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Force panel, pulleys, levers, springs, crossbar, for mechanics

Function

Intended for experimental study, physics laboratory and carrying out physics experiments on: Statics. The composition of concurrent coplanar forces, with 90° to each other. Force and vector. What is meant by vector. Characteristics of a vector. Graphical representation of a vector quantity. Collinear vectors and coplanar vectors. The resulting vector. Operations with coplanar and non-parallel vectors. Orthogonal coplanar vectors, a special case. Types of force. Measuring the total weight of masses. The composition of concurrent coplanar forces, with 60° to each other. Remembering collinear vectors and coplanar vectors. Non-orthogonal coplanar vectors, parallelogram rule. Measuring the force weight of objects. The composition of concurrent coplanar forces with 120° to each other. Remembering collinear vectors and coplanar vectors. Non-orthogonal coplanar vectors, parallelogram rule. The diagram of acting forces. The composition of concurrent coplanar forces. Remembering that it is the force, vector and the parallelogram rule. What is meant by vector. Characteristics of a vector. Graphical representation of a vector quantity. Collinear vectors and coplanar vectors. The resulting vector. Operations with coplanar and non-parallel vectors. Measuring the force weight of objects. Force diagram. Comparing the resulting force with the balancing force. Varying the forces acting on O. The equilibrium conditions of the rigid body, Varignon's theorem. Force diagram. The two conditions, necessary and sufficient, for the equilibrium of a rigid body. Checking the equilibrium conditions of the rigid body. Varignon's theorem. Equilibrium of the rigid body, the inter-fixed lever, Varignon's theorem.35The inter-fixed lever, a simple machine. Checking the equilibrium of the inter-fixed lever, Varignon's theorem. Equilibrium of a rigid body, the inter-resistant lever, Varignon's theorem. Equilibrium of a rigid body applied, the interpotent lever, Varignon's theorem. Dynamics. The fixed pulley and its mechanical advantage. The real static mechanical advantage of the fixed pulley. The ideal static mechanical advantage of the fixed pulley. The dynamic mechanical advantage of the fixed pulley. The mobile pulley and its mechanical advantage. The real static mechanical advantage of the mobile pulley. The ideal static mechanical advantage of the mobile pulley. The dynamic mechanical advantage of the mobile pulley. The exponential hoist and its mechanical advantage. The mechanical advantage of the exponential hoist composed of two mobile pulleys. The mechanical advantage of the exponential hoist with three mobile pulleys. The parallel block and its mechanical advantage. The parallel block. Checking the mechanical advantage of the parallel block. A freight elevator system with fixed pulleys and platform. Weighing the beam. The diagram of forces acting on the beam. Translational equilibrium condition. A freight elevator system with fixed pulleys, movable pulleys and crossbar. Hooke's Law and the spring constant of a helical spring, restoring force of a spring. The restoring force applied by the spring. Determining the spring constant of the helical spring. Hooke's Law, the spring constant in a series combination of helical springs. Determining the spring constant of two helical springs in series. Hooke's Law, the spring constant in a parallel combination of helical springs. Determining the spring constant of two helical springs in parallel. Conservation of Energy. Work and mechanical energy in a mass and helical spring system. Potential energy. Kinetic energy. The principle of conservation of energy. Wave energy. The mass and spring oscillator, dynamic determination of the spring constant of a spring, etc.

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Key Experiments

  • » The composition of concurrent coplanar forces, 90° apart. - 1032.040F1
  • » The composition of concurrent coplanar forces, with 60 - 1032.040F2
  • » The composition of concurrent coplanar forces at 120° to each other. - 1032.040F
  • » The composition of concurrent coplanar forces. - 1032.040F_0
  • » The equilibrium conditions of a rigid body, Varignon's theorem. - 1032.035F
  • » Rigid body equilibrium, the interfixed lever, Varignon's theorem. - 1032.035AF
  • » Equilibrium of a rigid body, the inter-resisting lever, Varignon's theorem. - 1032.035BF
  • » Equilibrium of a rigid body applied, the interpotent lever, Varignon's theorem. - 1032.035CF
  • » The fixed pulley and its mechanical advantage. - 1032.026AF
  • » The movable pulley and its mechanical advantage. - 1032.027AF
  • » The exponential hoist and its mechanical advantage. - 1032.030AF
  • » The parallel block and its mechanical advantage. - 1032.031F
  • » A freight elevator system with fixed pulleys and platform. - 1032.040E
  • » Applications of fixed and mobile pulleys in a freight elevator system. - 1032.040E2
  • » Hooke's law and the spring constant of a helical spring, restoring force of a spring. - 1032.052AF
  • » Hooke's Law, the spring constant in a series combination of helical springs. - 1032.052AF_1
  • » Hooke's Law, spring constant in a parallel association of helical springs. - 1032.052AF_2
  • » Work and mechanical energy in a mass and helical spring system. - 1032.056AF
  • » The mass and spring oscillator, dynamic determination of the spring constant. - 1032.012AF
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