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  2. Galileo's Leaning Tower of Pisa experiment - Wikipedia

    en.wikipedia.org/wiki/Galileo's_Leaning_Tower_of...

    Galileo's thought experiment concerned the outcome (c) of attaching a small stone (a) to a larger one (b) Galileo set out his ideas about falling bodies, and about projectiles in general, in his book Two New Sciences (1638). The two sciences were the science of motion, which became the foundation-stone of physics, and the science of materials ...

  3. Free fall - Wikipedia

    en.wikipedia.org/wiki/Free_fall

    In classical mechanics, free fall is any motion of a body where gravity is the only force acting upon it. A freely falling object may not necessarily be falling down in the vertical direction. If the common definition of the word "fall" is used, an object moving upwards is not considered to be falling, but using scientific definitions, if it is ...

  4. History of experiments - Wikipedia

    en.wikipedia.org/wiki/History_of_experiments

    Previously, most scientists had used distance to describe falling bodies, applying geometry, which had been used and trusted since Euclid. [12] Galileo himself used geometrical methods to express his results. Galileo's successes were aided by the development of a new mathematics as well as cleverly designed experiments and equipment.

  5. File:Thought-experiment-free-falling-bodies.svg - Wikipedia

    en.wikipedia.org/wiki/File:Thought-experiment...

    English: The diagramm depicts Galileo's thought experiment on free falling bodies. Suppose you have two objects, one heavier (b) than the other (a). Suppose the heavier object falls faster.

  6. Equations for a falling body - Wikipedia

    en.wikipedia.org/wiki/Equations_for_a_falling_body

    For astronomical bodies other than Earth, and for short distances of fall at other than "ground" level, g in the above equations may be replaced by (+) where G is the gravitational constant, M is the mass of the astronomical body, m is the mass of the falling body, and r is the radius from the falling object to the center of the astronomical body.

  7. Galileo's law of odd numbers - Wikipedia

    en.wikipedia.org/wiki/Galileo's_law_of_odd_numbers

    In classical mechanics and kinematics, Galileo's law of odd numbers states that the distance covered by a falling object in successive equal time intervals is linearly proportional to the odd numbers. That is, if a body falling from rest covers a certain distance during an arbitrary time interval, it will cover 3, 5, 7, etc. times that distance ...

  8. Galileo's ship - Wikipedia

    en.wikipedia.org/wiki/Galileo's_ship

    Galileo's ship refers to two physics experiments, a thought experiment and an actual experiment, by Galileo Galilei, the 16th- and 17th-century physicist and astronomer. The experiments were created to argue the idea of a rotating Earth as opposed to a stationary Earth around which rotated the Sun , planets, and stars.

  9. Physics - Wikipedia

    en.wikipedia.org/wiki/Physics

    Download as PDF; Printable version; ... Galileo's pioneering work on telescopes and observational astronomy in the 16th and 17th ... Galileo's law of falling bodies.