Lessons in elementary physics1884 |
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Side 11
... upwards in such circumstances , there being no earth . We reply , that two different substances are of the same mass when the same force produces in each , after it has acted on it for one second of time , the same velocity . We shall ...
... upwards in such circumstances , there being no earth . We reply , that two different substances are of the same mass when the same force produces in each , after it has acted on it for one second of time , the same velocity . We shall ...
Side 16
Balfour Stewart. at the pole and at the equator . If I leap vertically upwards at the pole , I alight upon the place from which I sprang , and if I do the same thing at the equator the same result will follow . While I am in the air I am ...
Balfour Stewart. at the pole and at the equator . If I leap vertically upwards at the pole , I alight upon the place from which I sprang , and if I do the same thing at the equator the same result will follow . While I am in the air I am ...
Side 29
... upward tending force equal to 49 , or half that of gravity , must therefore have been applied to the system . Now , as the whole force of gravity is represented by the weight of the body , the upward tending force or resistance will be ...
... upward tending force equal to 49 , or half that of gravity , must therefore have been applied to the system . Now , as the whole force of gravity is represented by the weight of the body , the upward tending force or resistance will be ...
Side 31
... Q , acting at B and C , and an upward force R , acting at the fulcrum A , representing the resistance interposed by the fulcrum to the weight of P and Q , and hence , of course , equal to the sum of LESS . V. 31 LAWS OF MOTION .
... Q , acting at B and C , and an upward force R , acting at the fulcrum A , representing the resistance interposed by the fulcrum to the weight of P and Q , and hence , of course , equal to the sum of LESS . V. 31 LAWS OF MOTION .
Side 33
... upwards to the stone will be very much less than that with which the stone moves down to meet the earth . But the momentum of approach will be the same both for the stone and the earth . Let us next suppose that a cannon while in the ...
... upwards to the stone will be very much less than that with which the stone moves down to meet the earth . But the momentum of approach will be the same both for the stone and the earth . Let us next suppose that a cannon while in the ...
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Vanlige uttrykk og setninger
49 metres 98 metres action actual energy angle annealed applied atmosphere attraction ball beam carbonic acid carriage centre of gravity chemical affinity column compression cubic cubic centimetre cylinder denote density displacement distance double earth electricity energy of position equilibrium experiments fact fall fluid focus force of gravity force tending friction gases glass grammes hence increase instance kilogrammes latent heat law of motion length let us suppose liquid luminous mass means mercury metres per second miles mirror molecular momentum moving force oscillation particles pendulum piston plane plate pressure produce proportional ray of light represent resistance rest side solid sound space passed specific gravity specific heat square centimetre steam stone string substance temperature thermometer tube unit upwards vapour various velocity of 98 vertical vessel vibration visible energy visible motion volume wave wave-length weight whole zinc
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