1,762,492 research outputs found
arnab-95/se-group38-hw: v1.0.0
What's Changed
First commit by @dakshilkanakia in https://github.com/arnab-95/se-group38-hw/pull/1
Second Commit by @dakshilkanakia in https://github.com/arnab-95/se-group38-hw/pull/2
Third Commit by @dakshilkanakia in https://github.com/arnab-95/se-group38-hw/pull/3
Added setup.py and test_code.py files by @Dhanya05 in https://github.com/arnab-95/se-group38-hw/pull/4
New Contributors
@dakshilkanakia made their first contribution in https://github.com/arnab-95/se-group38-hw/pull/1
@Dhanya05 made their first contribution in https://github.com/arnab-95/se-group38-hw/pull/4
Full Changelog: https://github.com/arnab-95/se-group38-hw/commits/v1.0.
HikaruF/HW-startnewproject: Release v1.0.1 Completed version of HW project*
This release is the finalized version of the HW project for CAS 598.
A new python file was added since only Jupyter Notebook file was included before.
This release includes the python file /Jupyter notebook file to analyze population data, the dataset (CSV file) required for the analysis, and unit testing codes as well.
** needed to release again to reflect it on Zenod
Three- and Four-Site Models for Heavy Water: SPC/E-HW, TIP3P-HW, and TIP4P/2005-HW
Heavy water or deuterium oxide, D2O, is used as solvent in various biophysical and chemical experiments. To model such experiments with molecular dynamics simulations, effective pair potentials for heavy water are required that reproduce the well-known physicochemical differences relative to light water. We present three effective pair potentials for heavy water, denoted SPC/E-HW, TIP3P-HW, and TIP4P/2005-HW. The models were parametrized by modifying widely used three- and four-site models for light water, with aim of maintaining the specific characteristics of the light water models. At room temperature, the SPC/E-HW and TIP3P-HW capture the modulations relative to light water of the mass and electron densities, heat of vaporization, diffusion coefficient, and water structure. TIP4P/2005-HW captures in addition the density of heavy water over a wide temperature range
Correlation of ChIP enrichment using either anti-Su(Hw) on wild-type chromatin or anti-GFP on chromatin from Su(Hw)-GFP transgenic
The enrichment values are plotted as the arsinh transformation (approximately equivalent to the log2 scale) of the ratio of specific versus control ChIP. Correlation coefficient is 0.66. ChIP, chromatin immunoprecipitation; GFP, green fluorescent protein; Su(Hw), Suppressor of Hairy-wing.<p><b>Copyright information:</b></p><p>Taken from "Genomic mapping of Suppressor of Hairy-wing binding sites in "</p><p>http://genomebiology.com/2007/8/8/R167</p><p>Genome Biology 2007;8(8):R167-R167.</p><p>Published online 16 Aug 2007</p><p>PMCID:PMC2374998.</p><p></p
HW-related excess deaths (excluding external causes) over the 2000–2018 period and regarding the 14 most populated metropolitan regions in Brazil sorted by ED.
The second column highlights the total number of excess natural deaths estimated for the whole period. The third column shows the average mortality rate normalized by 1,000,000 people and by the number of days under HW conditions.</p
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