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Solid and fluid mechanics set, straight ramp, analog and digital multimeter, multiple functions, sensor

Function

Intended for experimental study, physics laboratory and carrying out physics experiments on: Kinematics, range, uncertainty and speed in a horizontal launch, measuring the range, dynamics, the simple machine called a fixed pulley, the simple machine called a mobile pulley, the mechanical advantage of the mobile pulley, building the simple two-element exponential hoist machine with a fixed pulley, the mechanical advantage of the exponential hoist, building the simple three-element exponential hoist machine with a fixed pulley, the mobile pulley, building the simple parallel block machine, the golden law of mechanics, the characteristic curve of the elongation of a helical spring and a rubber belt, elastic hysteresis, Hooke's law in a helical spring, the restoring force of the spring and Newton's third law, association of helical springs in series, elastic deformation and plastic deformation, resulting elasticity constant in helical springs in series, association of helical springs in parallel, the resulting elasticity constant in parallel helical springs, statics, conditions of stable, unstable and indifferent static equilibrium, force diagram, equilibrium conditions of a suspended rigid body, polyhedral geometric solid, non-polyhedral geometric solid, homogeneous body, regular and irregular body, equilibrium conditions of an extended body, barycenter (center of gravity), conservation of mechanical energy, work and mechanical energy in a system of mass and helical spring, mechanical work, work done by the force along the central axis of the spring, elastic potential energy and kinetic energy (energy of motion), principle of conservation of mechanical energy in a system of mass and helical spring, determining the values of potential energy, kinetic energy and speed at a given position on the trajectory, horizontal launch, range, uncertainty and amount of horizontal movement, decomposition of two-dimensional movement into two rectilinear one-dimensional movements, thrust, amount of movement, measurement inaccuracy, measurement deviation, uncertainty of the measurement of range, average value of range, measuring height of fall and determining the interval of time that the projectile remains in the air (time flight), the horizontal component of velocity, horizontal momentum, conservation of horizontal momentum, hydrostatics, the buoyant force acting on a body immersed in a liquid, correction of the difference in volume in an Archimedes cylinder, the weight of the body, the apparent weight of the body within the liquid, the force called buoyancy, Archimedes' principle, fluid, principle of impenetrability of matter, the value of the buoyancy depends on the weight of the volume of the displaced fluid, the buoyancy depends on the specific weight of the fluid in which the body is submerged, the density (absolute density) and the specific mass, specific weight, measuring the value of the buoyancy on a body submerged in drinking water, measuring the value of the buoyancy on a body submerged in salt water, the force called buoyancy, determining the absolute density of the solid, using the buoyancy, wave, the simple pendulum and its laws, ideal simple pendulum, elongation and amplitude in the movement of the simple pendulum, period and frequency as a function of the amplitude of the simple pendulum for the same length, constructing tables and graphs, law of isochronism of the pendulum, law of masses and pendulum substances, law of lengths of the simple pendulum, observing the oscillating movement of the mass in a system of mass and helical spring, mass-spring system and simple harmonic motion (SHM), dynamic determination of the elastic constant in an oscillating system of mass and helical spring (SHM), measuring the weight and calculating the mass, measuring the period of the SHM, etc.

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Key Experiments

  • » Range, uncertainty and velocity in a horizontal launch. - 1032.064_1A
  • » The range of a horizontal projectile launch from its launch velocity. - 1032.064_2A_4
  • » Determination of impact velocity from measurement of horizontal launch velocity. - 1032.068_2A_4
  • » Getting to know the fixed pulley, a simple machine. - 1032.026A_2
  • » Getting to know the mobile pulley, a simple machine. - 1032.027A_2
  • » The exponential hoist, a simple machine. - 1032.030A_2
  • » The parallel notebook, a simple machine. - 1032.031_2
  • » The characteristic curve of elongation of a coil spring and a rubber belt, elastic hysteresis - 1032.022A_2
  • » Hooke's law on a helical spring. - 1032.052A_2
  • » The association of coil springs in series. - 1032.053_2
  • » The association of coil springs in parallel. - 1032.053A_2
  • » The conditions of stable, unstable and indifferent static equilibrium for a supported spherical rigid body. - 1032.051_1
  • » The equilibrium conditions for a suspended rigid body. - 1032.050_1
  • » Mechanical work, potential energy and kinetic energy in a mass and helical spring system. - 1032.056A_2
  • » The amount of horizontal movement of a sphere in a horizontal throw. - 1032.076_2C4
  • » The hydrostatic buoyant force, a quantity with direction, sense and module. - 1042.028A_2
  • » Archimedes' principle, buoyancy and its relation to the volume and density of the displaced liquid. - 1042.032A_2
  • » Laws of the simple pendulum. - 1032.013_2C4
  • » Observing the oscillating motion, MHS, in a mass and helical spring system. - 1072.008A_2
  • » Dynamic determination of the spring constant in an oscillating system of mass and helical spring, MHS. - 1032.012A_2
  • » Conservation of momentum, kinetic energy and coefficient of restitution in an elastic collision. - 1032.076_2C6
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