Galileo thought about whether acceleration should be defined as the rate of change of velocity over time or as the rate of change in velocity over distance. He chose the former, so let’s use the name “vroomosity” for the rate of change of velocity over distance. For motion of a particle on a straight line with constant acceleration, the equation v = v i + at gives its velocity v as a function of time. Similarly, for a particle’s linear motion with constant vroomosity k , the equation v = v i + kx gives the velocity as a function of the position x if the particle’s speed is v i at x = 0. (a) Find the law describing the total force acting on this object of mass m . Describe an example of such a motion or explain why it is unrealistic for (b) the possibility of k positive and (c) the possibility of k negative.
Galileo thought about whether acceleration should be defined as the rate of change of velocity over time or as the rate of change in velocity over distance. He chose the former, so let’s use the name “vroomosity” for the rate of change of velocity over distance. For motion of a particle on a straight line with constant acceleration, the equation v = v i + at gives its velocity v as a function of time. Similarly, for a particle’s linear motion with constant vroomosity k , the equation v = v i + kx gives the velocity as a function of the position x if the particle’s speed is v i at x = 0. (a) Find the law describing the total force acting on this object of mass m . Describe an example of such a motion or explain why it is unrealistic for (b) the possibility of k positive and (c) the possibility of k negative.
Solution Summary: The author explains the law that describes the total force act on the object of mass m.
Galileo thought about whether acceleration should be defined as the rate of change of velocity over time or as the rate of change in velocity over distance. He chose the former, so let’s use the name “vroomosity” for the rate of change of velocity over distance. For motion of a particle on a straight line with constant acceleration, the equation v = vi + at gives its velocity v as a function of time. Similarly, for a particle’s linear motion with constant vroomosity k, the equation v = vi + kx gives the velocity as a function of the position x if the particle’s speed is vi at x = 0. (a) Find the law describing the total force acting on this object of mass m. Describe an example of such a motion or explain why it is unrealistic for (b) the possibility of k positive and (c) the possibility of k negative.
Air temperature of 37 °C increases swimming pool temperature of 2.55 °C. What is the fraction of the water in the pool must evaporate during this time to carry enough energy to keep the temperature of the pool constant?
4186 J/(kg°C) = specific heat of water
2,430,000 (2.43 x 106) J/kg = latent heat of vaporization for the water in the pool.
The iceberg requires 7.4 x 1020 Joules of energy to melt it completely. It absorbs energy from the Sun at a constant average rate of 88 Watts/m2. The total surface area of iceberg exposed to the sunlight is 12 billion (1.2 x 1010) square meters.
How long will it take for sunlight to melt the entire iceberg in years
Chapter 6 Solutions
Physics for Scientists and Engineers, Technology Update, Hybrid Edition (with Enhanced WebAssign Multi-Term LOE Printed Access Card for Physics)
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