Specific Heat Measurements in 1–10°K Range Using Continuous Warming Method
- 1 April 1966
- journal article
- research article
- Published by AIP Publishing in Review of Scientific Instruments
- Vol. 37 (4), 499-512
- https://doi.org/10.1063/1.1720226
Abstract
We describe a system for measuring specific heats by a continuous warming method with accuracy at least as high as has been attained with the usual heat burst method. Using this system data can be obtained very rapidly, even by unskilled operators, and reduced to final form with straightforward analysis and small amounts of computer time. We analyze the method in terms of simple models which take into account uncertainties in the stray heat, thermal gradients in the specimen assembly, the effects of electrical noise and finite bandwidth in the thermometer circuits, and their relation to the measurement of small heat capacities. Data on lead, mercury, and gallium are presented which indicate that the models lead to fair estimates of the anticipated scatter once certain characteristics of the apparatus are known. The observed scatter varied from 0.3% for gallium, where electrical noise in the amplifiers was a dominant factor, to less than 0.1% for lead and mercury, where no single factor was conspicuous. In addition, completely independent measurements were reproducible to about 0.1%. In these experiments the measuring intervals were never greater than 1% of the absolute temperature.Keywords
This publication has 25 references indexed in Scilit:
- Low-Temperature Specific Heats ofAlloysPhysical Review B, 1965
- Low-Temperature Heat Capacities of Indium and TinPhysical Review B, 1965
- Heat Capacity of Glycerol Glass Between 1.5° and 4°K. Use of Glycerol as a Heat Exchange Medium in Low-Temperature CalorimetryJournal of Applied Physics, 1965
- Atomic Heats of Cesium, Rubidium, and Lithium Between 0.35 and 2°KPhysical Review B, 1964
- Low-Temperature Heat Capacity of a Superconducting Alloy of AluminumPhysical Review B, 1962
- Specific Heats of Some Cubic Superconducting Titanium-Molybdenum Alloys between 1.1 and 4.3°KPhysical Review B, 1961
- A CRYOSTAT FOR MEASURING SPECIFIC HEATS BETWEEN 1 AND 4.2° K USING A MECHANICAL THERMAL SWITCHCanadian Journal of Physics, 1959
- He3 Cryostat for Measuring Specific HeatReview of Scientific Instruments, 1958
- Atomic Heats of Copper, Silver, and Gold from 1°K to 5°KPhysical Review B, 1955
- A new semi-automatic apparatus for measurement of specific heats and the specific heat of sodium between 55 and 315° KProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1954