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Question: Water flows through a horizontal pipe at a rate of 2.4gal/s. The pipe consists of two sections of diameters 4 inch and 2 inch with a smooth reducing section. The pressure difference between the two pipe sections is measured by a mercury manometer. Neglecting frictional effects, determine the differential height of mercury between the two pipe sections.
A wire loop bent into the shape of a square with 1.50 m sides is centered on the origin of the xy-plane, What current is present in the square wire
A block is given an inital speed of 5m/s up a frictionless 20degree incline. how far up the incline does the block slide before coming to rest? Now suppose the lock is released with the same initial speed as in part a) but from the top of the icli..
Before starting this problem, review Conceptual. The force vector A has the magnitude of 75.0 newtons (N) and points due east. The force vector B has a magnitude of 101 N and points 72.9 ° north of east.
One end of a spring is attached to a wall. A 28N pull on the other end causes the spring to stretch by 2.8cm, What is the spring constant
Calculate how long a de-orbit burn must last in minutes and secondsto achieve the Shuttle’s change in altitude from 212 miles to60 miles at perigee.
write an algebraic expression for the total pressure on the diver at that point and calculate the total pressure on the diver in atms
A 5.0cm thick ice sheet covers a lake in early spring. The ice density is 910kg/m3. If the spring sun radiates an average of 155W/m2 onto the ice, how much time will it take to melt the ice
q1. a pipe open at one end has a fundamental frequency of 256 hz. a second pipeidentical to first pipe is shortened by
To simulate the effect of an earthquake on a rigid building, the base is assumed to be connected to the ground through two springs.
find the potential energy at each location below. How far from the point of the drop will the rock hit the ground.
The power output of a circuit is given by: P = i^2R = V^2/R = iV, Calculate the power output of each resistive element when a potential of 12 volts is applied
Calculate the ratio of the drag force on a jet flying at 1132 km/h at an altitude of 10.0 km to the drag force on a prop-driven transport flying at 547 km/h
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