1017 different keywords | Search | Percent |
cavitation | 497 | 11.2 % |
of | 112 | 2.5 % |
pdf | 112 | 2.5 % |
supercavitation | 83 | 1.8 % |
propeller | 76 | 1.7 % |
bubble | 68 | 1.5 % |
flow | 53 | 1.1 % |
pump | 53 | 1.1 % |
in | 52 | 1.1 % |
nexearch | 52 | 1.1 % |
and | 50 | 1.1 % |
model | 43 | 0.9 % |
erosion | 43 | 0.9 % |
cav2001 | 41 | 0.9 % |
vortex | 41 | 0.9 % |
numerical | 37 | 0.8 % |
a | 32 | 0.7 % |
turbine | 31 | 0.7 % |
water | 31 | 0.7 % |
on | 28 | 0.6 % |
mass | 28 | 0.6 % |
cavitator | 28 | 0.6 % |
centrifugal | 28 | 0.6 % |
orifice | 27 | 0.6 % |
kaplan | 27 | 0.6 % |
filetype | 26 | 0.5 % |
pressure | 25 | 0.5 % |
fluent | 25 | 0.5 % |
azipod | 23 | 0.5 % |
inducer | 23 | 0.5 % |
nozzle | 23 | 0.5 % |
for | 23 | 0.5 % |
hydrofoil | 22 | 0.4 % |
cavitating | 22 | 0.4 % |
noise | 22 | 0.4 % |
bubbles | 21 | 0.4 % |
simulation | 20 | 0.4 % |
the | 20 | 0.4 % |
analysis | 19 | 0.4 % |
added | 19 | 0.4 % |
rocket | 19 | 0.4 % |
tip | 18 | 0.4 % |
tunnel | 18 | 0.4 % |
study | 16 | 0.3 % |
jet | 16 | 0.3 % |
cav | 15 | 0.3 % |
unsteady | 14 | 0.3 % |
restriction | 14 | 0.3 % |
international | 14 | 0.3 % |
equation | 14 | 0.3 % |
method | 14 | 0.3 % |
surface | 13 | 0.2 % |
flows | 13 | 0.2 % |
ship | 13 | 0.2 % |
frequency | 13 | 0.2 % |
propellers | 12 | 0.2 % |
cavity | 12 | 0.2 % |
sheet | 12 | 0.2 % |
cfd | 12 | 0.2 % |
rayleigh | 12 | 0.2 % |
journal | 11 | 0.2 % |
transfer | 11 | 0.2 % |
boundary | 11 | 0.2 % |
supercavitating | 11 | 0.2 % |
venturi | 11 | 0.2 % |
diesel | 11 | 0.2 % |
ships | 11 | 0.2 % |
measurement | 10 | 0.2 % |
fluid | 10 | 0.2 % |
naca | 10 | 0.2 % |
control | 10 | 0.2 % |
plesset | 10 | 0.2 % |
joint | 10 | 0.2 % |
rudder | 10 | 0.2 % |
calculation | 10 | 0.2 % |
turbopump | 9 | 0.2 % |
hydrodynamics | 9 | 0.2 % |
acoustic | 9 | 0.2 % |
hydrodynamic | 9 | 0.2 % |
damage | 9 | 0.2 % |
wave | 9 | 0.2 % |
shock | 9 | 0.2 % |
design | 9 | 0.2 % |
temperature | 9 | 0.2 % |
spectrum | 9 | 0.2 % |
experimental | 9 | 0.2 % |
piercing | 9 | 0.2 % |
energy | 8 | 0.1 % |
experiment | 8 | 0.1 % |
heat | 8 | 0.1 % |
number | 8 | 0.1 % |
symposium | 8 | 0.1 % |
velocity | 8 | 0.1 % |
flashing | 8 | 0.1 % |
modeling | 8 | 0.1 % |
impeller | 8 | 0.1 % |
size | 8 | 0.1 % |
modelling | 8 | 0.1 % |
effect | 8 | 0.1 % |
equilibrium | 7 | 0.1 % |
