Set Mechanics 1
Code: SCN-F001
Function
Intended for experimental study, science laboratory work, and conducting science experiments on: Dynamics. The helical spring and Hooke's Law. Temporary deformation, elastic deformation. Permanent deformation, plastic deformation. Constructing tables and graphs. Determining the spring constant. What Hooke's Law states. Association of helical springs in series. Determining the spring constant of springs in series. Association of helical springs in parallel. Determining the spring constant of springs in parallel. Conservation of Energy. Work and energy exchange in an oscillating mass-spring system, conservation of mechanical energy. Energy exchanges that occur in the oscillating mass-spring system. Remembering the work done by a force that causes the displacement of a body. Determining the initial position. Varying forces and observing deformations. The elongation suffered by the spring under the action of a force. Determining the elongation of the spring for each applied force. The work done by each of the applied forces. What is meant by elastic force, a restoring force? Elastic potential energy and kinetic energy. The principle of conservation of energy. Hydrostatics. Buoyancy, experimental verification. Determining, by difference, the buoyant force acting on a body submerged in a liquid. Archimedes' principle, buoyancy and its relationship with the volume and density of the displaced liquid. The principle of the impenetrability of matter. How to correct for volume differences. Measuring forces with a dynamometer. Calculating and determining the characteristics of the hydrostatic buoyant force. Determining the weight of the volume of displaced liquid. The relationship between buoyancy and the weight of the volume of displaced liquid. Archimedes' principle, Archimedes' theorem. Absolute density and relative density. Specific weight. The relationship between specific weight and absolute density. The relationship between buoyancy and the volume, density of the displaced liquid, and acceleration due to gravity. The relationship between buoyancy and the volume and specific weight of the displaced liquid. Determining the density of an irregular solid through buoyancy. Wave motion. Simple harmonic motion (SHM) in a mass and oscillating helical spring system, energy transformations. Simple harmonic motion performed by a mass coupled to a spring. What is meant by elastic force, restoring force. The pulsation of SHM. Elastic potential energy, etc.
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