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Titlebook: Differential Scanning Calorimetry; An Introduction for G. W. H. Höhne,W. Hemminger,H.-J. Flammersheim Book 19961st edition Springer-Verlag

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Theoretical Fundamentals of Differential Scanning Calorimeters,erential heat flow rate) is internally assigned to ΔT. Independent of whether the user obtains Δ. or .. from the respective DSC, knowledge of the functional relation between the measured signal (Δ., ..) and the quantity searched (the reaction heat flow rate Φr consumed/produced by the sample) is important for:
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Evaluation of the Performance of a Differential Scanning Calorimeter,iciency of the instrument. The characteristic data of the DSC which describe the instrument unambigously must therefore be known. They allow a decision to be taken as to whether the DSC will be suitable for the intended use, and they also make a comparison with other DSCs possible.
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Mesh and Model Adaptivity for Flow ProblemsTwo types of Differential Scanning Calorimeters (DSCs) must be distinguished:
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The DSC Curve,The DSC curve (measured curve) offers quick information on the total measuring process (Fig. 5.1). In addition to the usual measuring effects (..changes, transitions, reactions) it can be seen
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Parallel Multigrid on Locally Refined Mesheserential heat flow rate) is internally assigned to ΔT. Independent of whether the user obtains Δ. or .. from the respective DSC, knowledge of the functional relation between the measured signal (Δ., ..) and the quantity searched (the reaction heat flow rate Φr consumed/produced by the sample) is imp
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