liquids | 7 | 0.1 % |
distribution | 7 | 0.1 % |
pdf.two-phase | 7 | 0.1 % |
sae | 7 | 0.1 % |
plate | 7 | 0.1 % |
two | 7 | 0.1 % |
by | 6 | 0.1 % |
drag | 6 | 0.1 % |
injector | 6 | 0.1 % |
models | 6 | 0.1 % |
wing | 6 | 0.1 % |
collapse | 6 | 0.1 % |
isenthalpic | 6 | 0.1 % |
stokes | 6 | 0.1 % |
with | 6 | 0.1 % |
a8 | 6 | 0.1 % |
turbomachinery | 6 | 0.1 % |
inside | 6 | 0.1 % |
pictures | 6 | 0.1 % |
boundaries | 6 | 0.1 % |
technology | 6 | 0.1 % |
time | 6 | 0.1 % |
speed | 6 | 0.1 % |
injection | 6 | 0.1 % |
multiphase | 6 | 0.1 % |
mechanism | 6 | 0.1 % |
element | 6 | 0.1 % |
prediction | 6 | 0.1 % |
dynamic | 6 | 0.1 % |
bubbly | 6 | 0.1 % |
luminescence | 6 | 0.1 % |
inception | 6 | 0.1 % |
what | 5 | 0.1 % |
phase | 5 | 0.1 % |
type | 5 | 0.1 % |
dynamics | 5 | 0.1 % |
solid | 5 | 0.1 % |
video | 5 | 0.1 % |
supersonic | 5 | 0.1 % |
test | 5 | 0.1 % |
pipe | 5 | 0.1 % |
www.howstuffworks.com | 5 | 0.1 % |
flat | 5 | 0.1 % |
radius | 5 | 0.1 % |
liquid | 5 | 0.1 % |
thermal | 5 | 0.1 % |
is | 5 | 0.1 % |
hydrofoils | 5 | 0.1 % |
foil | 5 | 0.1 % |
ventilated | 5 | 0.1 % |
bearing | 5 | 0.1 % |
an | 5 | 0.1 % |
theory | 5 | 0.1 % |
diffusion | 5 | 0.1 % |
reynolds | 5 | 0.1 % |
nozzles | 5 | 0.1 % |
thesis | 5 | 0.1 % |
characteristics | 5 | 0.1 % |
pumps | 5 | 0.1 % |
cavities | 5 | 0.1 % |
gas | 5 | 0.1 % |
valve | 5 | 0.1 % |
shadowgraph | 5 | 0.1 % |
s | 5 | 0.1 % |
instabilities | 5 | 0.1 % |
2d | 5 | 0.1 % |
near | 5 | 0.1 % |
submerged | 5 | 0.1 % |
high | 5 | 0.1 % |
effects | 5 | 0.1 % |
underwater | 4 | 0 % |
scaling | 4 | 0 % |
navier-stokes | 4 | 0 % |
caltech | 4 | 0 % |
equations | 4 | 0 % |
kavitation | 4 | 0 % |
laser | 4 | 0 % |
how | 4 | 0 % |
behavior | 4 | 0 % |
2001 | 4 | 0 % |
paper | 4 | 0 % |
inducers | 4 | 0 % |
to | 4 | 0 % |
engine | 4 | 0 % |
interaction | 4 | 0 % |
are | 4 | 0 % |
edge | 4 | 0 % |
3d | 4 | 0 % |
turbopumps | 4 | 0 % |
senocak | 4 | 0 % |
vibration | 4 | 0 % |
kunz | 4 | 0 % |
tait | 4 | 0 % |
toroidal | 4 | 0 % |
turbin | 4 | 0 % |
negative | 4 | 0 % |
hosangadi | 4 | 0 % |
work | 4 | 0 % |
technologies | 4 | 0 % |
damping | 4 | 0 % |
technique | 4 | 0 % |
conference | 4 | 0 % |
investigation | 4 | 0 % |
turbo | 4 | 0 % |
suction | 4 | 0 % |
boat | 4 | 0 % |
watanabe | 4 | 0 % |
phd | 4 | 0 % |
blowdown | 4 | 0 % |
