Series: Newton's Unfinished Theorem, The Inertial Drive
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2) Newton's Unfinished Theorem, The Inertia Drive -
3) Newton's Unfinished Theorem, The Inertial Drive -
1) Newton's Unfinished Theorem, The Inertial Drive -
4) Newton's Unfinished Theorem, The Inertial Drive -
5) Newton's Unfinished Theorem, The Inertia Drive -
6) Newton's Unfinished Theorem, The Inertial Drive -
7) The Education Device One Impulse Pendulum Test -
8) The Pendulum Test - Inertial Propulsion Device
About this Series
- Lessons: 8
- Total Time: 1h 10m
- Use: Watch Online & Download
- Access Period: Unlimited
- Created At: 02/16/2012
- Last Updated At: 12/05/2012
This is the complete series of presentations on Inertial Propulsion Physics, from the beginning of modern physics to the method of how to arriving at a true self contained inertial propulsion drive. In particular, presenting the physics method of an unimpeded cyclic inertial mass motion frequency modulation. Further presenting the only successful Inertial Propulsion Pendulum Test. Non-harmonious motion, Non- harmonic motion, Unidirectional Force Drive, Anti Gravity, Propellantless inertial propulsion physics. Hertz mechanics, Lagrange dynamics, Hamiltonian dynamics, Gaus rotational dynamics, Conservation of momentum within Machines, Distribution of mechanical energy within machines, Physics of Recoilless mechanics, recoilless Trebuchet.
About this Author
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- Gottfried Gutsche
- 8 lessons
- Joined:
02/09/2012
ABOUT THE AUTHOR
The author, Gottfried J. Gutsche has an education in Control Engineering, Cybernetics and Electrical Engineering applying to the electrical control of motors for robots in factory automaton technologies. In particular, attended courses teaching machine inertial mass manipulation and control loop stability analysis. Subsequently worked 28 years in data progressing technologies, from the end era of electro-mechanical data processing technologies, the era of emerging discreet transistor computers with discreet wiring technologies, the era of emerging integrated circuit computers to the mature technologies of large-scale circuit integration for very large computer systems. From...
Lessons Included
- 2) Newton's Unfinished Theorem, The Inertia Drive
- 3) Newton's Unfinished Theorem, The Inertial Drive
- 1) Newton's Unfinished Theorem, The Inertial Drive
- 4) Newton's Unfinished Theorem, The Inertial Drive
- 5) Newton's Unfinished Theorem, The Inertia Drive
- 6) Newton's Unfinished Theorem, The Inertial Drive
- 7) The Education Device One Impulse Pendulum Test
- 8) The Pendulum Test - Inertial Propulsion Device
None of the lesson in this series have been reviewed.
Below are the descriptions for each of the lessons included in the series:
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2) Newton's Unfinished Theorem, The Inertia Drive
Section 2 of Newton's Unfinished Theorem, The Inertial Propulsion Drive. A continuation of the study of Inertial propulsion and the physics of the recoiless Trebuchet Action is presented. The Motion of Rotational Systems in particular the wheeld trebuchet is analysed. Prepellantless propulsion physics, Recoilless trebuchet action, Conservation of momentum within Machines, Physics of non- harmonic motions, Space Drives physics, Anti gravity, Hamiltonian Mechanics physics, Lagrangian mechanics, Huygens-Steiner theorem, Gaus comlex rotational physics, Hertz Machanics, Oberth Principle, Space Voyage, recoilless drive physics, reactionless drive physics.
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3) Newton's Unfinished Theorem, The Inertial Drive
Section 3 of The Inertial Propulsion Drive Presentation. The distribution of mechanical energy physics is analyzed, based on Gallileo, Huygens, Newton, W. Thompson, Steiner, R. Hamilton, Lagrangian, H.Hertz and Einsteins writings. Space Drive physics, Space Voyage, Anti Gravity, UFO Phenomena, Recoilless Trebuchet, Momentum conservation within machines, Mechanical energy distribution within machines, Physics non- harmonic motion, reactionless drives, recoilless drives.
