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The angle between two forces of 38 N(Newtons) and 51 N is 87°.
Find the magnitude of the resultant force.
Calculate the solvent requirements for A single batch extraction - Two crosscurrent stages using equal amounts of benzene
Rewrite the equation with the right side completely factored.
Find the probability that there are exactly 2 misprints on a given page in the book. How about the probability that there are 2 or more misprints?
Find the rate of change of quantity with respect to price, dD/dp. How many units will consumers want to buy when the price is $25 per unit? Find the rate of change at p = 25, and interpret this result.
Given f( x) = 2/x-1 , use the four step process to find a slope predictor function m(x). Then write an equation for the line tangent to the curve at the point x = 0.
A force of 7 pounds is required to hold a spring stretched 0.1 feet beyond its natural length. How much work (in foot-pounds) is done in stretching the spring from its natural length to 0.7 feet beyond its natural length?
a farmer has 1200 feet of fence and wishes to build two identical rectangular enclosures. What should be the dimensions of each enclosure if the total area is to be a maximum?
Given a threshold value and a set of weights for a threshold gate and the values of the n Boolean variables in the input, determine the output of this gate.
Five ounces of shrimp and 3 ounces of scallops contain 45 milligrams of cholesterol less than the suggested maximum daily intake. Determine the cholesterol content in an ounce of each item.
If the part were purchased from the outside supplier, all of the direct labor cost of the part would be avoided. However, $4.70 of the fixed manufacturing overhead cost being applied to the part would continue even if the part were purchased from ..
The idea is that you exercise your muscles by stretching the spring from its natural length, which is 34 cm. If a 140 Newton force is required to keep the spring stretched to a length of 51 cm, how much work is required to stretch it from 52 cm to..
The rate of change of the frequency (f) of an electronic osillator with respect to the inductance (L) is df/dL = 80(4 + L)^-3/2, find (f) as a function of (L) if (f) = 80 Hz for L = 0H.
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