dumont | 4 | 0 % |
abstract | 4 | 0 % |
at | 4 | 0 % |
structure | 4 | 0 % |
air | 4 | 0 % |
projectile | 3 | 0 % |
time-frequency | 3 | 0 % |
shockwave | 3 | 0 % |
procedure | 3 | 0 % |
yoshinobu | 3 | 0 % |
kubota | 3 | 0 % |
coefficients | 3 | 0 % |
visual | 3 | 0 % |
problem | 3 | 0 % |
proceedings | 3 | 0 % |
modell | 3 | 0 % |
source | 3 | 0 % |
vof | 3 | 0 % |
bodies | 3 | 0 % |
library.caltech.edu | 3 | 0 % |
oscillation | 3 | 0 % |
formed | 3 | 0 % |
& | 3 | 0 % |
fine | 3 | 0 % |
sound | 3 | 0 % |
injectors | 3 | 0 % |
panel | 3 | 0 % |
knowledge | 3 | 0 % |
coefficient | 3 | 0 % |
astm | 3 | 0 % |
multi-phase | 3 | 0 % |
concepts | 3 | 0 % |
free | 3 | 0 % |
low | 3 | 0 % |
turbines | 3 | 0 % |
surge | 3 | 0 % |
layer | 3 | 0 % |
motion | 3 | 0 % |
angle | 3 | 0 % |
lithotripsy | 3 | 0 % |
wake | 3 | 0 % |
atlar | 3 | 0 % |
or | 3 | 0 % |
does | 3 | 0 % |
interface | 3 | 0 % |
brennen | 3 | 0 % |
shape | 3 | 0 % |
compressible | 3 | 0 % |
travelling | 3 | 0 % |
force | 3 | 0 % |
measure | 3 | 0 % |
npsh | 3 | 0 % |
history | 3 | 0 % |
waves | 3 | 0 % |
- | 3 | 0 % |
caltechweb | 3 | 0 % |
les | 3 | 0 % |
mixture | 3 | 0 % |
piv | 3 | 0 % |
axisymmetric | 3 | 0 % |
maneuvering | 3 | 0 % |
problems | 3 | 0 % |
mechanical | 3 | 0 % |
stage | 3 | 0 % |
core | 3 | 0 % |
physics | 3 | 0 % |
body | 3 | 0 % |
spray | 3 | 0 % |
japikse | 3 | 0 % |
self | 3 | 0 % |
gap | 3 | 0 % |
new | 3 | 0 % |
1996 | 3 | 0 % |
library | 3 | 0 % |
steel | 3 | 0 % |
formation | 3 | 0 % |
a. | 3 | 0 % |
xml_no_dtd | 3 | 0 % |
computation | 3 | 0 % |
adiabatic | 3 | 0 % |
growth | 3 | 0 % |
bearings | 3 | 0 % |
condition | 3 | 0 % |
micro | 3 | 0 % |
outlet | 3 | 0 % |
session | 3 | 0 % |
drop | 3 | 0 % |
homogeneous | 3 | 0 % |
site | 3 | 0 % |
michel | 3 | 0 % |
song | 3 | 0 % |
first | 3 | 0 % |
leakage | 3 | 0 % |
load | 2 | 0 % |
kavitierend | 2 | 0 % |
emerson | 2 | 0 % |
figure | 2 | 0 % |
wall | 2 | 0 % |
fraction | 2 | 0 % |
storey | 2 | 0 % |
super | 2 | 0 % |
rankine | 2 | 0 % |
hardness | 2 | 0 % |
batchelor | 2 | 0 % |
lindau | 2 | 0 % |
1999 | 2 | 0 % |
viscosity | 2 | 0 % |
converging | 2 | 0 % |
hydrocode | 2 | 0 % |
nucleation | 2 | 0 % |
different | 2 | 0 % |
stutz | 2 | 0 % |
2nd | 2 | 0 % |
science.howstuffworks.com | 2 | 0 % |
avoid | 2 | 0 % |
tanger | 2 | 0 % |
