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In June 2008, Tajmar reported a new phenomenon suggesting that signals could be induced in a gyroscope resulting from a new property of rotating low-temperature helium. He also reported that because the rings in the experiment were accelerated pneumatically, and not with high acceleration, the
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Tajmar, M.; Plesescu, F.; Seifert, B. & Marhold, K. (2007). "Measurement of
Gravitomagnetic and Acceleration Fields Around Rotating Superconductors".
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In
February 2008 Tajmar filed an international patent application for a "Method for generating a gravitational field and gravitational field generator."
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15. 09. 2005, dtic.mil: POSSIBLE GRAVITATIONAL ANOMALIES IN QUANTUM MATERIALS. Phase II: Experiment
Assembly, Qualification and Test Results. M. Tajmar
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earlier reported results could not be discounted. His further research suggests the anomaly may indeed be coming from liquid helium in the setup.
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12. Feb. 2004, dtic.mil: POSSIBLE GRAVITATIONAL ANOMALIES IN QUANTUM MATERIALS. Phase I: Experiment
Definition and Design. M. Tajmar and K. Hense
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Tajmar, M.; Plesescu, F.; Marhold, K. & de Matos, C.J. (2006). "Experimental
Detection of the Gravitomagnetic London Moment".
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3 Mar 2000, arxiv.org: Coupling of
Gravitation and Electromagnetism in the Weak Field Approximation, M. Tajmar, C. de Matos
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In a 2003 paper, Tajmar proposed that a gravitational effect may explain the long-standing discrepancy between the mass of
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Tajmar, M.; de Matos, C.J. (2003). "Coupling of
Electromagnetism and Gravitation in the Weak Field Approximation".
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with an accelerating or decelerating spin. As of April 2008, the effect has not yet been observed independently.
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Anomalous Fiber Optic
Gyroscope Signals Observed above Spinning Rings at Low Temperature
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Measurement of
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Component descriptions and schematics are provided in the following two volumes:
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In 2006 Tajmar and several coworkers announced their claim to have measured a
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1999: Promotion through the program „International Communication“ of the
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Fiber-Optic-Gyroscope Measurements Close to Rotating Liquid Helium
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is a physicist and professor for Space Systems at the
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314:"Patent fĂĽr Gravitations-Generator angemeldet"
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361:Österreichs Wissenschaftspreis „ARC-Award“
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447:Towards a new test of general relativity?
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44:. He has research interests in advanced
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224:at the Technical University of Vienna.
95:and the theoretically-expected value.
60:Tajmar completed his PhD in numerical
130:, first prize in the category Science
88:first measured in superconductors by
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415:Tajmar, M.; de Matos, C.J. (2001).
141:Austrian Research Promotion Agency
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66:Vienna University of Technology
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234:Tajmar, Martin (2002-12-12).
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363:pressetext.at, December 2001
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541:Academic staff of TU Wien
128:Austrian Research Centers
80:Gravitomagnetism research
267:(1, number 4): 551–554.
222:Home page and biography
126:2001: ARC-Award of the
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424:Journal of Theoretics
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521:Austrian physicists
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430:(1). Archived from
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382:Factsheet
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76:in 2003.
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