magnetic force - traducción al holandés
Diclib.com
Diccionario ChatGPT
Ingrese una palabra o frase en cualquier idioma 👆
Idioma:

Traducción y análisis de palabras por inteligencia artificial ChatGPT

En esta página puede obtener un análisis detallado de una palabra o frase, producido utilizando la mejor tecnología de inteligencia artificial hasta la fecha:

  • cómo se usa la palabra
  • frecuencia de uso
  • se utiliza con más frecuencia en el habla oral o escrita
  • opciones de traducción
  • ejemplos de uso (varias frases con traducción)
  • etimología

magnetic force - traducción al holandés

FORCE EXERTED ON A CHARGE IN ELECTROMAGNETIC FIELD
Lorentz equation; Magnetic force; Lorenz force; VxB force; Lorentz Force Law; Lorentz force law; Lorentz Force; Magnetic Force; Lorentz forces; Lorentz law; Laplace force; F=qv X B
  • Lorentz' theory of electrons. Formulas for the Lorentz force (I, ponderomotive force) and the [[Maxwell equations]] for the [[divergence]] of the [[electrical field]] E (II) and the [[magnetic field]] B (III), ''La théorie electromagnétique de Maxwell et son application aux corps mouvants'', 1892, p. 451. ''V'' is the velocity of light.
  • Lorentz force -image on a wall in Leiden
  • ''dV''}} and varies throughout the continuum.
  • particles]] in a [[bubble chamber]]. Positive and negative charge trajectories curve in opposite directions.
  • '''B'''}} field]] vary in space and time.
  • Right-hand rule for a current-carrying wire in a magnetic field ''B''

magnetic force         
magnetische aantrekkingskracht, magnetische kracht (sexuele aantrekkingskracht tussen twee mensen)
magnetic field         
  • [[Hans Christian Ørsted]], ''Der Geist in der Natur'', 1854
  • A sketch of Earth's magnetic field representing the source of the field as a magnet. The south pole of the magnetic field is near the geographic north pole of the Earth.
  • A [[Solenoid]] with electric current running through it behaves like a magnet.
  • '''M'''}} inside and outside a cylindrical bar magnet.
SPATIAL DISTRIBUTION OF VECTORS ALLOWING THE CALCULATION OF THE MAGNETIC FORCE ON A TEST PARTICLE
Magnetic flux density; B-Field; B-field; Magnetic field density; Magnetic Field; Magnetic field strength; Magnetic force field; Nonlinear magnetic field; Magnetic fields; Magnetic Flux Density; H-field; Magnatic field; B-fields; Magnetic field lines; Magnetic field line; Magnetizing field; Auxiliary magnetic field; H field; Effective magnetic field; Potential magnetic field; Magnetic field intensity; Strong magnetic field; Magnetic field energy density; Magnetic Field Energy Density; Magnetic field vector; Magnetic lines of force; Amperes per meter; Amperes per metre; Applied magnetic field; Ampere per metre; Magnetic vector
magnetisch veld
magnetic north         
  • Magnetic declination from true north in 2000.
  • rune staffs]] is the Norse hero [[Starkad]] ("Starcaterus").
POINT IN THE ARCTIC AT WHICH EARTH'S MAGNETIC FIELD POINTS VERTICALLY DOWNWARDS, AT 86°N 175°E IN THE ARCTIC OCEAN AS OF 2019
Magnetic north; Magnetic north pole; Magnetic North; North Geomagnetic Pole; Northern magnetic pole; Magnetic North Pole; North Magnetic Pole; Project Polaris; Terran North Magnetic Pole; Mag north
magnetisch noorden

Definición

Magnetic Force
The forces of attraction and repulsion exercised by a magnet. By Ampere's theory it is identical with the forces of attraction and repulsion of electric currents.

Wikipedia

Lorentz force

In physics (specifically in electromagnetism) the Lorentz force (or electromagnetic force) is the combination of electric and magnetic force on a point charge due to electromagnetic fields. A particle of charge q moving with a velocity v in an electric field E and a magnetic field B experiences a force of

(in SI units). It says that the electromagnetic force on a charge q is a combination of a force in the direction of the electric field E proportional to the magnitude of the field and the quantity of charge, and a force at right angles to the magnetic field B and the velocity v of the charge, proportional to the magnitude of the field, the charge, and the velocity. Variations on this basic formula describe the magnetic force on a current-carrying wire (sometimes called Laplace force), the electromotive force in a wire loop moving through a magnetic field (an aspect of Faraday's law of induction), and the force on a moving charged particle.

Historians suggest that the law is implicit in a paper by James Clerk Maxwell, published in 1865. Hendrik Lorentz arrived at a complete derivation in 1895, identifying the contribution of the electric force a few years after Oliver Heaviside correctly identified the contribution of the magnetic force.