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2.1. Target setting .
2.2. Analysis of movement of the closed mechanical system, proceeding from a principle of conservation of momentum .
2.2.1 Calculation of a linear momentum of system of mobile elements in relative coordinates system.
2.2.2 Calculation of a linear momentum of the closed mechanical system of bodies in absolute coordinates system for the working period. .
2.3. Analysis of movement of mechanical system by means of Lagrange's equations.
2.4. Conclusions
2.4.1 Calculation of the force developed by system of mobile elements.
2.4.2 Works of force and capacity.
2.5. Group work. Association of several systems of mobile elements.
2.6. Organization continuous (quasi-continuous) works .
2.6.1. Group of the FE with the phase shift equal to zero 2.6.2. Group of the FE with the phase shift which is distinct from zero
2.6.1. Group of the FE with the phase shift equal to zero
2.6.2. Group of the FE with the phase shift which is distinct from zero
2.7. Force elements with the increasing mass of mobile elements .
2.8. Materials for systems of mobile elements .
2.9. Restoration of power elements in a working condition .
2.10. Practical application .
Additional links:
- article "Non-jet movement" - article "Analogy between rotational and forward motion" - article "On the possibility of moving a closed mechanical system due to internal forces." - article "Variable pendulum. Varipend." - article " Application of the Meshchersky equation for objects of variable mass in an isolated mechanical system" - presentation " On the possibility of forced linear displacement in the space of an isolated mechanical system without external influence"
ButovSV 07/10/2006
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