Physics
In his On Generation and Corruption, Aristotle related each of the four elements proposed earlier by Empedocles, earth, water, air, and fire, to two of the four sensible qualities, hot, cold, wet, and dry. In the Empedoclean scheme, all matter was made of the four elements, in differing proportions. Aristotle's scheme added the heavenly aether, the divine substance of the heavenly spheres, stars and planets.
Aristotle describes two kinds of motion: "violent" or "unnatural motion", such as that of a thrown stone, in the Physics (254b10), and "natural motion", such as of a falling object, in On the Heavens (300a20). In violent motion, as soon as the agent stops causing it, the motion stops also: in other words, the natural state of an object is to be at rest, since Aristotle does not address friction. With this understanding, it can be observed that, as Aristotle stated, heavy objects (on the ground, say) require more force to make them move; and objects pushed with greater force move faster. This would imply the equation
F
=
m
v
{\displaystyle F=mv}
,
incorrect in modern physics.
Natural motion depends on the element concerned: the aether naturally moves in a circle around the heavens, while the 4 Empedoclean elements move vertically up (like fire, as is observed) or down (like earth) towards their natural resting places.
In the Physics (215a25), Aristotle effectively states a quantitative law, that the speed, v, of a falling body is proportional (say, with constant c) to its weight, W, and inversely proportional to the density, ρ, of the fluid in which it is falling:
v
=
c
W
ρ
{\displaystyle v=c{\frac {W}{\rho }}}
Aristotle implies that in a vacuum the speed of fall would become infinite, and concludes from this apparent absurdity that a vacuum is not possible. Opinions have varied on whether Aristotle intended to state quantitative laws. Henri Carteron held the "extreme view" that Aristotle's concept of force was basically qualitative, but other authors reject this.
Archimedes corrected Aristotle's theory that bodies move towards their natural resting places; metal boats can float if they displace enough water; floating depends in Archimedes' scheme on the mass and volume of the object, not, as Aristotle thought, its elementary composition.
Aristotle's writings on motion remained influential until the early modern period. John Philoponus (in late antiquity) and Galileo (in the early modern period) are said to have shown by experiment that Aristotle's claim that a heavier object falls faster than a lighter object is incorrect. A contrary opinion is given by Carlo Rovelli, who argues that Aristotle's physics of motion is correct within its domain of validity, that of objects in the Earth's gravitational field immersed in a fluid such as air. In this system, heavy bodies in steady fall indeed travel faster than light ones (whether friction is ignored, or not), and they do fall more slowly in a denser medium.
Isaac Newton's "forced" motion corresponds to Aristotle's "violent" motion with its external agent, but Aristotle's assumption that the agent's effect stops immediately it stops acting (e.g., the ball leaves the thrower's hand) has awkward consequences: he has to suppose that surrounding fluid helps to push the ball along to make it continue to rise even though the hand is no longer acting on it, resulting in the Medieval theory of impetus.
Aristotle distinguished between four different "causes"(Ancient Greek: αἰτία, aitia) or explanations for why an object exists or changes:
The material cause describes the material out of which something is composed. Thus the material cause of a wooden table is the wood it is made of.
The formal cause is its form, i.e., the arrangement of that matter, the design of the table independent of the specific material it is made of.
The efficient cause is "the primary source", the modern definition of "cause" as either the agent or agency of particular events or states of affairs. In the case of two dominoes, when the first is knocked over it causes the second to fall. In the case of an animal, this agency is a combination of how it develops from the egg, and how its body functions.
The final cause (telos) is its purpose, the reason why it exists or is done, or function that something is supposed to serve. In the case of living things, it implies adaptation to a particular way of life.
Aristotle was aware of Pythagorean optics. He used optics in his Meteorology, treating it as a science. He viewed optics as stating the laws of sight, thus combining what is now treated as physics and biology. The process of seeing involved the movement of a visible form from the thing seen through the air (or other medium) to the eye, where the form comes to rest. Aristotle does not analyse the nature of this movement; he does not anticipate geometrical optics.
According to Aristotle, spontaneity and chance are causes of some things, distinguishable from other types of cause such as simple necessity. Chance as an incidental cause lies in the realm of accidental things, "from what is spontaneous". There is also a more specific kind of chance, which Aristotle names "luck", that only applies to people's moral choices.