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D
D
- Variable in class core.dflic.
Streamline
DFLIC
- class core.dflic.
DFLIC
.
Dynamic Fast Line Integral Convolution algorithm.
DFLIC(Vec2Field, Vec2Field, AccumImage, Vec2Transform)
- Constructor for class core.dflic.
DFLIC
DFLIC constructs a new DFLIC object with the given initial parameters.
DFLIC.ElementIterator
- class core.dflic.
DFLIC.ElementIterator
.
DFLIC.ElementIterator()
- Constructor for class core.dflic.
DFLIC.ElementIterator
DataInputAnimation
- class simulations.animations.fluidFlow.
DataInputAnimation
.
An animation illustrating the program structure if the user wants to input a data array of velocity values to display as a DLIC.
DataInputAnimation()
- Constructor for class simulations.animations.fluidFlow.
DataInputAnimation
DataInputExperiment
- class simulations.experiments.fluidFlow.
DataInputExperiment
.
DataInputExperiment(int, int)
- Constructor for class simulations.experiments.fluidFlow.
DataInputExperiment
DataInputObject
- class simulations.objects.
DataInputObject
.
DataInputObject(int, int)
- Constructor for class simulations.objects.
DataInputObject
This is the object that both reads in the data array and then interpolates between values in the array to produce a field B(x,t) for the DLIC program.
DecreaseVal(double)
- Method in class core.postprocessing.
Colorizer
Defines the value of V in HSV if we are below the break point in field strength.
DomainException
- exception core.image.
DomainException
.
signals a domain exception
DomainException()
- Constructor for class core.image.
DomainException
DomainException(String)
- Constructor for class core.image.
DomainException
d
- Variable in class core.math.
Mat2
a,b,c,d are the components of the matrix
d
- Variable in class simulations.objects.
ChargeRingFinite
d
- Variable in class simulations.objects.
CurrentRing
unit vector along the direction of the rings axis, defines the direction of positive current
d
- Variable in class simulations.objects.
InfiniteWire
d1
- Variable in class simulations.objects.
EflowXY
dIdt
- Variable in class simulations.experiments.faradaysLaw.
FallingRingExperiment
the time derivative of the current in dimensionless current units = I0/t0
dIdt
- Variable in class simulations.experiments.magnetostatics.
TeachSpinExperiment
the current time rate of change of current in the ring
dIdt
- Variable in class simulations.objects.
CurrentRing
time rate of change of current
dIdt
- Variable in class simulations.objects.
InfiniteWire
dataInput
- Variable in class simulations.experiments.fluidFlow.
DataInputExperiment
defaultkernel
- Variable in class core.dflic.
DFLIC
Sets the default kernel.
deltaR
- Variable in class simulations.experiments.magnetostatics.
TeachSpinExperiment
the amplitude of the motion of the magnet
det()
- Method in class core.math.
Mat2
Returns: the determinant of "this"
dfield
- Variable in class core.dflic.
DFLIC
privately stores the state of the DFLIC object from frame-to-frame.
dim
- Variable in class core.math.
RungeKuttaErrorIntegration
dim
- Variable in class core.math.
RungeKuttaIntegration
The number of first order equations we are integrating.
dim
- Variable in class core.math.
Vec
dim = n, the dimension of this vector
dipole
- Variable in class simulations.experiments.faradaysLaw.
FallingRingExperiment
the current ring representing the point dipole
dipole
- Variable in class simulations.experiments.magnetostatics.
TeachSpinExperiment
the dipole in the Teach Spin experiment
dipole
- Variable in class simulations.experiments.radiation.
OscillatingDipoleExperiment
dipole
- Variable in class simulations.objects.
ElectricDipoleStatic
dipole
- Variable in class simulations.objects.
MagneticDipoleStatic
dispose()
- Method in class core.io.
OutputWindow
dot(Mat2)
- Method in class core.math.
Mat2
Returns: the dot product of "this" and "m"
dot(Vec)
- Method in class core.math.
Vec
Returns: the dot product of "this" and "v" Requires: "this" and "v" have the same dimension
dot(Vec2)
- Method in class core.math.
Vec2
Returns: the dot product of "this" and "v"
dot(double, double)
- Method in class core.math.
Vec2
Returns: the dot product of "this" and (x, y)
dot(Vec3)
- Method in class core.math.
Vec3
Returns: the dot product of 'this' and 'v'
dot(double, double, double)
- Method in class core.math.
Vec3
Returns: the dot product of 'this' and (x, y, z)
doubleHeight
- Variable in class core.rendering.
Renderer
double the height of the output image in pixels.
doubleWidth
- Variable in class core.rendering.
Renderer
double the width of the output image in pixels.
ds
- Variable in class core.dflic.
Streamline
dsum1(double[], double)
- Method in class simulations.objects.antennaMath.
Erho
dsum2(double[], double)
- Method in class simulations.objects.antennaMath.
Erho
dt
- Variable in class core.rendering.
Renderer
Time step for evolution between frames
dt
- Static variable in class simulations.animations.electrostatics.
ChargeMovingAgainstConstantFieldAnimation
The time step for the evolution of the system.
dt
- Static variable in class simulations.animations.electrostatics.
ColorTestAnimation
The time step for the evolution of the system.
dt
- Static variable in class simulations.animations.electrostatics.
RepulsionTwoChargesAnimation
The time step for the evolution of the system.
dt
- Static variable in class simulations.animations.faradaysLaw.
EddyCurrentsDipoleAnimation
The time step for the evolution of the system.
dt
- Static variable in class simulations.animations.faradaysLaw.
EddyCurrentsMonopoleAnimation
The time step for the evolution of the system.
dt
- Static variable in class simulations.animations.faradaysLaw.
FallingRingAnimation
The time step for the evolution of the system.
dt
- Static variable in class simulations.animations.faradaysLaw.
MovingRecedingImageAnimation
The time step for the evolution of the system.
dt
- Static variable in class simulations.animations.faradaysLaw.
MovingRecedingImagePotentialAnimation
The time step for the evolution of the system.
dt
- Static variable in class simulations.animations.faradaysLaw.
RecedingImageAnimation
The time step for the evolution of the system.
dt
- Static variable in class simulations.animations.faradaysLaw.
TwoPlanesAnimation
The time step for the evolution of the system.
dt
- Static variable in class simulations.animations.fluidFlow.
CirculatingFlowAnimation
The time step for the evolution of the system.
dt
- Static variable in class simulations.animations.fluidFlow.
DataInputAnimation
The time step for the evolution of the system.
dt
- Static variable in class simulations.animations.fluidFlow.
HeliosphereFlowAnimation
The time step for the evolution of the system.
dt
- Static variable in class simulations.animations.radiation.
LinearAntennaAnimation
dt
- Static variable in class simulations.animations.radiation.
SinusoidalDipoleRadiationAnimation
dx
- Variable in class core.dflic.
Streamline
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