martes, 27 de agosto de 2013
Video about Magnetic Bearing
Hybrid Magnetic Bearing
Magnetal Electrodynamic Bearings
Magnetic Bearing Components
Рельсотрон \ Рельсовая пушка \ Railgun
Sun Magnetic Field Lines
lunes, 26 de agosto de 2013
James Clerk Maxwell
Michael Faraday
Nikola Tesla
Great Mind of Magnetism
Tesla Multiples (SI)
Universal Constant used in Magnetism
Main article: Orders of magnitude (magnetic field)
- 31.869 µT (3.1×10−5 T) - strength of Earth's magnetic field at 0° latitude, 0° longitude
- 5 mT - the strength of a typical refrigerator magnet
- 0.3 T - the strength of solar sunspots
- 1.25 T - magnetic field intensity at the surface of a neodymium magnet
- 1 T to 2.4 T - coil gap of a typical loudspeaker magnet
- 1.5 T to 3 T - strength of medical magnetic resonance imaging systems in practice, experimentally up to 17 T[9]
- 4 T - strength of the superconducting magnet built around the CMS detector at CERN[10]
- 8 T - the strength of LHC magnets.
- 13 T - strength of ITER fusion reactor[11]
- 16 T - magnetic field strength required to levitate a frog,[12] per the 2000 Ig Nobel Prize in Physics.[13]
The Tesla Units
Magnetic Materials
Values to Coulomb's Logarithm
Tables
- Units in Electromagnetism
Videos about Railgun
Videos
- Videos about Maglev Train
Videos about Dynamo Theory
Interesting Info
domingo, 25 de agosto de 2013
Solar Magnetic Tornado
Solar Magnetic Field Simulation
Super solar storm
Accretion Disk Formation
Solar Dynamo Simulation
jueves, 15 de agosto de 2013
The FC-GSHL Theoretical Principles
- ntroduction to Hydromagnetic Dynamo Theory with Applications
- Mean–field dynamo theory: early ideas and today's problems - AIP
- Transport coefficients for solar and stellar dynamos
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miércoles, 14 de agosto de 2013
Theoretical Base for GSHL (Papers)
- Field Magnetic Compression With Laser
- Flux Magnetic Compression Nozzle
- The theory of singular magnetic field compression in plasma systems
- Magnetic Flux Compression Generators: a Tutorial andSurvey
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Introduction to The FC-GSHL Experiment
The  "Gandhiva" Experiment  or   Faraday-Chandra -Gauss-Saharov-Hunter-Lopez  Experiment  (FC-GSHL)  is  a  continuation of  GSHL Experiment  or  better  say  one  evolution  of   the  same,  now  using  biggest  energies,  planning  this time,   to  use  the  Tremendous  Energy  of  Sun,  of  its  Electromagnetic Field  like Ejector Trusth Force to impulse  stellar-ship  "more  big" perhaps   of   Baptistinic  masses .
Is Ambitious  but  possible  theoretically ,   because  the  sun  is  (using  simple  terms)  one  explosion  self-containned  for  gravitational  Forces. Now  like  in   the  GSHL-Experiment   the  Magnetic-Field-Compresion Principles (MFCG)  is  the  same,  even  better,  because  now  we  economize  on  explosives   this  for  always,   and  the loads  (ships)  can  be  more,  more,  and  more  big.  The  problem  of  couse,  continue  being  the  high temperature and  strong  radiations.
First that  all, we begining our calculations  of  classic way  with  a   balance  equation  like  in  GSHL Calculation,  now  of  course,  having  account  aspects  like  radiation, gravitation,  and  internal  pressure forces. 
To  continue  we  proceed  to  calculate  the  inner  currents  using  the  Dynamo  Theory  and  to  finally obtain   The  Lopez'z  Speed  Equation.
Actually  the  lecture of  instruments  show  modest   magnetic  fields (some  kilogauss), this  product  of  enormous  temperature  there . 
  Even  if   our  physic  intuition  will failing  we  are  preprating   a  third  experiment  using  some class  of  thermoelectric  effect  to  provide  "great  currents"   for  the   teragaussian-coil. we  has  designed  already   the  third  "Gedanke"  called  TC-GSHL.
To  the   final  concept  is  using  this giants  electromagnetic streams,  produced  for  stars,  like canals  that  would allow  us  voyage   across  the  universe  in  similar  form  to   antiquity  peoples  using  the  streams  in sea or  rivers  to  navigate.     
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