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Division of Natural Science, Osaka Kyoiku University | 論文
- Voltammetric determination of dissolved iron and its speciation in freshwater
- Separated Transcriptomes of Male Gametophyte and Tapetum in Rice : Validity of a Laser Microdissection (LM) Microarray
- Crystal Structure of {1,4-Bis[1-(3,5-dichlorophenolato-2-ylmethyl)-ylpropylamino-κ^2N, O]piperazine-κ^2N, N'}cobalt(II)
- Solvent Extraction of Alkaline Earth Metal Ions Using N,N'-bis(2-hydroxyphenylmethyl)-N,N'-bis(2-pyridylmethyl)-1,2-ethanediamine Derivative
- Various Spatiotemporal Expression Profiles of Anther-Expressed Genes in Rice
- Effects of Methanol and Temperature on Enzyme Immunoassay with Monoclonal Antibodies Specific to the Insecticide Etofenprox
- Detection of Actomyosin in Normal and Neoplastic Cells of Salivary Gland and Respiratory Tract by Immuno-fluorescence Technic
- Determination of Cadmium by Adsorptive Stripping Voltammetry of a Cadmium-Calcein Blue Complex
- An Attempted Synthesis of 8-Shaped Circulene : Synthesis and Characterization of [2.2](4,4')Biphenylo(3,11)dibenzo[c,l]chrysenophane and Its Cyclophadiene
- Characterization of CDC48 in Allium cepa
- Synthesis of Unnatural 1-Methyl-2-quinolone Derivatives
- Synthesis via 2-Acylmethyl-2-oxazoline. I. A Novel Synthesis of 3-Acyl-2-pyridones by Michael Addition of 2-Acylmethyl-2-oxazoline to α,β-Acetylenic Ketones
- Facile Synthesis of Functionalized Nitroenamines. III.^ Aminolysis of 1-Methyl-5-nitropyrimidin-2(1H)-one
- cine-Substitution of 1-Methyl-3,6,8-trinitro-2-quinolone
- Structural Control of Schiff Base Ligands for Selective Extraction of Copper(II)
- Crystal Structure of Tris(2-hydroxy-3,5-dimethylbenzyl)amine
- X-Ray Crystallographic Approach to the Design of Phenolic Schiff Base Reagents for the Mutual Separation of Lanthanoids
- Extraction Behavior of Lanthanoids(III)with N, N'-Bis(2-hydroxyphenylmethyl)-N, N'-bis(2-pyridylmethyl)-1,2-ethanediamine and β-Diketones
- Stability of Cylindrical Domain under Poiseuille Flow(Electromagnetism, Optics, Acoustics, Heat Transfer, Classical Mechanics and Fluid Mechanics)
- UDP-Glucose Pyrophosphorylase is Rate Limiting in Vegetative and Reproductive Phases in Arabidopsis thaliana
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