Projectable rotational device with removable arrows and font
Function
Intended for study, physics laboratory, physics experiments on: Kinematics. The relativity of motion according to the reference frame. Motions according to the reference frame. Pure rotational motion and pure translational motion. The MCU, uniform circumferential motion. The period of the circumferential motion. The unit of the period. A technique to reduce the timing error. Frequency and its relationship with the period. Calculation of the tangential velocity as a function of the period, calculation of the tangential velocity as a function of the frequency. The orientation of the tangential velocity vector and the orientation of the centripetal acceleration vector. Angular velocity. The relationship between the tangential velocity and the angular velocity. The transmission velocity from a uniform circumferential motion. The combined motion of the MRU with the MCU. Universal gravitation. Kepler's laws for planetary motion. Kepler's first law, the law of orbits. The ellipse. Kepler's second law, the law of areas. Determining the period of the planet's orbit. Kepler's third law, the law of periods. Wave. The SHM from the MCU. The movement of the projection P of a body Q in MCU, about one of its axes. The movement seen looking at the disk from the front (MCU). The tangential velocity of the body Q in MCU. The angular velocity of the body Q in MCU. The SHM executed by the projection P of the body Q in MCU on a screen perpendicular to the plane containing x and y. Parameters of the SHM of the projection P, measured on the screen. Relating the SHM executed by the body Q with the SHM executed by its projection P. Relating the angular velocity of the body Q (in MCU) with its angular frequency (SHM). The tangential velocity of the body Q in MCU and the linear velocity of its projection P in SHM. The behavior of the elongation, velocity and acceleration of the projection P in y, when the body Q transits through different quadrants. The elongation, velocity and acceleration of the projection P in SHM, when the body Q transits in MCU in the first quadrant. The elongation, velocity and acceleration of the projection P in SHM, when the body Q transits in MCU in the second quadrant. The elongation, velocity and acceleration of the projection P in SHM, when the body Q transits in MCU in the third quadrant. The elongation, velocity and acceleration of the projection P in SHM, when the body Q transits in MCU in the fourth quadrant. Gravitation, Kepler's laws. The shape and direction of the orbits of the planets. The ecliptic. Kepler's first law, the law of orbits. The perigee and perihelion of the Earth. The apogee and aphelion of the Earth. The eccentricity of an ellipse. The eccentricity of the orbits of the planets of the solar system. The values of the perihelion and aphelion of the Earth. Kepler's second law, Kepler's law of areas. The areal velocity of a planet, etc. Note: Does not include sensors and data acquisition system.
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Key Experiments
- » The relativity of motion according to the reference - 1032.002
- » The UCM, uniform circular motion - 1032.060
- » The combined movement of URM with UCM - 1032.060A0
- » Gravitation, planets, and Kepler´s laws of planetary motion - 1072.003
- » The simple harmonic motion, from the UCM, using arrows - 1072.004B
- » - 1032.002
- » - 1032.060
- » - 1032.060A0
- » - 1072.003
- » - 1072.004B