Set of forces, pulleys, springs, deformations and thrust

Código: EQ008F

1072.008B_000
1042.032B_000
1042.028B_000
1032.056B_000
1032.052F_000
1032.052B_000
1032.022B_000
1032.012B_000
0001.046A_000
1032.026J_0.jpg
1032.039A_000
1032.015A_000
EQ008F_P01.jpg
1072.008B_001
1042.028B_001
1032.056B_001
1032.052F_001
1032.052B_001
1032.026J_0_001
1032.022B_001
1032.012B_001
0001.046A_001
1032.039A_001
1032.015A_001

Função

Intended for experimental study, physics laboratory and carrying out physics experiments on: Dynamics. A simple machine called a fixed pulley. A simple machine called a mobile pulley. The force applied to a spring and the elongation suffered. Constructing tables and graphs. Measuring weights of masses. The P versus m graph. The mechanical advantage of the mobile pulley. How a dynamometer works, the calibration of a rubber ring and a helical spring. The difference between applied force and restoring force. The helical spring and Hooke's law. Conservation of energy. Work and energy in a mass and helical spring system. Energy exchanges that occur in an oscillating mass-spring system. The work done by a force acting on a body and causing this body to move. Elastic potential energy and the work done by the spring. The principle of conservation of energy and kinetic energy. Hydrostatics. Buoyancy, a vertical force oriented from bottom to top. Difference buoyancy meter. Archimedes' principle. Checking the action of buoyancy. Determining the value of buoyancy. The buoyancy acting on a body submerged in a fluid is equal to the weight of the volume of fluid displaced by the body. Wave. The simple pendulum. The period of oscillation of a simple pendulum. What happens to the period when the length of the pendulum is changed. Dynamic determination of the K of a helical spring, mass-spring oscillator. The period, frequency and amplitude of a motion of a mass-spring oscillator. The SHM in an oscillating mass-spring system, etc.


Adicionar ao projeto

Cidepe STHEAM

Learn more about STHEAM education applied to this product by accessing the training path below:


3.4 MÁQUINAS SIMPLES E O PODER DAS ROLDANAS. "Desvendando os segredos das roldanas como máquinas simples e revelando sua importância em diversas áreas da sociedade."


Principais experimentos (exemplo visual)

  • A simple machine called a fixed pulley 0001.046A
  • A simple machine called a movable pulley. 1032.026J_0
  • The force applied to a spring and the elongation it undergoes. 1032.052F
  • Measuring weights of different masses. 1032.039A
  • The mechanical advantage of the movable pulley. 1032.026J
  • The operation of the dynamometer, the calibration of a rubber ring and a coil spring. 1032.022B
  • The helical spring and Hooke's law. 1032.052B
  • Work and energy in a mass and helical spring system. 1032.056B
  • Buoyancy, a vertical force, directed from bottom to top. 1042.028B
  • Archimedes' principle. 1042.032B
  • The simple pendulum. 1032.015A
  • Dynamic determination of K of a helical spring, mass oscillator and spring. 1032.012B
  • The SHM in an oscillating mass and coil spring system. 1072.008B

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