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Electric and Magnetic Measurements and Measuring Instruments
Frank W. Roller
No preview available - 2008
accuracy adjusted alternating current ammeter ampere apparatus armature attached balance battery calibration capacity cause Clark cell commercial condenser conductor connected copper current flowing current strength curve D'Arsonval deflection determined device difference of potential direct current disk drop dynamometer electrical electrolyte error flux frequency galva galvanometer hysteresis hysteretic inductance inserted insulated iron known latter length lines of force magnetic circuit magnetic field maximum means measured ment mercury metal meter method motor movable coil movable element moving needle number of turns obtained Ohm's law ohmmeter ohms permanent magnet placed plate pole position potential coil potentiometer ratio Referring to Fig resistance reversed rheostat rotate scale sensibility shaft shown in Fig shows shunt slide wire solenoid spring standard cell stationary swings temperature terminals tion torque tube usually varying voltage voltmeter volts watt hours wattmeter watts Wheatstone bridge winding yoke zero
Page 178 - Fig. 42 has the following construction: a wire, ab, of high resistance, low temperature coefficient and non-oxidizable metal, is secured at one end to a plate c and passed around a pulley d which is fastened to a shaft e.
Page 179 - ... equalize the strain. The rotation of d, of course, carries g with it, and g, in moving, causes the silk fiber to rotate the shaft which carries the needle. If the temperature of the air surrounding the instrument changes, a and b are affected alike, and their...
Page 1 - ... to it a quantity of 1 international coulomb. International Ohm. — Practical unit of resistance, representing' the resistance offered to an unvarying current of electricity by a column of pure mercury at the temperature of melting ice having a mass of 14-4521 grammes, a constant cross-section, and a length of 106-3 centimetres.
Page 344 - The intensity or strength of a magnetic field at any point, is measured by the force it will exert on a unit magnetic pole.
Page 52 - ... rotated. As the two coils and commutator are rotated in the direction indicated by the arrows, the two brushes rub against the segments consecutively and always make contact with the two opposite ones. The brushes...
Page 343 - ... conductor will act on a unit pole at the center of the arc to which the conductor is bent with a force of one dyne. Thus the absolute value of one CGS unit of current may be determined. 2460. When a magnetic pole is placed near another magnetic pole, the attraction (or repulsion) of the two poles is proportional to the product of the strengths of the two poles, and inversely proportional to the square of the distance between them ; so, two equal magnetic poles, which, when placed at a unit distance...
Page 4 - ... themselves in curved lines similar to those of Fig. 2; while, if the return circuit of the conductor be also poked through the card, the filings assume the alignment shown in Fig.
Page 47 - Their magnetic strength depends upon the size and permeability of the core, the number of turns of wire in the coil, and the strength of the current in it.
Page 179 - ... fine silk fiber is attached at one end to one of the arms of g, then passes around the pulley and the staff h and finally has its other extremity secured to the other arm. The arms are springy and serve to. keep the silk fibre tant.