A |
|
advanced motion control |
Yasuno, Takashi |
algorithm |
Shimamoto, Takashi |
AlN |
Nishino, Katsushi |
anisotropic superconductivity |
Kawasaki, Yu |
B |
|
bioelectrics |
Shimomura, Naoyuki |
blood flow |
Akutagawa, Masatake |
brain information processing |
Uwate, Yoko |
C |
|
CAD |
Shimamoto, Takashi |
Cathode and anode materials for Li ion rechargeable batteries |
Nakamura, Koichi |
cellular neural networks |
Nishio, Yoshifumi |
chaos |
Nishio, Yoshifumi / Uwate, Yoko |
circuit design (→ circuitry) |
circuitry |
Nishio, Yoshifumi |
coding |
Song, Tian |
complex systems |
Nishio, Yoshifumi |
computational electromagnetics |
Kawada, Masatake |
conductor |
|
≫ ionic conductor |
|
≫ superionic conductor |
Nakamura, Koichi |
control |
|
≫ control theory |
Kubo, Tomohiro |
control theory |
Kubo, Tomohiro |
coupled oscillatory circuits |
Nishio, Yoshifumi |
D |
|
design automation |
Yotsuyanagi, Hiroyuki |
diffusion |
|
≫ ionic diffusion |
Nakamura, Koichi |
distributed parameter systems |
Kubo, Tomohiro |
E |
|
electrical bioimpedance |
Akutagawa, Masatake |
Electrical conductivity measurement |
Nakamura, Koichi |
F |
|
fault tolerant computing |
Yotsuyanagi, Hiroyuki |
femtosecond laser processing/modification |
Tomita, Takuro |
G |
|
GA |
Shimomura, Naoyuki |
genetic algorithm |
Shimamoto, Takashi |
GIS |
Shimomura, Naoyuki |
graphene |
Nagase, Masao |
H |
|
H.264 |
Song, Tian |
heavy-fermion compound |
Kawasaki, Yu |
heavy-fermion system |
Magishi, Ko-ichi |
high temperature superconductor |
Magishi, Ko-ichi |
I |
|
insulation diagnosis |
Kawada, Masatake |
intelligent control |
Yasuno, Takashi |
ion |
|
≫ ionic conductor |
|
≫ superionic conductor |
Nakamura, Koichi |
≫ ionic diffusion |
Nakamura, Koichi |
ionic conductor |
|
≫ superionic conductor |
Nakamura, Koichi |
ionic diffusion |
Nakamura, Koichi |
J |
|
jaw motion (→ jaw movement) |
jaw movement |
Akutagawa, Masatake |
K |
L |
|
layout design |
Shimamoto, Takashi |
LED (→ light emitting diode) |
Li transition metal oxide |
Nakamura, Koichi |
light emitting diode |
Akutagawa, Masatake |
Linear Quadratic Regulator |
Kubo, Tomohiro |
linear system |
Kubo, Tomohiro |
Li+ ion conductor |
Nakamura, Koichi |
Li+ ion diffusion |
Nakamura, Koichi |
low power design |
Song, Tian |
LSI |
Shimamoto, Takashi |
M |
|
machine learning |
Yasuno, Takashi |
magnetic measurement |
Akutagawa, Masatake |
Mechanical milling |
Nakamura, Koichi |
metal-insulator transition |
Magishi, Ko-ichi |
MRI |
Akutagawa, Masatake |
N |
|
nanometrology |
Nagase, Masao |
nanosecond pulsed power |
Shimomura, Naoyuki |
nanostructure |
Nagase, Masao |
Na+ ion conductor |
Nakamura, Koichi |
Na+ ion diffusion |
Nakamura, Koichi |
neural network |
Akutagawa, Masatake / Shimamoto, Takashi |
neurodynamics |
Nishio, Yoshifumi |
nitrogen oxide: NOx |
Shimomura, Naoyuki |
NMR (→ nuclear magnetic resonance) |
non-Fermi liquid |
Kawasaki, Yu |
nonlinear circuits |
Nishio, Yoshifumi |
nuclear magnetic resonance |
Hisada, Akihiko / Kawasaki, Yu / Magishi, Ko-ichi / Nakamura, Koichi |
O |
|
optical amplification |
Takada, Atsushi |
optical device |
Naoi, Yoshiki |
optical fiber |
Takada, Atsushi |
optical properties of solid |
Tomita, Takuro |
optical transmission |
Takada, Atsushi |
optimization |
Shimomura, Naoyuki |
ozone |
Shimomura, Naoyuki |
P |
|
photovoltaic generation system |
Hojo, Masahide |
pole assignment |
Kubo, Tomohiro |
power delivery |
Kawada, Masatake |
power quality |
Hojo, Masahide |
power system protection |
Hojo, Masahide |
pulsed power |
Shimomura, Naoyuki |
Q |
|
quantum spin system |
Magishi, Ko-ichi |
R |
|
Radio Sensing Techniques |
Kawada, Masatake |
robotics |
Yasuno, Takashi |
S |
|
self-organizing map |
Nishio, Yoshifumi |
semiconductor |
Kawakami, Retsuo |
semiconductor device |
Nagase, Masao |
signal and image processing |
Kawada, Masatake |
silicon |
Nagase, Masao |
sterilization |
Akutagawa, Masatake |
superconductivity |
Hisada, Akihiko |
superionic conductor |
Nakamura, Koichi |
synchronization phenomena |
Nishio, Yoshifumi |
systems with time-delay |
Kubo, Tomohiro |
T |
|
Test Technology |
Yotsuyanagi, Hiroyuki |
theory |
|
≫ control theory |
Kubo, Tomohiro |
U |
|
Ultrasonic method |
Nakamura, Koichi |
V |
|
VLSI |
Song, Tian / Yotsuyanagi, Hiroyuki |
W |
|
water treatment |
Shimomura, Naoyuki |
wide area measurement system for power system |
Hojo, Masahide |
wind power generation system |
Hojo, Masahide |
XYZ |