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Inclined plane with interface and sensors


Cidepe STHEAM

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

3.3 KINEMATICS ON INCLINED PLANE. "But what does the free fall of bodies have to do with the study of a Uniformly Varied Rectilinear Motion (MRUV)?"

Function

Intended for experimental study, physics laboratory and carrying out physics experiments on: Physics. Kinematics. Reference frame, position, movement and trajectory. What is meant by mobile. Trajectory and displacement. The difference between displacement and distance traveled. Cartesian reference system on the plane, orthogonal Cartesian plane. The quadrants. The coordinates of any point on the plane that contains the orthogonal Cartesian system. Differences between scalar quantity and vector quantity. Rectilinear and uniformly varied movement on an inclined plane. Uniformly varied rectilinear movement, MRUV, with positive acceleration. Dynamics. Friction forces and Newton's first law of motion. Friction force and the nature of surfaces in contact. Friction forces between surfaces of different natures that are in contact. Friction force, apparent area and real area of contact of surfaces. Kinetic friction force. Determination of the coefficients of static, kinetic and sliding friction on an inclined plane. The coefficient of kinetic sliding friction as a function of the tangent of the angle of inclination. The coefficient of kinetic sliding friction of a body on an inclined plane. The effect of lubricants on the coefficients of static and kinetic sliding friction. Statics. The equilibrium conditions of a mobile on an inclined plane. The weight force of a body is directly proportional to its mass. The equilibrium of a material body under the action of coplanar forces. Measuring and calculating forces. Diagram of coplanar forces, forces that are in the same plane. The balancing forces on the x and y axes. Determining the relative percentage error. The driving force, the resistant force and the mechanical advantage of the inclined plane, simple machine. Measuring the weights of different masses. The resistant force and the driving force. The driving force acting on a body on an inclined plane depends on the inclination of the ramp. Measuring driving forces for different inclinations of the ramp. The incinerated plane is a simple machine. Determining the mechanical advantage of the inclined plane. Conservation of mechanical energy. Conservation of mechanical energy and moment of inertia, etc.Note: Interface not included.

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Key Experiments

  • » Reference, position, movement and trajectory. - 1032.001
  • » The rectilinear and uniformly varied motion on an inclined plane. - 1032.006_E
  • » Frictional forces and Newton's first law of motion. - 1032.046
  • » Determination of the coefficients of static, kinetic and sliding friction on an inclined plane. - 1032.048
  • » The equilibrium conditions of a mobile on an inclined plane. - 1032.043
  • » The driving force, the resisting force and the mechanical advantage of the inclined plane, simple machine. - 1032.034
  • » Conservation of mechanical energy and the moment of inertia. - 1032.072A2
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