subject
Physics, 24.12.2020 16:40 rstredway7693

A cylindrical tank of radius R, filled to the top with a liquid, has a small hole in the side, of radius r, at distance d below the surface. Find an expression for the volume flow rate through the hole. A 4.0-mm-diameter hole is 1.0 m below the surface of a 2.0-m-diameter tank of water. What is the rate, in mm/min, at which the water level will initially drop if the water is not replenished?

ansver
Answers: 2

Another question on Physics

question
Physics, 21.06.2019 14:30
The velocity of a curling stone is due east. what will be the direction of the momentum of the curling stone as it moves?
Answers: 1
question
Physics, 21.06.2019 15:30
Acurve connects the data points that are plotted. (physical science chapter 11 motion)
Answers: 1
question
Physics, 22.06.2019 22:00
On mars a rock falls an unknown vertical distance from a resting position and lands in a crater. if it takes the rock 2.5 seconds to fall, how high is the cliff the rock fell from? mars' surface gravity is 3.8 m/s2.
Answers: 2
question
Physics, 22.06.2019 23:00
Acommon technique in analysis of scientific data is normalization. the purpose of normalizing data is to eliminate irrelevant constants that can obscure the salient features of the data. the goal of this experiment is to test the hypothesis that the flux of light decreases as the square of the distance from the source. in this case, the absolute value of the voltage measured by the photometer is irrelevant; only the relative value conveys useful information. suppose that in part 2.2.2 of the experiment, students obtain a signal value of 162 mv at a distance of 4 cm and a value of 86 mv at a distance of 5.7 cm. normalize the students' data to the value obtained at 4 cm. (divide the signal value by 162.) then calculate the theoretically expected (normalized) value at 5.7 cm.
Answers: 2
You know the right answer?
A cylindrical tank of radius R, filled to the top with a liquid, has a small hole in the side, of ra...
Questions
question
Mathematics, 31.08.2019 19:30