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Chemistry
Benzaldehyde
100%
Furan
100%
Palladium
100%
Antitubercular
100%
Tandem Mass Spectrometry
100%
MIC
66%
Antitumor
50%
IC50
50%
Dimethyl Sulfoxide
50%
Two-Dimensional NMR
33%
Electrospray
33%
Hydrogen Bonding
33%
Binding Energy
33%
Free Energy
33%
Molecular Docking
33%
1H-Pyrazole
33%
Hydrophobic Interaction
33%
Dissociation Constant
33%
Antitubercular Agent
33%
Molecular Dynamics Simulation
33%
Molecular Mass
33%
High-Pressure Liquid Chromatography
33%
Retention Time
33%
Quinone
33%
Acetone
33%
Aromatic Compound
33%
Monoterpene
33%
Terpene
33%
Dibenzofuran
33%
Chromone
33%
Lipid
33%
Single Crystal X-Ray Diffraction
25%
Elemental Analysis
25%
Nitrogen Atom
25%
Inhibitory Concentration
25%
Crystal Structure
25%
Sulfur Atom
25%
Antiproliferative
25%
Pharmacology, Toxicology and Pharmaceutical Science
Benzaldehyde
100%
Thiosemicarbazone
100%
Furan
100%
Neoplasm
100%
Cytotoxicity
100%
Lichen (Organism)
100%
Usnea
100%
Antibacterial Activity
100%
Staphylococcus Aureus
57%
Minimum Inhibitory Concentration
57%
IC50
50%
Usnic Acid
42%
Fatty Acid
28%
Antiproliferative Activity
25%
Elemental Analysis
25%
Chronic Myeloid Leukemia
25%
Sulfur
25%
Antitumor Activity
25%
Oleic Acid
14%
Antiinfective Agent
14%
Lichen (Disease)
14%
Linolenic Acid
14%
Escherichia coli
14%
Linoleic Acid
14%
Medicine and Dentistry
Electrospray Ionization
100%
High-Performance Liquid Chromatography
100%
Finger
100%
Brachytherapy
100%
Tandem Mass Spectrometry
100%
Dose Distribution
66%
Orbitrap
40%
High-Dose-Rate Brachytherapy
33%
Finger Injury
33%
Drug Megadose
33%
Chromone Derivative
20%
Lipid
20%
Depside
20%
Aromatic Compound
20%
Density Functional Theory
20%
Terpene
20%
Dibenzofuran
20%