Units and Physical ConstantsMacmillan and Company, 1879 - 175 sider |
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Side 12
... give the name radian to the angle whose arc is equal to radius . Thus , instead of " an angle whose value in circular measure is e , " we shall be able to say an angle of 0 radians . " 66 being force per unit of area , is of dimensions ...
... give the name radian to the angle whose arc is equal to radius . Thus , instead of " an angle whose value in circular measure is e , " we shall be able to say an angle of 0 radians . " 66 being force per unit of area , is of dimensions ...
Side 16
... from one place to another . A spring - balance , it is true , gives a direct measure of force ; but its indications are too rough for purposes 16 [ CHAP . UNITS AND PHYSICAL CONSTANTS . Three independent units, § 15 Their selection, §
... from one place to another . A spring - balance , it is true , gives a direct measure of force ; but its indications are too rough for purposes 16 [ CHAP . UNITS AND PHYSICAL CONSTANTS . Three independent units, § 15 Their selection, §
Side 21
... the above equation by 2 we have , for the length of the seconds ' pendulum , in centimetres , 7 = 99 * 3562-2536 cos 2 – 00000034 . - At sea - level these formulæ give the following values CHAPTER III MECHANICAL UNITS, 21-29.
... the above equation by 2 we have , for the length of the seconds ' pendulum , in centimetres , 7 = 99 * 3562-2536 cos 2 – 00000034 . - At sea - level these formulæ give the following values CHAPTER III MECHANICAL UNITS, 21-29.
Side 22
Joseph David Everett. At sea - level these formulæ give the following values for the places specified : - Latitude . Value of g . Value of 1 . Equator , Latitude 45 ° , 45 Munich , 48 9 6000 978.10 99'103 980 : 61 99'356 980.88 99'384 ...
Joseph David Everett. At sea - level these formulæ give the following values for the places specified : - Latitude . Value of g . Value of 1 . Equator , Latitude 45 ° , 45 Munich , 48 9 6000 978.10 99'103 980 : 61 99'356 980.88 99'384 ...
Side 24
... weight of the body -that is , gm dynes , which , multiplied by the distance worked through , gives gmh ergs as the work done . But the velocity acquired is such that 22gh . Hence we 24 [ CHAP . UNITS AND PHYSICAL CONSTANTS .
... weight of the body -that is , gm dynes , which , multiplied by the distance worked through , gives gmh ergs as the work done . But the velocity acquired is such that 22gh . Hence we 24 [ CHAP . UNITS AND PHYSICAL CONSTANTS .
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Acetic ether BALFOUR STEWART body Brewster C.G.S. system C.G.S. units Cambridge Carbonic acid cell centimetre Chemistry chloride coefficients of resilience College compression Copper Crown 8vo cubic centim denote density dimensions distance dynes dynes per square earth's electricity electromagnetic units electromotive force electrostatic unit ELEMENTARY TREATISE employed equal equation ergs Ether farad Fcap following table fundamental units given Glass gramme gramme-degree gravity Hence Hydrogen indices of refraction intensity Iron liquid magnetic mean megadyne per square mercury multiplied Nitrous oxide numerical value numerous Illustrations Owens College oxide P. G. TAIT Philosophy Physical Platinum pound pressure Professor quotient radius ratio refraction Regnault resistance rhombus Royal Science scientific Second Edition shear silver solid specific heat specimens square centim strain stress substance sulphate temperature thermal capacity tion unit mass unit of length unit of mass value of g velocity volume weight wire Young's modulus Zinc ΙΟ
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