laws of physics - translation to ιταλικό
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laws of physics - translation to ιταλικό

STATEMENT BASED ON REPEATED EXPERIMENTAL OBSERVATIONS THAT DESCRIBES SOME ASPECTS OF THE UNIVERSE
Laws of physics; Law of physics; Physical law; Laws of science; List of laws in Science; Laws of Physics; Physical laws; List of scientific laws; Laws of the universe; Empirical law; List of laws in science; List of laws of science; Law (science); Law of science; Scientific Law; Scientific laws; Law of nature (science); Scientific principle; Mathematical descriptions of physical laws; User:Maschen/Mathematical descriptions of physical laws; Empirical laws
  • Scientific theories explain why something happens, whereas scientific law describes what happens.

laws of physics         
le leggi di fisica
law of inertia         
  • Two objects in uniform circular motion, orbiting around the [[barycenter]] (center of mass of both objects)
  • A simulation of a larger, but still microscopic, particle (in yellow) surrounded by a gas of smaller particles, illustrating [[Brownian motion]].
  • Three double pendulums, initialized with almost exactly the same initial conditions, diverge over time.
  • A [[free body diagram]] for a block on an inclined plane, illustrating the [[normal force]] perpendicular to the plane (''N''), the downward force of gravity (''mg''), and a force ''f'' along the direction of the plane that could be applied, for example, by a string.
  • reaction force]] downwards using [[rocket engine]]s. This pushes the rocket upwards, without regard to the ground or the [[atmosphere]].
  • cork]], and [[toothpick]] is on top of the pen's tip
  • a celebrated theorem that relates symmetries and conservation laws]], a key development in modern physics that is conveniently stated in the language of Lagrangian or Hamiltonian mechanics.
  • Artificial satellites move along curved [[orbit]]s, rather than in straight lines, because of the Earth's [[gravity]].
  • Space Shuttle ''Atlantis'']], propel matter in one direction to push the craft in the other. This means that the mass being pushed, the rocket and its remaining onboard fuel supply, is constantly changing.
  • Animation of three points or bodies attracting to each other
CLASSICAL FORMULATION OF MECHANICS BY ISAAC NEWTON
Newton's Laws of Motion; Newtonian laws of motion; Newtonian mechanics; Newton's second law of motion; Newton's first law of motion; Newtons law; Newton's Third Law; Newton's laws; Newton's First Law of Motion; Newton's Second Law of Motion; Newton's Third Law of Motion; Weak form of Newton's Third Law; Strong form of Newton's Third Law; Newton's Second Law; Newton's second law; Newtons laws; Newtons second law; Newton’s laws of motion; Newton's third law of motion; Newton's first law; Newton's third law; Law of inertia; Law of Inertia; Newton's 2nd law; Newton's First Law; Newton's Laws; F=ma; First law of motion; 1st law of motion; Second law of motion; Newtons first law; Newton's Axioms; 3 laws of physics; Newtons Three Laws of Motion; F=ma.; The formula for newton's second law of motion; Newton first law; Newton first law of motion; Newton law; Newton laws; Newton laws of motion; Newton second law; Newton second law of motion; Newton third law; Newton third law of motion; F=mA; Third Law of Newton; Newton's three laws of motion; Newton's 3 laws of motion; Newton’s third law; Newton's law of motion; Newtons laws of motion; Newtons second law of motion; Newton's 3rd law; Newtons Laws; Newton II; Newtons Laws of Motion; Three laws of motion; Newtons 2nd law; Newtons third law of motion; Newton's 1st Law; Newton's 3 laws; Uniform motion; Newton's 3rd Law of Motion; Newtonian laws; Force balance; Newton's 2nd Law of Motion; Newton's Three Laws of Motion; Newtons 3rd law; Newton’s second law of motion; Anomalies of Newton's first law of motion; Anomolies of Newton's First law of motion; Laws of force; Isaac Newton's laws of motion; Newton’s Third Law of Motion; Third law of motion; F = ma; Newton's law of inertia
legge d"inerzia
uniform motion         
  • Two objects in uniform circular motion, orbiting around the [[barycenter]] (center of mass of both objects)
  • A simulation of a larger, but still microscopic, particle (in yellow) surrounded by a gas of smaller particles, illustrating [[Brownian motion]].
  • Three double pendulums, initialized with almost exactly the same initial conditions, diverge over time.
  • A [[free body diagram]] for a block on an inclined plane, illustrating the [[normal force]] perpendicular to the plane (''N''), the downward force of gravity (''mg''), and a force ''f'' along the direction of the plane that could be applied, for example, by a string.
  • reaction force]] downwards using [[rocket engine]]s. This pushes the rocket upwards, without regard to the ground or the [[atmosphere]].
  • cork]], and [[toothpick]] is on top of the pen's tip
  • a celebrated theorem that relates symmetries and conservation laws]], a key development in modern physics that is conveniently stated in the language of Lagrangian or Hamiltonian mechanics.
  • Artificial satellites move along curved [[orbit]]s, rather than in straight lines, because of the Earth's [[gravity]].
  • Space Shuttle ''Atlantis'']], propel matter in one direction to push the craft in the other. This means that the mass being pushed, the rocket and its remaining onboard fuel supply, is constantly changing.
  • Animation of three points or bodies attracting to each other
CLASSICAL FORMULATION OF MECHANICS BY ISAAC NEWTON
Newton's Laws of Motion; Newtonian laws of motion; Newtonian mechanics; Newton's second law of motion; Newton's first law of motion; Newtons law; Newton's Third Law; Newton's laws; Newton's First Law of Motion; Newton's Second Law of Motion; Newton's Third Law of Motion; Weak form of Newton's Third Law; Strong form of Newton's Third Law; Newton's Second Law; Newton's second law; Newtons laws; Newtons second law; Newton’s laws of motion; Newton's third law of motion; Newton's first law; Newton's third law; Law of inertia; Law of Inertia; Newton's 2nd law; Newton's First Law; Newton's Laws; F=ma; First law of motion; 1st law of motion; Second law of motion; Newtons first law; Newton's Axioms; 3 laws of physics; Newtons Three Laws of Motion; F=ma.; The formula for newton's second law of motion; Newton first law; Newton first law of motion; Newton law; Newton laws; Newton laws of motion; Newton second law; Newton second law of motion; Newton third law; Newton third law of motion; F=mA; Third Law of Newton; Newton's three laws of motion; Newton's 3 laws of motion; Newton’s third law; Newton's law of motion; Newtons laws of motion; Newtons second law of motion; Newton's 3rd law; Newtons Laws; Newton II; Newtons Laws of Motion; Three laws of motion; Newtons 2nd law; Newtons third law of motion; Newton's 1st Law; Newton's 3 laws; Uniform motion; Newton's 3rd Law of Motion; Newtonian laws; Force balance; Newton's 2nd Law of Motion; Newton's Three Laws of Motion; Newtons 3rd law; Newton’s second law of motion; Anomalies of Newton's first law of motion; Anomolies of Newton's First law of motion; Laws of force; Isaac Newton's laws of motion; Newton’s Third Law of Motion; Third law of motion; F = ma; Newton's law of inertia
movimento uniforme

