Page last updated: 2024-08-22

tungsten and phenyl acetate

tungsten has been researched along with phenyl acetate in 14 studies

Research

Studies (14)

TimeframeStudies, this research(%)All Research%
pre-19909 (64.29)18.7374
1990's0 (0.00)18.2507
2000's2 (14.29)29.6817
2010's3 (21.43)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Cole, JA1
Belt, WD; Chan-Curtis, V; Ladoulis, CT1
Tappan, DV1
Greenlee, TK; Hartman, JL; Ross, R1
Karges, HE; Kühn, K1
Bairati, A; Petruccioli, G; Torri Tarelli, L1
Gay, JL; Kelly, MS1
Andreesen, JR; El Ghazzawi, E; Gottschalk, G1
Chauhan, UP; Sarkar, BC1
Almeida Paz, FA; Coelho, AC; Gonçalves, IS; Klinowski, J; Pillinger, M1
Andreesen, JR; Makdessi, K1
Cai, SF; Wang, LS1
Cheng, YY; Li, WW; Shen, N; Song, XN; Tong, ZH; Wu, C; Yu, HQ; Yuan, SJ1
Huang, L; Logan, BE; Pan, Y; Shan, L; Shi, Y; Tian, F1

Reviews

2 review(s) available for tungsten and phenyl acetate

ArticleYear
Some new developments in anaerobic bacterial metabolism and its genetic regulation.
    Science progress, 1988, Volume: 72, Issue:286 Pt 2

    Topics: Acetates; Bacteria, Anaerobic; Fermentation; Genes, Bacterial; Industrial Microbiology; Methane; Nitrates; Nitrites; Selenium; Tungsten

1988
Tungsten, the surprisingly positively acting heavy metal element for prokaryotes.
    Annals of the New York Academy of Sciences, 2008, Volume: 1125

    Topics: Acetates; Aldehyde Dehydrogenase; Bacterial Proteins; Clostridium; Clostridium thermocellum; Eubacterium; Formate Dehydrogenases; Metals, Heavy; Molybdenum; Tungsten; Tungsten Compounds

2008

Other Studies

12 other study(ies) available for tungsten and phenyl acetate

ArticleYear
Cytochemical localization of nucleic acids by an acriflavine-phosphotungstate complex for fluorescence microscopy and electron microscopy.
    The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society, 1970, Volume: 18, Issue:9

    Topics: Acetates; Acridines; Brain; Brain Chemistry; Cartilage; Cerebrosides; Chemical Phenomena; Chemistry; DNA; Fluorescence; Histocytochemistry; Hydrogen-Ion Concentration; Male; Microscopy, Electron; Microscopy, Fluorescence; Molybdenum; Nucleic Acids; Pancreas; Phosphates; RNA; Staining and Labeling; Testis; Tungsten

1970
A light scattering technique for measuring protein concentration.
    Analytical biochemistry, 1966, Volume: 14, Issue:2

    Topics: Acetates; Carbonic Anhydrases; Chromatography, Gel; Chymotrypsin; Cytochromes; Ferrocyanides; Fluorometry; gamma-Globulins; Globulins; Ovalbumin; Photometry; Proteins; Ribonucleases; Serum Albumin, Bovine; Solutions; Tungsten

1966
The fine structure of elastic fibers.
    The Journal of cell biology, 1966, Volume: 30, Issue:1

    Topics: Acetates; Animals; Animals, Newborn; Cattle; Collagen; Elastic Tissue; Fetus; Histocytochemistry; Indicators and Reagents; Lead; Ligaments; Microscopy, Electron; Osmium; Phosphotungstic Acid; Rats; Staining and Labeling; Tendons; Tungsten

1966
The cross striation pattern of the fibrin fibril.
    European journal of biochemistry, 1970, May-01, Volume: 14, Issue:1

    Topics: Acetates; Animals; Cattle; Fibrin; Microscopy, Electron; Staining and Labeling; Tungsten; Uranium

1970
[Technical specifications on the use of electronic contrast media for the study of collagen fibrils].
    Bollettino della Societa italiana di biologia sperimentale, 1969, Sep-30, Volume: 45, Issue:18

    Topics: Acetates; Collagen; Connective Tissue; Contrast Media; Microscopy, Electron; Nitrates; Staining and Labeling; Tungsten; Uranium

1969
The action of visible radiation on the formation and properties of Saccharomyces ascospores.
    Archiv fur Mikrobiologie, 1969, Volume: 66, Issue:3

    Topics: Acetates; Agar; Aniline Compounds; Cell Wall; Darkness; Light; Permeability; Radiation Effects; Saccharomyces; Spectrophotometry; Spores; Staining and Labeling; Tungsten

1969
The effect of ferrous ions, tungstate and selenite on the level of formate dehydrogenase in Clostridium formicoaceticum and formate synthesis from CO2 during pyruvate fermentation.
    Archiv fur Mikrobiologie, 1974, Mar-04, Volume: 96, Issue:2

    Topics: Acetates; Aldehyde Oxidoreductases; Bicarbonates; Carbon Dioxide; Carbon Radioisotopes; Clostridium; Fermentation; Formates; Fructose; Iron; Molybdenum; Pyruvates; Selenium; Sulfides; Tungsten; Vanadium

1974
Use of calmagite for the determination of traces of magnesium in biological materials.
    Analytical biochemistry, 1969, Oct-15, Volume: 32, Issue:1

    Topics: Acetates; Animals; Brain Chemistry; Calcium; Cattle; Coloring Agents; Copper; Glycols; Humans; Indicators and Reagents; Kidney; Liver; Magnesium; Methods; Milk, Human; Myocardium; Rats; Spectrophotometry; Spleen; Trichloroacetic Acid; Tungsten; Zinc

1969
Microwave assisted synthesis of molybdenum and tungsten tetracarbonyl complexes with a pyrazolylpyridine ligand. Crystal structure of cis-[Mo(CO)4{ethyl[3-(2-pyridyl)-1-pyrazolyl]acetate}].
    Molecules (Basel, Switzerland), 2006, Dec-06, Volume: 11, Issue:12

    Topics: Acetates; Crystallography, X-Ray; Hydrogen Bonding; Ligands; Microwaves; Models, Molecular; Molybdenum; Organometallic Compounds; Pyridines; Tungsten

2006
Epoxidation of soybean oil catalyzed by [pi-C5H5NC16H33]3[PW4O16] with hydrogen peroxide and ethyl acetate as solvent.
    Natural product communications, 2011, Volume: 6, Issue:8

    Topics: Acetates; Catalysis; Hydrogen Peroxide; Organometallic Compounds; Soybean Oil; Tungsten

2011
Rapid isolation of a facultative anaerobic electrochemically active bacterium capable of oxidizing acetate for electrogenesis and azo dyes reduction.
    Applied biochemistry and biotechnology, 2014, Volume: 173, Issue:2

    Topics: Acetates; Azo Compounds; Bacteria, Anaerobic; Bioelectric Energy Sources; Coloring Agents; Electrochemistry; Electron Transport; Geologic Sediments; Nanoparticles; Oxides; Phylogeny; Time Factors; Tungsten

2014
Mutual benefits of acetate and mixed tungsten and molybdenum for their efficient removal in 40 L microbial electrolysis cells.
    Water research, 2019, Oct-01, Volume: 162

    Topics: Acetates; Bioelectric Energy Sources; Electrodes; Electrolysis; Hydrogen; Molybdenum; Tungsten

2019