+---------------------+---------------------+ | | Volume-Resistivity. | | Metal. | at 0° C. in C.G.S. | | | Units | +---------------------+---------------------+ |Silver (annealed) | 1,502 | |Silver (hard-drawn) | 1,629 | |Copper (annealed) | 1,594 | |Copper (hard-drawn) | 1,630[3] | |Gold (annealed) | 2,052 | |Gold (hard-drawn) | 2,090 | |Aluminium (annealed) | 3,006 | |Zinc (pressed) | 5,621 | |Platinum (annealed) | 9,035 | |Iron (annealed) | 10,568 | |Nickel (annealed) | 12,429[4] | |Tin (pressed) | 13,178 | |Lead (pressed) | 19,580 | |Antimony (pressed) | 35,418 | |Bismuth (pressed) | 130,872 | |Mercury (liquid) | 94,896[5] | +---------------------+---------------------+ TABLE III.--_Electric Volume-Resistivity of Various Metals at 0° C., or Resistance per Centimetre-cube at 0° C. in C.G.S. Units._ (Fleming and Dewar, _Phil. Mag._, September 1893.) +--------------------------+------------------+------------------+ | | Resistance | Mean Temperature | | Metal. | at 0° C. per | Coefficient | | | Centimetre-cube | between 0° C. | | | in C.G.S. Units. | and 100° C. | +--------------------------+------------------+------------------+ |Silver (electrolytic and | | | | well annealed)[6] | 1,468 | 0.00400 | |Copper (electrolytic and | | | | well annealed)[6] | 1,561 | 0.00428 | |Gold (annealed) | 2,197 | 0.00377 | |Aluminium (annealed) | 2,665 | 0.00435 | |Magnesium (pressed) | 4,355 | 0.00381 | |Zinc | 5,751 | 0.00406 | |Nickel (electrolytic)[6] | 6,935 | 0.00618 | |Iron (annealed) | 9,065 | 0.00625 | |Cadmium | 10,023 | 0.00419 | |Palladium | 10,219 | 0.00354 | |Platinum (annealed) | 10,917 | 0.003669 | |Tin (pressed) | 13,048 | 0.00440 | |Thallium (pressed) | 17,633 | 0.00398 | |Lead (pressed) | 20,380 | 0.00411 | |Bismuth (electrolytic)[7] | 110,000 | 0.00433 |
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