Ορισμός

physics
Physics is the scientific study of forces such as heat, light, sound, pressure, gravity, and electricity, and the way that they affect objects.
...the laws of physics.
...experiments in particle physics.
N-UNCOUNT

Βικιπαίδεια

Scientific law

Scientific laws or laws of science are statements, based on repeated experiments or observations, that describe or predict a range of natural phenomena. The term law has diverse usage in many cases (approximate, accurate, broad, or narrow) across all fields of natural science (physics, chemistry, astronomy, geoscience, biology). Laws are developed from data and can be further developed through mathematics; in all cases they are directly or indirectly based on empirical evidence. It is generally understood that they implicitly reflect, though they do not explicitly assert, causal relationships fundamental to reality, and are discovered rather than invented.

Scientific laws summarize the results of experiments or observations, usually within a certain range of application. In general, the accuracy of a law does not change when a new theory of the relevant phenomenon is worked out, but rather the scope of the law's application, since the mathematics or statement representing the law does not change. As with other kinds of scientific knowledge, scientific laws do not express absolute certainty, as mathematical theorems or identities do. A scientific law may be contradicted, restricted, or extended by future observations.

A law can often be formulated as one or several statements or equations, so that it can predict the outcome of an experiment. Laws differ from hypotheses and postulates, which are proposed during the scientific process before and during validation by experiment and observation. Hypotheses and postulates are not laws, since they have not been verified to the same degree, although they may lead to the formulation of laws. Laws are narrower in scope than scientific theories, which may entail one or several laws. Science distinguishes a law or theory from facts. Calling a law a fact is ambiguous, an overstatement, or an equivocation. The nature of scientific laws has been much discussed in philosophy, but in essence scientific laws are simply empirical conclusions reached by scientific method; they are intended to be neither laden with ontological commitments nor statements of logical absolutes.

Παραδείγματα από το σώμα κειμένου για laws of physics
1. "The laws of physics are the laws of physics," said Macy, the rear admiral.
2. The laws of physics, disturbed already, would be completely disfigured.
3. When do the laws of physics step in and take precedence over those of biology?
4. Unless you can defy the laws of physics, you have to consider a congestion charge.
5. So far, at least the laws of physics present no showstoppers.