kilogram-force - перевод на итальянский
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kilogram-force - перевод на итальянский

UNIT OF FORCE IN GRAVITATIONAL METRIC SYSTEM; WEIGHT OF ONE KILOGRAM OF MASS IN STANDARD EARTH GRAVITY (I.E. 9.80665 N)
Kilopond; Kgf; Gram-force; Megagram-force; Kilograms-force; Kilogram force; Megapond; Decanewton; Dekanewton; Gram force; Pond (unit); Gram-weight; Kilogram weight; Kilogram metre; Grams-force; Kilo of force; Kilogram of force

kilogram-force         
forza di chilogrammo (unità di forza fisica)
magnetic force         
  • 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.
  • '''B'''}} field]] vary in space and time.
  • Right-hand rule for a current-carrying wire in a magnetic field ''B''
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
forza magnetica (sessuale tra due persone)
inertial force         
  • Figure 5: Crossing a rotating carousel walking at a constant speed from the centre of the carousel to its edge, a spiral is traced out in the inertial frame, while a simple straight radial path is seen in the frame of the carousel.
  • Figure 4: An orbiting coordinate system ''B'' similar to Figure 3, but in which unit vectors '''u'''<sub>j</sub>, j = 1, 2, 3 rotate to face the rotational axis, while the origin of the coordinate system ''B'' moves at constant angular rate ω about the fixed axis '''Ω'''.
  • In the inertial frame of reference (upper part of the picture), the black ball moves in a straight line. However, the observer (brown dot) who is standing in the rotating/non-inertial frame of reference (lower part of the picture) sees the object as following a curved path due to the Coriolis or centrifugal forces present in this frame.
  • Figure 2: An object located at '''x'''<sub>A</sub> in inertial frame ''A'' is located at location '''x'''<sub>B</sub> in accelerating frame ''B''. The origin of frame ''B'' is located at '''X'''<sub>AB</sub> in frame ''A''. The orientation of frame ''B'' is determined by the unit vectors along its coordinate directions, '''u'''<sub>j</sub> with ''j'' = 1, 2, 3. Using these axes, the coordinates of the object according to frame ''B'' are '''x'''<sub>B</sub> = ( '''''x'''''<sub>1</sub>, '''''x'''''<sub>2</sub>, '''''x'''''<sub>3</sub>).
  • Figure 3: An orbiting but fixed orientation coordinate system ''B'', shown at three different times. The unit vectors '''u'''<sub>j</sub>, j = 1, 2, 3 do ''not'' rotate, but maintain a fixed orientation, while the origin of the coordinate system ''B'' moves at constant angular rate ω about the fixed axis '''Ω'''. Axis '''Ω''' passes through the origin of inertial frame ''A'', so the origin of frame ''B'' is a fixed distance ''R'' from the origin of inertial frame ''A''.
  • Rain and shell frame perspectives of physical (red) and fictitious (blue) forces for an object that rolls off a cliff.
  • Map and spin frame perspectives of physical (red) and fictitious (blue) forces for an object released from a carousel
APPARENT FORCE THAT ACTS ON ALL MASSES WHOSE MOTION IS DESCRIBED USING A NON-INERTIAL FRAME OF REFERENCE, SUCH AS A ROTATING REFERENCE FRAME
Inertial force; Fictitious forces; Fictional force; Apparent force; Fictitious Force; Pseudo force; Pseudoforce; Inertial Force; Imaginary force; D'Alembert force; Pseudo-force; Ficticious Force; Effective force; Kinetic reaction
forza di inerzia

Определение

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.

Википедия

Kilogram-force

The kilogram-force (kgf or kgF), or kilopond (kp, from Latin: pondus, lit. 'weight'), is a non-standard gravitational metric unit of force. It does not comply with the International System of Units (SI) and is deprecated for most uses. The kilogram-force is equal to the magnitude of the force exerted on one kilogram of mass in a 9.80665 m/s2 gravitational field (standard gravity, a conventional value approximating the average magnitude of gravity on Earth). That is, it is the weight of a kilogram under standard gravity. Therefore, one kilogram-force is by definition equal to 9.80665 N. Similarly, a gram-force is 9.80665 mN, and a milligram-force is 9.80665 μN.

Kilogram-force is a non-standard unit and is classified in the International System of Units (SI) as a unit that is not accepted for use with SI.