aeo =g sin(0) calculate the following: • The mass of the glider expressed in SI units of mass is kg + • The initial speed of the glider is : m/s + • Experimental acceleration is given as: Om?/s Om?/s? Om/s Om/s? a) Calculate the value of theoretical acceleration? Om/s3 Om?/s? Om?/s Om/s? b) Calculate the difference between experimental and theoretical acceleration? • If the angle of inclination increases to 02-6°, and experimental acceleration is given as: aexp= 1.03 m/s?, calculate the following: c) Calculate the new value of theoretical acceleration? Om/s? Om?/s? Om?/s Om/s d) Calculate the difference between experimental and theoretical acceleration?

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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The glider has a mass of 245 g and is released
from rest from one end of the air track where
the angle of inclination is 6,=2°.
From your experimental data the value of
experimental acceleration is equal to 0.332
m/s?.
Knowing that the formula to calculate the value
of theoretical acceleration is given as:
a heo =g sin(0) calculate the following:
• The mass of the glider expressed in SI units of
mass is :
kg +
• The initial speed of the glider is:
m/s +
• Experimental acceleration is given as:
Om?/s
Om2/s?
Om/s3
Om/s?
a) Calculate the value of theoretical
acceleration?
Om/s
Om/s?
Om?/s
Om/s?
b) Calculate the difference between
experimental and theoretical acceleration?
• If the angle of inclination increases to 82=6°,
and experimental acceleration is given as: aexp=
1.03 m/s?, calculate the following:
c) Calculate the new value of theoretical
acceleration?
Om/s?
Om?/s?
Om?/s
Om/s3
d) Calculate the difference between
experimental and theoretical acceleration?
Transcribed Image Text:The glider has a mass of 245 g and is released from rest from one end of the air track where the angle of inclination is 6,=2°. From your experimental data the value of experimental acceleration is equal to 0.332 m/s?. Knowing that the formula to calculate the value of theoretical acceleration is given as: a heo =g sin(0) calculate the following: • The mass of the glider expressed in SI units of mass is : kg + • The initial speed of the glider is: m/s + • Experimental acceleration is given as: Om?/s Om2/s? Om/s3 Om/s? a) Calculate the value of theoretical acceleration? Om/s Om/s? Om?/s Om/s? b) Calculate the difference between experimental and theoretical acceleration? • If the angle of inclination increases to 82=6°, and experimental acceleration is given as: aexp= 1.03 m/s?, calculate the following: c) Calculate the new value of theoretical acceleration? Om/s? Om?/s? Om?/s Om/s3 d) Calculate the difference between experimental and theoretical acceleration?
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