Exact(4)
In [18, 19], authors present a characterization method for generating power models within TLM, adopted to peripheral components.
This paper is concerned by a characterization method for mineral material analysis using thermal analysis i.e. Differential Scanning Calorimetric.
For real gas condensates, a characterization method for the C7+ fraction based on the one proposed by Pedersen is developed for UMR-PRU.
This paper proposes a characterization method for two supercapacitor models that are used to analyze the power and energy behavior of supercapacitors connected to constant power elements: linear capacitance model and constant capacitance model.
Similar(56)
A discussion of a proper characterization method for selecting the maximum rated junction temperature for devices operating at high temperatures is given by comparing the different testing methods: Static performance (including and excluding self-heating effects), Short Circuit Safe Operating area and High-Temperature Reverse Bias.
High resolution transmission electron microscopy was used as a primary characterization method for Fe3O4/oleic acid- core/shell nanostructure with dimensions not exceeding 20 nm, according to our previous studies [15, 16].
In addition to providing an effective characterization method for related DNA sequences, the signatures elucidate putative regulatory aspects of DNA repair pathways, which are notably under-characterized.
In addition to providing an effective characterization method for related DNA sequences, the signatures elucidate putative regulatory aspects of DNA repair pathways.
A new robust characterization method for high spatial resolution FTIR microscopy, using vibration band patterns to obtain specific characteristics for qualitative analysis, is introduced in the present study.
Raman scattering is a well-accepted characterization method for evaluating the degree of structural order of carbonaceous materials, using the ratio of the integrated intensity of the D band (ID) to that of the G band (IG) [11].
We investigated the efficiency of a high-throughput probe characterization method for optimization of an allele-specific hybridization assay.
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