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psl.
( a ) The pressure of the wind on a plane area varies jointly as the area and the square of the velocity of the wind . If the pressure on one square foot is one pound when the velocity of the wind is 16 miles per hour , what is the ...
( a ) The pressure of the wind on a plane area varies jointly as the area and the square of the velocity of the wind . If the pressure on one square foot is one pound when the velocity of the wind is 16 miles per hour , what is the ...
psl.
( a ) State exactly the result of increasing the pressure on a given quantity of air , the temperature remaining constart . ( b ) In making a barometer a small quantity of air has been left in the space above the mercury The tube used ...
( a ) State exactly the result of increasing the pressure on a given quantity of air , the temperature remaining constart . ( b ) In making a barometer a small quantity of air has been left in the space above the mercury The tube used ...
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( b ) Explain why boiling occurs at a definite temperature , and why that temperature depends on the atmospheric pressure . 6. In laying steel rails 30 ft . long , how much space must be left between each two , if the temperature at the ...
( b ) Explain why boiling occurs at a definite temperature , and why that temperature depends on the atmospheric pressure . 6. In laying steel rails 30 ft . long , how much space must be left between each two , if the temperature at the ...
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... ( b ) Its gas density compared with air , and ( c ) The weight of one litre as a gas at normal temperature and pressure . 6. Write the equilibrium equation for a solution of bismuth trichloride in water , and explain fully ( 1 ) how ...
... ( b ) Its gas density compared with air , and ( c ) The weight of one litre as a gas at normal temperature and pressure . 6. Write the equilibrium equation for a solution of bismuth trichloride in water , and explain fully ( 1 ) how ...
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( b ) Apply these equations to find the direction of a blow struck by a body capable of rotation about a fixed axis , so that no pressure results on the axis . Find also the relation between the magnitude of the blow and the resulting ...
( b ) Apply these equations to find the direction of a blow struck by a body capable of rotation about a fixed axis , so that no pressure results on the axis . Find also the relation between the magnitude of the blow and the resulting ...
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