Suchergebnisse - "Muhammad Raffi"
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1
Autoren: et al.
Weitere Verfasser: et al.
Quelle: Digital.CSIC. Repositorio Institucional del CSIC
Consejo Superior de Investigaciones Científicas (CSIC)Schlagwörter: Staphylococcus aureus, Alternative medicine, Silver, Nanotoxicology and Antimicrobial Nanoparticles, Materials Science, Silver nanoparticle, Crataegus monogyna, Metal Nanoparticles, Microbial Sensitivity Tests, Antimicrobial Activity, Green synthesis, Agricultural and Biological Sciences, Fabrication, reaction parameters, Nanoparticle, antibacterial activity, X-Ray Diffraction, Health Sciences, Materials Chemistry, Genetics, Pathology, Nanotechnology, Particle Size, Biology, Crataegus, FOS: Nanotechnology, Bacteria, Plant Extracts, Herbal Medicine for Neurological Disorders, Life Sciences, Green Chemistry Technology, Materials science, Anti-Bacterial Agents, Plant Leaves, Antimicrobial Properties of Essential Oils in Foods, Chemistry, Complementary and alternative medicine, FOS: Biological sciences, Pseudomonas aeruginosa, Physical Sciences, Medicine, Antibacterial activity, Food Science
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2
Autoren:
Quelle: Ta'rim: Jurnal Pendidikan dan Anak Usia Dini. 5:61-72
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3
Autoren: et al.
Quelle: AIP Conference Proceedings; 2024, Vol. 3001 Issue 1, p1-10, 10p
Schlagwörter: MURAL art, MAGNESIUM oxide, REACTIVE oxygen species, SURFACE morphology, SURFACE structure
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4
Autoren: et al.
Quelle: AIP Conference Proceedings; 2024, Vol. 3001 Issue 1, p1-8, 8p
Schlagwörter: PRECIPITATION (Chemistry), METALLIC oxides, NANOPARTICLES, ZINC oxide, X-ray diffraction, MURAL art
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5
Autoren: et al.
Quelle: AIP Conference Proceedings; 2024, Vol. 3001 Issue 1, p1-10, 10p
Schlagwörter: PORTLAND cement, COPPER oxide, ANTIBACTERIAL agents, BACTERIAL growth, X-ray diffraction, ESCHERICHIA coli
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6
Autoren: et al.
Quelle: AIP Conference Proceedings; 2024, Vol. 3001 Issue 1, p1-8, 8p
Schlagwörter: PORTLAND cement, NANOPARTICLE size, ZINC oxide, X-ray diffraction, ESCHERICHIA coli, CEMENT
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7
Autoren: et al.
Quelle: Journal of Fluorescence; Aug2025, Vol. 35 Issue 8, p7293-7303, 11p
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8
Autoren: et al.
Quelle: Journal of Fluorescence; Jul2025, Vol. 35 Issue 7, p5963-5977, 15p
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9
Autoren: et al.
Quelle: Pharmacognosy Journal; Jul/Aug2023, Vol. 15 Issue 4, p518-523, 6p
Schlagwörter: HEPATITIS E, ROOT-mean-squares, SYZYGIUM, BINDING energy, ROSMARINIC acid
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10
Autoren: et al.
Quelle: Pharmacognosy Journal; Jul/Aug2023, Vol. 15 Issue 4, p506-511, 6p
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11
Autoren: et al.
Quelle: Pharmacognosy Journal; Jul/Aug2023, Vol. 15 Issue 4, p489-493, 5p
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12
Autoren: et al.
Quelle: Pharmacognosy Journal; Nov/Dec2022, Vol. 14 Issue 6, p813-816, 4p
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13
Autoren: et al.
Quelle: Pharmacognosy Journal; Sep/Oct2022, Vol. 14 Issue 5, p580-586, 7p
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14
Autoren: et al.
Quelle: Pharmacognosy Journal; Sep/Oct2022, Vol. 14 Issue 5, p575-579, 5p
Schlagwörter: MANGOSTEEN, SARS-CoV-2, BIOACTIVE compounds, COVID-19 pandemic, DNA helicases, MOLECULAR docking
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15
Autoren: et al.
Quelle: Pharmacognosy Journal; Sep/Oct2022, Vol. 14 Issue 5, p565-574, 10p
Schlagwörter: MORINGA oleifera, SARS-CoV-2, COVID-19, DRUG interactions, MOLECULAR docking, BIOINFORMATICS software
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16
Autoren: et al.
Quelle: Pharmacognosy Journal; Jul/Aug2022, Vol. 14 Issue 4, p352-357, 6p
Schlagwörter: SARS-CoV-2, PORTULACA oleracea, ANTIVIRAL agents, COLE crops, BIOACTIVE compounds
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17
Autoren: et al.
Quelle: Pharmacognosy Journal; Jul/Aug2022, Vol. 14 Issue 4, p267-272, 6p
Schlagwörter: SYZYGIUM, MORINGA oleifera, BIOACTIVE compounds, SARS-CoV-2, COVID-19 pandemic, DRUG analysis
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18
Autoren: et al.
Quelle: Journal of Biomolecular Structure & Dynamics; Sep(late)2024, Vol. 42 Issue 15, p8063-8072, 10p
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19
Autoren: et al.
Quelle: BMC Plant Biology; 4/19/2024, Vol. 24 Issue 1, p1-10, 10p
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20
Autoren: et al.
Quelle: Botanical Studies; 1/22/2024, Vol. 65 Issue 1, p1-12, 12p
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