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A total cost targeting method based on pinch technology for heat exchanger network (HEN) synthesis is presented, which combines existing targeting methods for the grass-roots design problem with a new method for simultaneous targeting of network area and pumping power cost (i.e., optimum pressure drops of streams).
To this end, researchers have developed targeted methods for manipulating the rate of mRNA degradation.
A total cost targeting method for the heat exchanger network (HEN) design problem is presented, which combines existing targeting methods for grass-roots design with a new method for targeting pumping costs (i.e., optimizing the pressure drops of streams).
In this section, we will discuss nonselective and selective molecular targeting methods for further improving the "permeability and retention" effect for large molecular agents in cancer tissue based on modification of these three conditions.
Our results provide an experimental foundation for the development of group II intron-based gene targeting methods for higher organisms.
The current targeting method for a heat exchanger network identifies an optimum point from material and energy balance prior to design.
During the last years, single analyte methods for the detection and quantification of mycotoxins are more and more replaced by multi-target methods for the simultaneous determination of different yet co-occurring classes of mycotoxins.
Early multi-target methods for the determination of mycotoxins in food dealing with a large number of analytes (e.g. [ 7]) employed time periods for which only certain analytes are measured to allow enough dwell time for each analyte.
A comprehensive review about the analysis of mycotoxins at trace levels by LC-MS/MS is provided by [ 7], and an overview of the multi-target methods for the simultaneous determination of mycotoxins in different commodities in recent years is given by [ 8].
The enormous diversity of polymers with respect to molecular weight, molecular architecture, and – in the case of copolymers – also the content and arrangement of dissimilar monomers requires well-targeted methods for the separation of the different species that are contained in a given sample.
A multi-target method for the determination of 191 fungal metabolites in almonds, hazelnuts, peanuts and pistachios was developed.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com