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The first is a new way of deploying low interest rate climate finance to enhance its impact, while the second can cost effectively generate the real cashflows needed to make environmental and developmental projects viable.
More than hot air: Ener-G-Rotors, which claims that its technology can cost effectively generate electricity from low-temperature waste heat, plans to install its first five-kilowatt sample system in December.
On the basis of preclinical and early clinical results, the question is not whether cocktails of mAbs have a bright future as therapeutics, but rather what platform is able to reproducibly and cost effectively generate efficacious concoctions that are approvable by the regulatory authorities.
These small scale projects, such as home solar systems and community renewable energy, can cost effectively generate power where it is needed and can be installed now instead of waiting years or decades for grid extensions.
Whole-genome and exome sequence data can be cost-effectively generated for the detection of rare-variant (RV) associations in families.
Genome-wide analysis of small DNA sequence tags from RNA molecules using next generation DNA sequencing systems, such as Roche/454 [5], Illumina/Solexa [6], [7], PMAGE system [8], and SOLiD system[9], [10] provides a 2 3 order of magnitude increase in the amount of sequence that can be cost-effectively generated relative to traditional technology.
Fortunately, as methods are developed to enable the deconvolution of mixed samples from second-generation sequencing runs, large numbers of mitochondrial genomes or other short genomic regions can now be quickly and cost-effectively generated.
The Sequel System is ideal for projects such as rapidly and cost-effectively generating high-quality whole genome de novo assemblies.
With this in mind, we developed a method to cost-effectively generate high-quality de novo reference sequences of large plant genomes by combining "old school" physical maps with second generation sequencing technology.
There is a need for systems allowing medium multiplexing (ten to hundreds of SNPs) with high throughput, which can efficiently and cost-effectively generate genotypes for a very large sample set (thousands of individuals).
This result demonstrates that the Illumina NGS technology can cost-effectively generate high fold coverage read data that can be aligned with most (94.02%) of the reference boxer genome regions, undoubtedly guaranteeing a much higher accuracy of SNP identification than the low-coverage (7.5) boxer genome data based on the traditional Sanger method.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com