vortices | 2 | 0 % |
.tip | 2 | 0 % |
lighting | 2 | 0 % |
eswl | 2 | 0 % |
possibility | 2 | 0 % |
vapor | 2 | 0 % |
lift | 2 | 0 % |
conditions | 2 | 0 % |
treated | 2 | 0 % |
tsujimoto | 2 | 0 % |
ambient | 2 | 0 % |
screen | 2 | 0 % |
facing | 2 | 0 % |
dornier | 2 | 0 % |
sw | 2 | 0 % |
artificial | 2 | 0 % |
propellant | 2 | 0 % |
scholar.google.com/ | 2 | 0 % |
nuclei | 2 | 0 % |
step | 2 | 0 % |
rayleigh-plesset | 2 | 0 % |
stress | 2 | 0 % |
oscillations | 2 | 0 % |
up | 2 | 0 % |
51 | 2 | 0 % |
microjet | 2 | 0 % |
cranz | 2 | 0 % |
performance | 2 | 0 % |
naca66 | 2 | 0 % |
regiane | 2 | 0 % |
centerline | 2 | 0 % |
nonlinear | 2 | 0 % |
introduction | 2 | 0 % |
savchenko | 2 | 0 % |
over | 2 | 0 % |
analogy | 2 | 0 % |
patella | 2 | 0 % |
naval | 2 | 0 % |
pei | 2 | 0 % |
cascade | 2 | 0 % |
prosperetti | 2 | 0 % |
lecture | 2 | 0 % |
index | 2 | 0 % |
oscillating | 2 | 0 % |
resonant | 2 | 0 % |
butterfly | 2 | 0 % |
law | 2 | 0 % |
two-phase | 2 | 0 % |
hjältes | 2 | 0 % |
entraining | 2 | 0 % |
ag00ftmjlemj | 2 | 0 % |
past | 2 | 0 % |
propellor | 2 | 0 % |
rotating | 2 | 0 % |
blade | 2 | 0 % |
impact | 2 | 0 % |
optimization | 2 | 0 % |
asme | 2 | 0 % |
aisi | 2 | 0 % |
surface-piercing | 2 | 0 % |
through | 2 | 0 % |
theoretical | 2 | 0 % |
8103 | 2 | 0 % |
beha | 2 | 0 % |
gaussian | 2 | 0 % |
based | 2 | 0 % |
schiff-und-hafen | 2 | 0 % |
measurements | 2 | 0 % |
channel | 2 | 0 % |
a3 | 2 | 0 % |
references | 2 | 0 % |
large | 2 | 0 % |
suppressing | 2 | 0 % |
non | 2 | 0 % |
david | 2 | 0 % |
dissipation | 2 | 0 % |
sugiyama | 2 | 0 % |
fortes | 2 | 0 % |
treatment | 2 | 0 % |
zhong | 2 | 0 % |
16-206 | 2 | 0 % |
x | 2 | 0 % |
. | 2 | 0 % |
breakdown | 2 | 0 % |
link | 2 | 0 % |
expansion | 2 | 0 % |
between | 2 | 0 % |
application | 2 | 0 % |
without | 2 | 0 % |
reboud | 2 | 0 % |
experiments | 2 | 0 % |
coagulants | 2 | 0 % |
vs | 2 | 0 % |
parts | 2 | 0 % |
parallel | 2 | 0 % |
schardin | 2 | 0 % |
power | 2 | 0 % |
turbulent | 2 | 0 % |
zhou | 2 | 0 % |
cylindrical | 2 | 0 % |
b&k | 2 | 0 % |
und | 2 | 0 % |
photography | 2 | 0 % |
fuel | 2 | 0 % |
friesch | 2 | 0 % |
tank | 2 | 0 % |
order | 2 | 0 % |
diagram | 2 | 0 % |
zhu | 2 | 0 % |
data | 2 | 0 % |
total | 2 | 0 % |
capturing | 2 | 0 % |
0015 | 2 | 0 % |
development | 2 | 0 % |
michigan | 2 | 0 % |
