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Open Research Data
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In situ FTIR (Fourier transform infrared spectroscopy) coupled with High Temperature Reaction Chamber - photocatalytic decomposition of ethylene on TiO2 (titanium dioxide)/Ni (nickel) foam
Open Research DataThis dataset contains in situ FTIR (Fourier transform infrared spectroscopy) measurement data collected during photocatalytic decomposition of ethylene using TiO2 (titanium dioxide) on nickel foam, TiO2 on the layer of KBr and TiO2 on nickel foam in the presence of radical scavengers. The detailed equipment and measurement data was described in "readme...
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Iodometric titration analysis for BaCe0.6Zr0.2Y0.2-xFexO3-δ (x = 0.02, 0.05, 0.1)
Open Research DataThe determination of oxygen nonstoichiometry in the series of BaCe0.6Zr0.2Y0.2-xFexO3-δ (x = 0.02, 0.05, 0.1) compounds was carried out using the iodometric titration method.
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Insitu FTIR (Fourier transform infrared spectroscopy) coupled with High Temperature Reaction Chamber - photocatalytic decomposition of acetaldehyde on TNR@Ni-foam
Open Research DataThis dataset contains insitu FTIR (Fourier transform infrared spectroscopy) measurement data collected during photocatalytic decomposition of acetaldehyde using TNR@Ni-foam composites. The detailed equipment and measurement data was described in "readme FTIR insitu.txt" file.
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Impact of binary mixtures of diclofenac and β-estradiol on endocrine processes of the model organism Saccharomyces Cerevisiae (using XenoScreen YES/YAS test) - with controls
Open Research DataData shown in data set illustrate the results of the endocrine processes of mixtures of methylparaben and β-estradiol with controls for YES agonsit, YES antagonist, YAS agonist and YAS antagonist. S cerevisiae is used as a model organism in the monitoring of endocrine disruptors in environmental and reference samples in Xenometrix® systems - XenoScreen®. ...
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Impact of binary mixtures of 17α-ethinylestradiol and β-estradiol on endocrine processes of the model organism Saccharomyces Cerevisiae (using XenoScreen YES/YAS test) - with controls
Open Research DataData shown in data set illustrate the results of the endocrine processes of mixtures of 17α-ethinylestradiol and β-estradiol with controls for YES agonsit, YES antagonist, YAS agonist and YAS antagonist. S cerevisiae is used as a model organism in the monitoring of endocrine disruptors in environmental and reference samples in Xenometrix® systems...
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Impact of binary mixtures of methylparaben and β-estradiol on endocrine processes of the model organism Saccharomyces Cerevisiae (using XenoScreen YES/YAS test) - with controls
Open Research DataData shown in data set illustrate the results of the endocrine processes of mixtures of methylparaben and β-estradiol with controls for YES agonsit, YES antagonist, YAS agonist and YAS antagonist. S cerevisiae is used as a model organism in the monitoring of endocrine disruptors in environmental and reference samples in Xenometrix® systems - XenoScreen®. ...
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Impact of binary mixtures of methylparaben and buthylparaben on endocrine processes of the model organism Saccharomyces Cerevisiae (using XenoScreen YES/YAS test) - with controls
Open Research DataData shown in data set illustrate the results of the endocrine processes of mixtures of methylparaben and buthylparaben with controls for YES agonsit, YES antagonist, YAS agonist and YAS antagonist. S cerevisiae is used as a model organism in the monitoring of endocrine disruptors in environmental and reference samples in Xenometrix® systems - XenoScreen®....
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Impact of binary mixtures of buthylparaben and 17α-ethinylestradiol on endocrine processes of the model organism Saccharomyces Cerevisiae (using XenoScreen YES/YAS test) - with controls
Open Research DataData shown in data set illustrate the results of the endocrine processes of mixtures of buthylparaben and 17α-ethinylestradiol with controls for YES agonsit, YES antagonist, YAS agonist and YAS antagonist. S cerevisiae is used as a model organism in the monitoring of endocrine disruptors in environmental and reference samples in Xenometrix® systems...
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Impact of binary mixtures of methylparaben and 17α-ethinylestradiol on endocrine processes of the model organism Saccharomyces Cerevisiae (using XenoScreen YES/YAS test) - with controls
Open Research DataData shown in data set illustrate the results of the endocrine processes of mixtures of methylparaben and β-estradiol with controls for YES agonsit, YES antagonist, YAS agonist and YAS antagonist. S cerevisiae is used as a model organism in the monitoring of endocrine disruptors in environmental and reference samples in Xenometrix® systems - XenoScreen®. ...
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Influence of novolac phenolic resins and butadiene rubbers on airborne wear particles emission from train brake friction materials against steel brake discs with roughness of Ra2.5
Open Research DataThree train brake materials based on straight or resorcinol-modified novolac phenolic resin and nitrile or styrene-butadiene rubber were tested during pin-on-disc tribological tests. Each material was tested and retested at 9 different friction regimes with various contact pressure values (0.33, 0.66 and 1 MPa) and various sliding velocity values (0.6,...
