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by B.S.  University  of  Puerto  Rico ... M.S.  University of  Puerto  Rico  (1973)
by B.S. University of Puerto Rico ... M.S. University of Puerto Rico (1973)

... plasmapause is a destabilizing mechanism for which a convective instability could be established. However, using real density, pressure and magnetic field data we find that it is unlikely for this region to become convectively unstable. Estimates of the magnetic Richardson number show that shear ins ...
Bifurcations of current transfer through a collisional sheath with
Bifurcations of current transfer through a collisional sheath with

Experiment - Version III
Experiment - Version III

... Move the droplet into the central area of the grid before making the next change to reduce the probability of losing the droplet. Press to restore this standard voltage and measure the velocity of the droplet under the influence of both gravity and the standard electric field (vt). Use the zoom ...
Chapter 9. Modeling Flows in Moving Zones
Chapter 9. Modeling Flows in Moving Zones

... ∂Ω neglects the ρ ∂t × ~r term, so it cannot accurately model a time-varying angular velocity using the relative velocity formulation. For flows in rotating domains, the equation for conservation of mass, or continuity equation, can be written as follows for both the absolute and the relative veloci ...
CLASSICAL FIELDS - Instituto de Física Teórica
CLASSICAL FIELDS - Instituto de Física Teórica

The Dipole Radiation. Retarded Potentials and Maxwell Equations
The Dipole Radiation. Retarded Potentials and Maxwell Equations

Ion  Temperature  and  Flow Velocity
Ion Temperature and Flow Velocity

Current Distribution on Linear Thin Wire Antenna
Current Distribution on Linear Thin Wire Antenna

Applying Gauss elimination from boolean equation systems to
Applying Gauss elimination from boolean equation systems to

chapter 6 oscillatory flow
chapter 6 oscillatory flow

High-electric-field limit for the Vlasov–Maxwell–Fokker
High-electric-field limit for the Vlasov–Maxwell–Fokker

... is large compared to the thermal velocity, the other physical parameters being fixed. The high-field limit of the VPFP system can be addressed by appealing to usual compactness methods; however, constraints on the space dimension appear, due to the singularity of the convolution kernel. It turns out ...
Solving Systems of Linear Equations
Solving Systems of Linear Equations

Chapter 5 Plasma Descriptions I: Kinetic, Two
Chapter 5 Plasma Descriptions I: Kinetic, Two

Solving Systems of Linear Equations
Solving Systems of Linear Equations

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Power Point Version

Nonlinear transport current flow in superconductors with planar obstacles
Nonlinear transport current flow in superconductors with planar obstacles

... 共4兲 for ␸ (r) to a linear equation for ␸ (E). In turn, the equation for ␸ (E) can be further reduced to other well-studied linear partial differential equations, such as Thomas-Fermi or London equations, whose known solutions can be used to obtain exact solutions for 2D current flows in nonlinear co ...
Mixing, space-charge and thermal effects in free - Lume
Mixing, space-charge and thermal effects in free - Lume

Electron Dynamics: A novel numerical approach and attosecond
Electron Dynamics: A novel numerical approach and attosecond

... [4], the Chebyshev scheme [5], and the iterative Lanczos propagator [6]. All of these methods have found numerous applications in both physics and chemistry, but non of them are universal. Considering the physical domain of the problem, one must chose the method making the best compromise between pr ...
Magnetic Resonance Technology A New Concept for
Magnetic Resonance Technology A New Concept for

Classical Electrodynamics - Duke Physics
Classical Electrodynamics - Duke Physics

Classical Electrodynamics - Duke Physics
Classical Electrodynamics - Duke Physics

) ( , z
) ( , z

DYNAMIC PROPERTIES OF THE ELECTROMAGNETIC FIELD
DYNAMIC PROPERTIES OF THE ELECTROMAGNETIC FIELD

Engineering Principles - Pearson Schools and FE Colleges
Engineering Principles - Pearson Schools and FE Colleges

Chapter Three Static Fluid and its Application
Chapter Three Static Fluid and its Application

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Navier–Stokes equations

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