On another planet that you are exploring, a large tank isopen to the atmosphere and contains ethanol. A horizontal pipe of crosssectionalarea 9.0 * 10-4 m2 has one end inserted into the tank justabove the bottom of the tank. The other end of the pipe is open to theatmosphere. The viscosity of the ethanol can be neglected. You measurethe volume flow rate of the ethanol from the tank as a function of thedepth h of the ethanol in the tank. If you graph the volume flow ratesquared as a function of h, your data lie close to a straight line that hasslope 1.94 * 10-5 m5/s2. What is the value of g, the acceleration of afree-falling object at the surface of the planet?
On another planet that you are exploring, a large tank isopen to the atmosphere and contains ethanol. A horizontal pipe of crosssectionalarea 9.0 * 10-4 m2 has one end inserted into the tank justabove the bottom of the tank. The other end of the pipe is open to theatmosphere. The viscosity of the ethanol can be neglected. You measurethe volume flow rate of the ethanol from the tank as a function of thedepth h of the ethanol in the tank. If you graph the volume flow ratesquared as a function of h, your data lie close to a straight line that hasslope 1.94 * 10-5 m5/s2. What is the value of g, the acceleration of afree-falling object at the surface of the planet?
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On another planet that you are exploring, a large tank is
open to the atmosphere and contains ethanol. A horizontal pipe of crosssectional
area 9.0 * 10-4 m2 has one end inserted into the tank just
above the bottom of the tank. The other end of the pipe is open to the
atmosphere. The viscosity of the ethanol can be neglected. You measure
the volume flow rate of the ethanol from the tank as a function of the
depth h of the ethanol in the tank. If you graph the volume flow rate
squared as a function of h, your data lie close to a straight line that has
slope 1.94 * 10-5 m5/s2. What is the value of g, the acceleration of a
free-falling object at the surface of the planet?
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