maximum | 2 | 0 % |
cell | 2 | 0 % |
bem | 2 | 0 % |
isothermal | 2 | 0 % |
cp | 2 | 0 % |
quantitative | 2 | 0 % |
why | 2 | 0 % |
mit | 2 | 0 % |
kato | 2 | 0 % |
ultrasound | 2 | 0 % |
d | 2 | 0 % |
second | 2 | 0 % |
enthalpy | 2 | 0 % |
researches | 2 | 0 % |
laser-induced | 2 | 0 % |
section | 2 | 0 % |
internal | 2 | 0 % |
2000-01-1249 | 2 | 0 % |
single | 2 | 0 % |
hole | 2 | 0 % |
approach | 2 | 0 % |
chahine | 2 | 0 % |
cloud | 2 | 0 % |
pulpitel | 2 | 0 % |
duration | 2 | 0 % |
en | 2 | 0 % |
semenenko | 2 | 0 % |
s55c | 2 | 0 % |
collapsing | 2 | 0 % |
plain | 2 | 0 % |
volume | 2 | 0 % |
backward | 2 | 0 % |
jean-luc | 2 | 0 % |
c.c.s. | 2 | 0 % |
j.m | 2 | 0 % |
generator | 2 | 0 % |
diverging | 2 | 0 % |
airfoil | 2 | 0 % |
relative | 2 | 0 % |
clearance | 2 | 0 % |
tube | 2 | 0 % |
contour | 2 | 0 % |
magnitude | 2 | 0 % |
variable | 2 | 0 % |
nicolas | 2 | 0 % |
weitendorf | 2 | 0 % |
shaft | 2 | 0 % |
g134[1] | 2 | 0 % |
structures | 2 | 0 % |
navier | 2 | 0 % |
gases | 2 | 0 % |
mixed | 2 | 0 % |
fredgolm | 2 | 0 % |
electric | 2 | 0 % |
thrust | 2 | 0 % |
predict | 2 | 0 % |
inanc | 2 | 0 % |
j.p. | 2 | 0 % |
tanks. | 2 | 0 % |
takahira | 2 | 0 % |
cav2001.pdf | 2 | 0 % |
3-d | 2 | 0 % |
parsons | 2 | 0 % |
fujikawa | 2 | 0 % |
yufeng | 2 | 0 % |
vaporous | 2 | 0 % |
phenomena | 2 | 0 % |
songlin | 2 | 0 % |
keller | 2 | 0 % |
blown | 2 | 0 % |
franc | 2 | 0 % |
död | 2 | 0 % |
beam | 2 | 0 % |
ashvin | 2 | 0 % |
usa | 2 | 0 % |
pumpal | 2 | 0 % |
schmidt | 2 | 0 % |
carbon | 2 | 0 % |
hemisperical | 2 | 0 % |
high-speed | 2 | 0 % |
hammer | 2 | 0 % |
leading | 2 | 0 % |
exponent | 2 | 0 % |
ne | 1 | 0 % |
n2 | 1 | 0 % |
multipulser | 1 | 0 % |
closure | 1 | 0 % |
phil | 1 | 0 % |
osborn | 1 | 0 % |
particle | 1 | 0 % |
rotation | 1 | 0 % |
pump-intake | 1 | 0 % |
calculations | 1 | 0 % |
belahadji | 1 | 0 % |
projectiles | 1 | 0 % |
pitting | 1 | 0 % |
yongmei | 1 | 0 % |
expanding | 1 | 0 % |
system | 1 | 0 % |
thermodynamic | 1 | 0 % |
incipient | 1 | 0 % |
electromagnetic | 1 | 0 % |
fillet | 1 | 0 % |
yuriy | 1 | 0 % |
jets | 1 | 0 % |
reduce | 1 | 0 % |
various | 1 | 0 % |
polytropic | 1 | 0 % |
hertz-knudsen | 1 | 0 % |
froude | 1 | 0 % |
can | 1 | 0 % |
choked | 1 | 0 % |
carolyn | 1 | 0 % |
predicting | 1 | 0 % |
star-cd | 1 | 0 % |
euler | 1 | 0 % |
