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third law of motion

third law of motion

1 4.2
Every push on an object causes an equal push back in the opposite direction
  • noun
  • /θɜrd lɔː ʌv ˈmoʊʃən/
  • Specialized
translation icon : tercera ley del movimiento
  • A cannonball propelling forward demonstrates Newton's third law of motion as it pushes the cannon backward.
  • Newton's third law of motion

Examples

  • When you jump off a small boat, you can see Newton's third law of motion in action; as you go forward, the boat moves backward.

  • So Newton's third law of motion--

  • Criticism is like Newton's third law of motion: for every action, there is an equal and opposite reaction.

    Academic text (1992)
  • Newton's third law of motion (i.e., for every action there is an equal and opposite reaction) says that the thumb's force transmitted to one blade is opposed by the fingers' force transmitted to the other blade, converging at the paper to shear it.

    Academic text (2011)
  • In a game of pool, striking the cue ball causes it to roll while the cue stick reacts, exemplifying Newton's third law of motion.

Synonyms

Newton's third law
vsthird law of motion
  • Specialized
1 4.1

When one object pushes another, the other object pushes back equally

is the same principle but named with a short possessive form not a descriptive phrase
Newton's third law of motion
vsthird law of motion
  • Specialized
1 3.9

Every force causes an equal force in the opposite direction

is the same rule but worded in a shorter less formal label
law of action and reaction
vsthird law of motion
  • Specialized
1 4.1

Every push or pull makes an equal force in the opposite direction

expresses the same idea but uses a formal descriptive name instead

Surface Forms

Morphology

third + law + of + motion

The phrase is compositionally transparent: ‘third’ (ordinal) + ‘law’ (a scientific/general rule) + ‘of motion’ (about movement) clearly signals a specific, numbered scientific law concerning motion, so a B1 learner who knows the words will understand it names a law about motion. The precise content of that law (equal and opposite reaction) is specialized knowledge not recoverable from the constituents, but the referential meaning is predictable from the parts.

Etymology

The third law of motion comes from watching how pushes always come in pairs: when you push something, it pushes back. So 'for every action there is an equal and opposite reaction', which is why the law explains that forces always act in pairs.