Topic
Calorimeter
About: Calorimeter is a research topic. Over the lifetime, 5878 publications have been published within this topic receiving 77157 citations.
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01 Apr 2001-Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment
TL;DR: The RHIC zero-degree calorimeters provide common event characterization in the four heavy ion experiments which recently completed their first data taking run as mentioned in this paper, and simulations which lead to the design of these devices, teastbeam performance and initial experience at RHIC.
Abstract: The RHIC zero-degree calorimeters provide common event characterization in the four heavy ion experiments which recently completed their first data taking run. Here, we describe simulations which lead to the design of these devices, teastbeam performance and initial experience at RHIC.
181 citations
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TL;DR: In this paper, the authors present a new twin-membrane calorimeter chip for fast differential scanning calorimetry (DSC) with the Flash DSC 1 of Mettler-Toledo.
178 citations
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TL;DR: The value for the enthalpy of solution of SRM 1655 (KCl), ΔH°(500 H2O, 298.15 K) = (235.86±0.23)J·g-1 or (17.584± 0.017)kJ·mol-1, was obtained from measurements in an adiabatic calorimeter, and confirmed by measurements in a isoperibol calorimeters.
Abstract: The value for the enthalpy of solution of SRM 1655 (KCl), ΔH°(500 H2O, 298.15 K) = (235.86±0.23)J·g-1 or (17.584±0.017)kJ·mol-1, was obtained from measurements in an adiabatic calorimeter, and confirmed by measurements in an isoperibol calorimeter. Enthalpy of solution measurements are reported in the temperature range 296 K to 358 K, at molalities between 0.005 and 0.18 mol-kg-1, for various ranges of particle size up to 1000 μm, and in CO2- saturated solutions. Observations were also made relative to the hygroscopicity, removal of occluded H2O, and homogeneity of SRM 1655. Between 296 K and 303 K, ΔCp =-(2.076±0.087) J·g-1·K-1or -(154.8±6.4) J·mol-1·K-1 for the reaction of SRM 1655 in 500 H2O.
175 citations
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TL;DR: In this article, the authors present a recommendation of the GEFTA working group "Calibration of Scanning Calorimeters" allowing a precise heat and heat flow rate calibration of scanning calorimeters, largely independent of instrumental, sample related and experimental parameters.
175 citations
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TL;DR: An isothermal displacement calorimeter has been constructed and used to measure the enthalpies of mixing for the systems benzene+cyclohexane at 25 °C and benzene + carbon tetrachloride at 25°C as mentioned in this paper.
175 citations