cavitating-jet | 1 | 0 % |
isolated | 1 | 0 % |
lifetime | 1 | 0 % |
intraluminal | 1 | 0 % |
re | 1 | 0 % |
[lakshminarayana | 1 | 0 % |
convection | 1 | 0 % |
flowchart | 1 | 0 % |
2-d | 1 | 0 % |
runner | 1 | 0 % |
greeley | 1 | 0 % |
terms | 1 | 0 % |
cav2001.library.caltech.edu/258/ | 1 | 0 % |
archimedes | 1 | 0 % |
nsdl.org/mr/384676 | 1 | 0 % |
jis | 1 | 0 % |
trailing | 1 | 0 % |
smith | 1 | 0 % |
cascades | 1 | 0 % |
grid | 1 | 0 % |
yakushiji | 1 | 0 % |
alajbevoic | 1 | 0 % |
r/c | 1 | 0 % |
generators | 1 | 0 % |
heave | 1 | 0 % |
? | 1 | 0 % |
.pdf | 1 | 0 % |
mode | 1 | 0 % |
rate | 1 | 0 % |
perspectives | 1 | 0 % |
explosion | 1 | 0 % |
gopalan | 1 | 0 % |
change | 1 | 0 % |
hopkins | 1 | 0 % |
implicit | 1 | 0 % |
density | 1 | 0 % |
top | 1 | 0 % |
spillways | 1 | 0 % |
callenaere. | 1 | 0 % |
z | 1 | 0 % |
discrete | 1 | 0 % |
flame | 1 | 0 % |
front | 1 | 0 % |
california | 1 | 0 % |
vickers | 1 | 0 % |
lithotriptors | 1 | 0 % |
-pump | 1 | 0 % |
dependent | 1 | 0 % |
intake | 1 | 0 % |
judge | 1 | 0 % |
institute | 1 | 0 % |
solved | 1 | 0 % |
bucket | 1 | 0 % |
compressor | 1 | 0 % |
blunt | 1 | 0 % |
lynn | 1 | 0 % |
hm3 | 1 | 0 % |
instability | 1 | 0 % |
state | 1 | 0 % |
rotational | 1 | 0 % |
occurs | 1 | 0 % |
szeri | 1 | 0 % |
b. | 1 | 0 % |
algorithm | 1 | 0 % |
ring | 1 | 0 % |
r. | 1 | 0 % |
stern | 1 | 0 % |
considerations | 1 | 0 % |
scale | 1 | 0 % |
fisheries | 1 | 0 % |
youngk@craft-tech | 1 | 0 % |
e.a. | 1 | 0 % |
kï½ï½”z 1975 | 1 | 0 % |
sac | 1 | 0 % |
hydronautics | 1 | 0 % |
finish | 1 | 0 % |
elbow | 1 | 0 % |
propellers. | 1 | 0 % |
cavitation symposium 2001 | 1 | 0 % |
mag | 1 | 0 % |
chyczewski | 1 | 0 % |
heymann | 1 | 0 % |
plane | 1 | 0 % |
he | 1 | 0 % |
p | 1 | 0 % |
eulerian | 1 | 0 % |
georges | 1 | 0 % |
technical | 1 | 0 % |
booster | 1 | 0 % |
y | 1 | 0 % |
rpm | 1 | 0 % |
formula | 1 | 0 % |
ultrasonics | 1 | 0 % |
bulb | 1 | 0 % |
propellers? | 1 | 0 % |
due | 1 | 0 % |
www-thermomech.me.es.osaka-u.ac.jp/research/cavi.html | 1 | 0 % |
fracture | 1 | 0 % |
lubricant | 1 | 0 % |
hull | 1 | 0 % |
kerwin | 1 | 0 % |
functions | 1 | 0 % |
delgosha | 1 | 0 % |
pitot | 1 | 0 % |
ps | 1 | 0 % |
analytical | 1 | 0 % |
fixed | 1 | 0 % |
numericals | 1 | 0 % |
visualization | 1 | 0 % |
fluids | 1 | 0 % |
air-vapor | 1 | 0 % |
