The algebraic formulation of physical laws puts in evidence
some features that are hidden in the differential formulation and gives rise to
algebraic equations that can be used for computational physics: the numerical
method obtained has been called " cell method. "
 
These files are
intended for rapid dissemination of information and for PERSONAL USE ONLY.
 
COPYRIGHTS OF
THESE PAPERS REST WITH THE PUBLISHERS
.
2010
2009
2008
2007
2006
2005
2004
2003
2002
2001
2000
1999
1998
RELATED PAPERS
RELATED WEB SITES
homepage of Enzo Tonti      
Mimetic discretization (Nicolaus Robidoux)      
Physical Theory Differential Algebraic Electromagnetism [EL]
  Electrostatics (1)      [ELE1-6]
  Electrostatics      [ELf1-6] Analytical Mechanics [SM]
  Particle Mechanics       [PAR1-3]
  Particle Mechanics      
[PMf1-3] Solid Mechanics [SM]
  Plane elasticity      [SOL6-3]
  Elastostatics      [SMf1-3] Fluid Dynamics [FL]
  Perfect fluid motion      [FLU3-3]
  Hydraulics: percolation      [FLf4-5] Thermal Conduction [TC]
  Stationary Heat conduction      [TCO1-4]
  Stationary Heat Conduction      [TCf1-10] Quantum Mechanics [QM]
  Meson field      [QME3-2]  
Analogies [AN]
  Analogy-particle-optics      [ANd1-9]  
Gravitation [GR]
  Classical gravitation     
[GRA1-2]  
General [GE]
  Classification diagram  [GEN4-2]
  Coboundary process      [GEf3-6]
Diagrams
of Physical Theories (explain diagrams: in update)
  Magnetostatics (1)      [ELE2-6]
  Electromagnetism       [ELE3-4]
  Electrostatics (2)      [ELE4-6]
  Magnetostatics (2)      [ELE5-6]
  Electromagnetism in space-time       [ELE6-4]
  Electrostatics (complex variables)      [ELE7-3]
  Particle in electromagnetic field (1)       [ELE8-2]
  Energetics of electrostatics       [ELE9-2]
  Network theory       [ELE10-4]
  RLC circuit       [ELE11-5]
  Coulomb's law       [ELE12-2]
  Particle in electromagn. field (2)      [ELE13-1]
  Telegrapher equation       [ELd5-14]
  Magnetostatics      [ELf2-5]
  Electromagnetism      [ELf3-2]
  Electrostatics      [ELf9-5]
  Magnetostatics      [ELf10-5]
  Electromagnetism      [ELf4-3]
  Relativistic particle Mechanics       [PAR2-4]
  Analytical Mechanics       [PAR4-3]
  Hamilton eq., Lagrange eq.       [PAR3-2]
  Elastostatics      [SOL9-2]
  Longitudinal vibrations      [VBd6-4]
  Elastodynamics      [SOL12-2]
  Transversal Vibrations of strings      [SOL14-4]
  Longitudinal Vibrations of rods      [SOL10-3]
  Torsional Vibrations of rods      [SOL11-4]
  Plates (normal load)      [SOL7-2]
  Plates (plane load)      [SOL8-3]
  Beam      [SOL4-3]
  Timoshenko beam      [SOL5-3]
  Bending of rods      [SOL1-2]
  Complex variables      [FLU2-2]
  Incompressible fluid: plane motion      [FLU1-3]
  Inviscid fluids (Euler)      [FLU8-2]
  Viscous fluid (Navier-Stokes)      [FLU6-3]
  Viscous fluid in a pipe      [FLU9-3]
  Perfect fluid diff/algebraic      [FLU4-5]
  Hydraulics: percolation      [FLd7-7]
  Hydraulics: differential/algebraic      [FLd11-6]
  Acoustics      [FLU5-3]
  Viscous fluid (Navier-Stokes)       [FLf5]
  Heat conduction       [TCO2-4]
  Heat conduction      [TCf2-17]
  Proca field      [QME4-3]
  Matter waves      [QME2-4]
  The quantization process      [QME1-2]
  Analogies      [ANd2-6]
  Analogy gravitation-electrostatics      [ANd6-4]
  Relativistic gravitation     
[GRA2-3]
  Gravitation: classic-relativistic     
[GRd4-4]
  Standard columns   [GEN5-2]
  Standard diagrams   [GEN12-4]
  Canonical system      [GE02-2]
  De Rham (one column)      [deRham]
  Primal objects in 3D      [GEN2-4]
  Dual objects in 3D      [GEN3-3]
  Differential forms in 3D      [GEN1-4]
  Primal objects in 4D       [GEN9-2]
  Dual objects in 4D      [GEN10-3]
  Differential forms in 4D       [GEN8-1]