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1) Newton's Unfinished Theorem, The Inertial Drive
Section 1, Introduction: A detailed Physics analysis of rotational systems for inertial propulsion is provided within 8 sections, based on the teachings of Galileo, Huygens, Newton, Lagrange, R. Hamilton, Gaus, Steiner, H.Hertz, Einstein. Inertial Propellantless Propulsion Drive Physics, Space Drive Physics, Space Propellantless Propulsion physics, Space Voyage,Space Vehicles, Recoilless Propulsion Physics, proof of inertial propulsion, Unidirectional vehicular drive, H. Hertz Mechanics, Oberth Principle, Anti Gravity, Lagrangian Mechanics, Gaus complex rotational mechanics, R. Hamilton Mechanics, Conservation of Momentum within Machines, Recoilless Trebuchet, Physics of Recoiless drives, Distribution of mechanical energy within machines, physics of reactionless drives, Propellantless drive Physics.
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4) Newton's Unfinished Theorem, The Inertial Drive
Section 4 of The Inertial Propusion Physics Lecture Presentation. The Physics dynamics of harmonic motion is compared to NON- harmonic motions and analyzed, based on Physics of Gallileo, Huygens, Newton, Steiner, W. Thopson, Lagrangian, R. Hamilton, H.Hertz and Einsteins writings. Space Drive Physics, Space Voyage, Anti Gravity, UFO Phenomena, Recoiless Trebuchet, Recoiless Vehicular Drive, Physics non- harmonic motion, Secret of inertial propulsion Physics, Conservation of momentum within machines, Distribution of mechanical energy within machines, reactionless drives.
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5) Newton's Unfinished Theorem, The Inertia Drive
Section #5 of the Inertial propulsion Analysis Presentation. How to determined the physics moment of inertia within a complex rotating machine. How to relate a mechnical energy quantity into a rotating system of complex inertial masses and how to arrive at a non- harmonic motion. The recoilless trebuchet, Inertial Propulsion Drive, Anti Gravity, Physics of unidirectional drive, Hertz Mechanics, Huygens-Steiner Theorem, Langrangian mechanics, W. Thopson's mechanics, R. Hmilton's mechanics, UFO Phenomena, Oberth Principle, Space Voyage, reactionless drives.
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6) Newton's Unfinished Theorem, The Inertial Drive
Last Section #6 of the Lecture Presentation " Newton's Unfinished Theorem, The Inertial Propulsion Physics. A study to clarify the validity of inertial propulsion and the underlying physics principles involved. In Particular, how to arrive at a rotational inertial mass motion having a frequency modulated non- harmonic motion causing a selfcontained unidirectional impulse, recoiless drives, reactionless drives.
Space Drives Physics, Anti Gravity, UFO Penomena, UFO Drive, Unidirectional drive, Oberth Principle, W. Thopson mechanics, R hamilton mechanics, Langrangian mechanics, Hertz Mechanics, Physics Conservation of Momentum within Machines, Physics of mechanical energy flow. -
7) The Education Device One Impulse Pendulum Test
Section 7 of The Inertial Propulsion Drive Lecture Pendulum Test Presentation. The single impulse operation of the Inertial Propulsionm education device on a pendulum providing a 4cm pendulum deflection and on a carriage providing a 1 Newton-Second impulse is presented. Based on Galileos, Huygens, Newtons, Steiner, R. Hamilton, Lagrnge, H. Hertz, H.Oberth and Einsteins writings. Space Drive, Space Voyage, Anti Gravity, UFO Phenomena, Physics of the Recoilless Trebuchet, Recoilless Vehicular Drive, Secret of inertial propulsion, Newton's Unfinished Theorem,Physics non- harmonic motion, reactionless drives, propellantless drives, Recoiless physics.
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8) The Pendulum Test - Inertial Propulsion Device
This is the only successful Pendulum test on the Internet, displaying the operation of the Author's Patent pending combined Rotational and Straight line Displacement Inertial Propulsion Device. The Device generates 30gram-force continuous internal thrust suspended and displaceing a pendulum 3cm. The driving internal motor-generator is powered by a 150 watt DC power supply. Inertial Propulsion Physics, Propellantless Inertial Propulsion Drive Physics.
Supplementary Files:
- Once you purchase this series you will have access to these files:
- oberth_principle.pdf
- publication2013-1-coplete-c2.pdf
- puplication12-3-sec3.pdf
- camebridge_presentation-Nov18.pdf
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