0008 | 1 | 0 % |
cavitators | 1 | 0 % |
1981 | 1 | 0 % |
plankton | 1 | 0 % |
immersed | 1 | 0 % |
willis | 1 | 0 % |
length | 1 | 0 % |
phases | 1 | 0 % |
pellone | 1 | 0 % |
cav2001.library.caltech.edu/159/ | 1 | 0 % |
square | 1 | 0 % |
nrec | 1 | 0 % |
r.p. | 1 | 0 % |
-dental | 1 | 0 % |
tap | 1 | 0 % |
=0 | 1 | 0 % |
fin | 1 | 0 % |
instruments | 1 | 0 % |
valves | 1 | 0 % |
waste | 1 | 0 % |
ventilation | 1 | 0 % |
dacles-mariani | 1 | 0 % |
gear | 1 | 0 % |
areas | 1 | 0 % |
formulation | 1 | 0 % |
eddy | 1 | 0 % |
suppression | 1 | 0 % |
extracorporeal | 1 | 0 % |
papers | 1 | 0 % |
torpedo | 1 | 0 % |
under | 1 | 0 % |
guideline | 1 | 0 % |
m | 1 | 0 % |
oil | 1 | 0 % |
ballistics | 1 | 0 % |
impulsive | 1 | 0 % |
molecular | 1 | 0 % |
meshes | 1 | 0 % |
bernd | 1 | 0 % |
seawater | 1 | 0 % |
hiroharu | 1 | 0 % |
lubricated | 1 | 0 % |
fine/turbo | 1 | 0 % |
discharges | 1 | 0 % |
hess | 1 | 0 % |
undersea | 1 | 0 % |
line | 1 | 0 % |
turbine/pdf | 1 | 0 % |
mikael | 1 | 0 % |
observations | 1 | 0 % |
allintitle | 1 | 0 % |
hutton | 1 | 0 % |
saito | 1 | 0 % |
b | 1 | 0 % |
-mia | 1 | 0 % |
detection | 1 | 0 % |
born | 1 | 0 % |
motor | 1 | 0 % |
compression | 1 | 0 % |
film | 1 | 0 % |
aspects | 1 | 0 % |
constant | 1 | 0 % |
time-frequency | 1 | 0 % |
vogel | 1 | 0 % |
arakeri | 1 | 0 % |
vessel | 1 | 0 % |
hydro | 1 | 0 % |
acryl | 1 | 0 % |
berchiche | 1 | 0 % |
arndt | 1 | 0 % |
spinodal | 1 | 0 % |
eotvos | 1 | 0 % |
field | 1 | 0 % |
soteriou | 1 | 0 % |
interval | 1 | 0 % |
lectures | 1 | 0 % |
agostino | 1 | 0 % |
passive | 1 | 0 % |
tracking | 1 | 0 % |
dhiman | 1 | 0 % |
wang | 1 | 0 % |
research | 1 | 0 % |
nabila | 1 | 0 % |
transitional | 1 | 0 % |
survey | 1 | 0 % |
current | 1 | 0 % |
generals | 1 | 0 % |
thornycroft | 1 | 0 % |
physical | 1 | 0 % |
stepping | 1 | 0 % |
sbsl | 1 | 0 % |
bump | 1 | 0 % |
wavelet | 1 | 0 % |
videos | 1 | 0 % |
driven | 1 | 0 % |
kinds | 1 | 0 % |
blï½ï½Žï½„ï½…ï½’ | 1 | 0 % |
conical | 1 | 0 % |
heavy | 1 | 0 % |
iyer | 1 | 0 % |
numeca | 1 | 0 % |
g134-95 | 1 | 0 % |
consideration | 1 | 0 % |
reduction | 1 | 0 % |
burgess | 1 | 0 % |
comparison | 1 | 0 % |
1996] | 1 | 0 % |
vladimir | 1 | 0 % |
thrusters | 1 | 0 % |
filtered | 1 | 0 % |
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Other words | 17 | 0.3 % |