4. The position of a particle moving under uniform acceleration is a function of time t and acceleration a. Suppose we w
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4. The position of a particle moving under uniform acceleration is a function of time t and acceleration a. Suppose we w
4. The position of a particle moving under uniform acceleration is a function of time t and acceleration a. Suppose we write this position as x-ka" tº, where k is a dimensionless constant. Find, by dimensional analysis, the values of in and n 5. A gallon of paint covers an area of 25.0 m². What is the thickness of the paint on the wall? Give your answer in metric unit. 6. Assuming that 70% of the Earth's surface is covered with water at an average depth of 2.3 miles, estimate the mass of the water on the Earth in kilograms.
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