2 g - Mcg sin ² Work of friction = Ff × d Where: M2 suspended mass Mc mass of the car d distance traveled by the car Made with nCreator - tiplanet.org
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