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Impact of binary mixtures of triclosan and β-estradiol on endocrine processes of the model organism Saccharomyces Cerevisiae (using XenoScreen YES/YAS test) - with controls
Open Research DataData shown in data set illustrate the results of the endocrine processes of mixtures of triclosan and β-estradiol with controls for YES agonsit, YES antagonist, YAS agonist and YAS antagonist. S cerevisiae is used as a model organism in the monitoring of endocrine disruptors in environmental and reference samples in Xenometrix® systems - XenoScreen®. ...
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Impact of binary mixtures of triclosan and 17α-ethinylestradiol on endocrine processes of the model organism Saccharomyces Cerevisiae (using XenoScreen YES/YAS test) - with controls
Open Research DataData shown in data set illustrate the results of the endocrine processes of mixtures of triclosan and 17α-ethinylestradiol with controls for YES agonsit, YES antagonist, YAS agonist and YAS antagonist. S cerevisiae is used as a model organism in the monitoring of endocrine disruptors in environmental and reference samples in Xenometrix® systems -...
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Impact of binary mixtures of triclosan and methylparaben on endocrine processes of the model organism Saccharomyces Cerevisiae (using XenoScreen YES/YAS test) - with controls
Open Research DataData shown in data set illustrate the results of the endocrine processes of mixtures of triclosan and methylparaben with controls for YES agonsit, YES antagonist, YAS agonist and YAS antagonist. S cerevisiae is used as a model organism in the monitoring of endocrine disruptors in environmental and reference samples in Xenometrix® systems - XenoScreen®....
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Impact of binary mixtures of two parabens (Methylparaben and Buthylparaben) on endocrine processes of the model organism Saccharomyces Cerevisiae (using XenoScreen YES/YAS test)
Open Research DataData shown in data set illustrate the results of the endocrine processes of mixtures of two parabens e.i. methylparaben and buthylparaben. S cerevisiae is used as a model organism in the monitoring of endocrine disruptors in environmental and reference samples in Xenometrix® systems - XenoScreen®. Tested substances have bacteriostatic and fungicide...
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Identification of L. monocytogenes and atypical isolates by MALDI TOF MS.
Open Research DataThe data represent the results of research within the scientific activity Miniatura 5 entitled "Characterization of atypical Listeria monocytogenes strains isolated from the food production environment financed by the National Science Center (no. DEC 2021/05/X/NZ9/00143). The aim of this part of the project was (i) to determine the peptide composition...
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Impact of binary mixtures of diclofenac and buthylparaben of the model organism Saccharomyces Cerevisiae (using XenoScreen YES/YAS test)
Open Research DataData shown in data set illustrate the results of the edorin processes of miture of diclofenac and buthylparaben on S cerevisiae is used as a model organism in the monitoring of endocrine disruptors in environmental and reference samples in Xenometrix® systems - XenoScreen®. Tested substances have bakeriosis and fungicide properties and are used in...
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Impact of binary mixtures of diclofenac and on endocrine processes of the model organism Saccharomyces Cerevisiae (using XenoScreen YES/YAS test)
Open Research DataData shown in data set highlighte the results of the edorin processes of the diclofenac sodium salt mixture with Methylparaben. S cerevisiae is used as a model organism in the monitoring of endocrine disruptors in environmental and reference samples in Xenometrix® systems - XenoScreen®. Methylparaben have fungicide properties used in food preservative,...
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Impact of binary mixtures of Irgasan (triclosan) and Diclofenac on endocrine processes of the model organism Saccharomyces Cerevisiae (using XenoScreen YES/YAS test)
Open Research DataThe XenoScreen YES/YAS reagents and methodology is given in Kudłak et al. (2019) and in details in electronic supplementary material.
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Impact of binary mixtures of Irgasan (triclosan) and two parabens on endocrine processes of the model organism Saccharomyces Cerevisiae (using XenoScreen YES/YAS test)
Open Research DataData shown in data set illustrate the results of the edorin processes of the Irgasan (triclosan) mixture with two parabens e.i. methylparaben and buthylparaben. S cerevisiae is used as a model organism in the monitoring of endocrine disruptors in environmental and reference samples in Xenometrix® systems - XenoScreen®. Tested substances have bakeriosis...
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Impact of binary mixtures of ketoprofen and oxytetracycline on the germination of Sorghum bicolor (sorgo) seeds
Open Research DataResearch was carried out for various ratios of the previously determined EC50 values for mixture of ketoprofen and oxytetracycline the first substance at 100% of its EC50 concentration was mixed with the second substance at 100% of its EC50 concentration, or the first substance at 50% of its EC50 concentration was mixed with the second substance at...