1. Set up the equation of the centripetal force of the moving object in both A and B. What type of variations are described in both equations? 2. Derive an equation for the squared velocity speed of the car relating both equations of centripetal force.

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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answer number one and number two
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Based on facts,
A. The centripetal force on a moving object (the car) varies jointly with its mass and its
squared velocity speed and varies inversely to the radius of the curved path.
B. The centripetal force of the car is also jointly related to the coefficient of static friction of
the tire and road, mass, and acceleration to gravity.
Now you want to investigate the possible maximum velocity speeds and possible radius of the
curved path so the car can turn safely without skidding out of a curved road.
To do this you must do and answer the following questions.
1. Set up the equation of the centripetal force of the moving object in both A and B. What
type of variations are described in both equations?
E
Derive an equation for the squared velocity speed of the car relating both equations of
centripetal force.
Y
3. In your initial ocular visit to the site, you measured the radius of the curved path that is
O
81
C
30°C Partly cloud
Transcribed Image Text:ent - Google Doc x tBnbaMng MRX4elX4tZkJ1qWu1sYjA5_VQD_8cyRk/edit Impact of the C... G how did the pande... PhET Simulation Arial New Tab tensions Help Last edit was seconds ago 11 + B I U A E | 1 2 3 Torce must be tuRCIT ITO CONSIGctation. x + 1 2. → Grade 9 Math IA#2... 4 LG ▼ IE 5 Tuazon, Kristin Misc.. == 6 Based on facts, A. The centripetal force on a moving object (the car) varies jointly with its mass and its squared velocity speed and varies inversely to the radius of the curved path. B. The centripetal force of the car is also jointly related to the coefficient of static friction of the tire and road, mass, and acceleration to gravity. Now you want to investigate the possible maximum velocity speeds and possible radius of the curved path so the car can turn safely without skidding out of a curved road. To do this you must do and answer the following questions. 1. Set up the equation of the centripetal force of the moving object in both A and B. What type of variations are described in both equations? E Derive an equation for the squared velocity speed of the car relating both equations of centripetal force. Y 3. In your initial ocular visit to the site, you measured the radius of the curved path that is O 81 C 30°C Partly cloud
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