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Department Of Chemical System Engineering The University Of Tokyo | 論文
- High Pressure Induces G2 Arrest in Murine Erythroleukemia Cells^1
- Surface Protrusions of Chemical Vapor Deposited TiN Films Caused by Cu Contamination of Silicon Substrates
- Inhibition of ATP-Sensitive K+ Channels and L-Type Ca2+ Channels by Amiodarone Elicits Contradictory Effect on Insulin Secretion in MIN6 Cells
- Molecular Modeling of Gas Permeation through an Amorphous Microporous Silica Membrane
- Macroscopic Flow Structure of Solid Particles in Circulating Liquid-Solid Fluidized Bed Riser
- A Methodology to Estimate Transport Diffusivities in 'Single-File' Permeation through Zeolite Membranes Using Molecular Simulations
- NO Reduction under the Excess O_2 Condition by Porous VYCOR Catalyst
- SEPARATION OF ALCOHOL AQUEOUS SOLUTIONS BY REVERSE OSMOSIS AND PERVAPORATION USING A POLY-(1-TRIMETHYLSILYL-1-PROPYNE) MEMBRANE
- Simple, Low-cost Preparation of High Surface Area Co_3O_4-CeO_2 Catalysts for Total Decomposition of Toluene
- Structure and Separation Properties of Silica Membranes
- Structural Framework Supporting Selection of Extraction Processes under Sustainable Criteria
- Photopic Negative Response of Full-field and Focal Macular Electroretinograms in Patients with Optic Nerve Atrophy
- Electric Field Effects on Electron Transfer between H^+ and Carbon-Based Electrode Surfaces : A DFT and Anderson-Newns Hamiltonian Analysis Study
- Development and Modification of a PEMFC Electrode by Using a Hydrocarbon Ionomer for High Utilization of Catalyst
- Energy-Recuperative Coal-Integrated Gasification/Gas Turbine Power Generation System
- Electrochemical Oxidation of Carbon Monoxide on a Pt Electrode at Lower Potential in Hot Aqueous Solution at 423 K and 473 K
- P-32 低温水熱環境下におけるリグノクレゾールの分子応答(ポスターセッション1:技術05,研究発表(ポスター発表))
- P-31 アルカリ環境下におけるリグノクレゾールの分子応答(ポスターセッション1:技術05,研究発表(ポスター発表))
- Changes in the medium-range order during crystallization of aluminosilicate zeolites characterized by high-energy X-ray diffraction technique(Aqueous Solution Science for Ceramic Processing II)
- Quantum Dots Targeted to the Assigned Organelle in Living Cells