メインナビゲーションにスキップ
検索にスキップ
メインコンテンツにスキップ
Shibaura Institute of Technology ホーム
English
日本語
ホーム
プロファイル
研究部門
研究成果
活動
プレス/メディア
受賞
専門知識、名前、または所属機関で検索
地域環境システム専攻
大学院理工学研究科
博士課程
概要
フィンガープリント
ネットワーク
プロファイル
(104)
研究成果
(4275)
活動
(12)
プレス/メディア
(1)
受賞
(4)
フィンガープリント
地域環境システム専攻が活動している研究トピックを掘り下げます。これらのトピックラベルは、この組織のメンバーの研究成果に基づきます。これらがまとまってユニークなフィンガープリントを構成します。
並べ替え順
重み付け
アルファベット順
Engineering & Materials Science
Superconducting materials
100%
Temperature
53%
Proton beams
37%
Powders
36%
Gels
35%
Flux pinning
33%
Hydrogen
32%
Mechanical alloying
31%
Polymers
30%
Silica
27%
Membranes
26%
Ions
25%
Microstructure
24%
Solid oxide fuel cells (SOFC)
23%
Oxygen
23%
Fabrication
22%
Hot Temperature
21%
Oxides
21%
Metals
21%
Thin films
20%
Carbon
19%
Infiltration
19%
Electrodes
19%
Liquids
18%
Quasicrystals
18%
Fatigue of materials
18%
Magnetization
18%
Magnetic fields
18%
Air
17%
Plasmas
17%
Crystals
17%
Catalysts
16%
Substrates
16%
Hydrides
16%
Nanoparticles
15%
Experiments
15%
Chemical analysis
15%
Coatings
14%
Annealing
14%
Gases
14%
Water
13%
Photoluminescence
13%
Soldering alloys
13%
Sintering
13%
Addition reactions
12%
Magnets
12%
Boron
12%
Lasers
11%
Concretes
11%
Air conditioning
11%
Crystal structure
11%
Soil cement
11%
Scanning electron microscopy
11%
Scanning
11%
Chemical vapor deposition
11%
Doping (additives)
11%
X ray diffraction
11%
Composite materials
11%
Electric potential
10%
Grain boundaries
10%
Permeation
10%
Irradiation
10%
Steam reforming
10%
Hydrogenation
10%
Reforming reactions
10%
Acids
10%
Nitriding
10%
Actuators
9%
Recovery
9%
Aluminum oxide
9%
Heating
9%
Copolymers
9%
Titanium
9%
Hydrogen storage
9%
Desorption
9%
Elastomers
9%
Aluminum
9%
Oxidation
9%
Silver
9%
Mechanical properties
8%
Fused silica
8%
Soils
8%
Bolts
8%
Solid state reactions
8%
Pulsed laser deposition
8%
Finite element method
8%
Cracks
8%
Hydrogen production
8%
Skutterudites
8%
Diamonds
8%
Perovskite
8%
Transmission electron microscopy
8%
Hybrid systems
8%
Superconducting transition temperature
8%
Carbonation
8%
Steel
8%
Spark plasma sintering
8%
Gas turbines
8%
Alumina
7%
Selenium
7%
Chemical Compounds
Superconductor
89%
Current Density
28%
Mechanical Alloying
25%
Microstructure
23%
Magnetic Field
23%
Alloy
20%
Surface
19%
Liquid Film
18%
Gel
16%
Magnetization
15%
Force
15%
Sintering
15%
Simulation
15%
Quasicrystallinity
15%
Liquid
14%
Oxide
14%
Application
14%
Time
13%
Dioxygen
13%
Hydrogen
13%
Flow
12%
Solder
12%
Amorphous Material
12%
Environment
12%
Gas
12%
Strain
11%
Crack Propagation
11%
Purity
11%
Amount
11%
Grain Boundary
11%
Air Conditioning
10%
Annealing
10%
Levitation
10%
Heat
10%
Energy
10%
Strength
10%
Pressure
10%
Plasma
10%
Reduction
10%
Metal
10%
Porous Polymer
10%
Thermoelectricity
9%
Velocity
9%
Composite Material
9%
Nanoparticle
8%
Boron Atom
8%
Volume
8%
Behavior as Electrode
8%
Soil
7%
Proton
7%
Porosity
7%
Mixture
7%
Thermal Fatigue
7%
Lanthanoid Atom
7%
Ion
7%
Creep
7%
Addition Reaction
7%
Pulsed Laser Deposition
7%
Carbon Atom
7%
Ambient Reaction Temperature
7%
Catalyst
7%
Hydride
6%
Nitrogen
6%
Coating Agent
6%
Diffusion
6%
Heat Transfer
6%
Heat Pipe
6%
Cooling
6%
Superconductive Transition Temperature
6%
Strain Hardening
6%
Electron Backscatter Diffraction
6%
Crystal Structure
6%
Plate Like Crystal
6%
X-Ray Diffraction
6%
Critical Temperature
6%
Grain Size
5%
Magnesium Atom
5%
Polymer Network
5%
Crack Initiation
5%
Dielectric Material
5%
Size Reduction
5%
Hydrogenation
5%
Enantiomer
5%
Nitride
5%
Solid State Reaction
5%
Contact Resistance
5%
Flood Reaction
5%
Magnetic Flux
5%
Chirality
5%
Ductility
5%
Thermal Conductivity
5%
Solid Solution
5%
Weight
5%
Shear
5%
Partial Pressure
5%
Ceramic
5%
Fuel
5%
Fiber
5%
Resistance
5%
Physics & Astronomy
critical current
30%
current density
22%
flux pinning
21%
infiltration
19%
performance
18%
microstructure
16%
temperature
16%
synthesis
14%
hydrogen
14%
proton beams
13%
gels
12%
magnetization
11%
fatigue life
11%
fabrication
11%
sintering
10%
levitation
10%
evaluation
10%
oxygen
10%
solid oxide fuel cells
10%
solders
9%
oxides
9%
carbon
9%
steam
8%
polymers
8%
magnets
8%
cycles
8%
boron
8%
ions
8%
catalysts
8%
thin films
8%
alloying
8%
silicon dioxide
7%
nanoparticles
7%
microbeams
7%
characterization
7%
air
7%
gases
7%
seeds
7%
methane
7%
solid state
7%
magnetic fields
6%
balls
6%
metals
6%
membranes
6%
trapping
6%
trapped magnetic fields
6%
silica glass
6%
diffraction
6%
liquids
6%
annealing
6%
scanning electron microscopy
6%
foams
6%
electrodes
6%
optimization
6%
liquid oxygen
6%
x rays
6%
preparation
5%
defects
5%
energy
5%
aluminum
5%
atmospheres
5%
YBCO superconductors
5%
actuators
5%
silver
5%
crack propagation
5%
augmentation
5%
simulation
5%
thermal fatigue
5%
elastomers
5%
liquid phases
5%
friction
5%
lubricants
5%
recovery
5%
composite materials
5%
crystals
5%