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Scaling of Differential Equations
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A
|
B
|
C
|
D
|
E
|
F
|
G
|
J
|
L
|
M
|
N
|
P
|
Q
|
R
|
S
|
T
|
U
|
V
|
W
A
angular frequency
assert
B
base unit
Bernoulli's equation
bidomain equations
Biot number
Buckingham Pi theorem
C
characteristic time
creeping flow
D
dimension of physical quantities
dimensionless number
,
[1]
,
[2]
,
[3]
,
[4]
,
[5]
,
[6]
dimensionless variable
,
[1]
E
e-folding time
Eckert number
Euler number
exponential decay
F
forced convection
free convection
frequency
frequency, angular
Froude number
G
graphical web interface
Grashof number
J
joblib
,
[1]
L
length
logistic equation
Lotka-Volterra, competing species model
Lotka-Volterra, predator-prey model
low Reynolds number flow
M
Mach number
mass
memoize function
multiple software runs
N
Navier-Stokes equations
non-dimensionalization
Nusselt number
P
parampool
Peclet number
,
[1]
,
[2]
period (of oscillations)
phase shift
PhysicalQuantity
Pi theorem
Q
quality factor Q
R
radians
Reynolds number
,
[1]
,
[2]
,
[3]
,
[4]
S
scaling
Stokes problem
Stokes' flow
Strouhal number
T
thermo-elasticity
time
U
units
British
US
conversion
software
V
vortex shedding
W
web interface (Parampool)
Weber number
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Scaling of Differential Equations
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