Academic literature on the topic 'QC173.7'

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Journal articles on the topic "QC173.7"

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Warunek, Ronald Michael, and AI Google. "QEM: Electromagnetism and Gravity Interaction." May 8, 2025. https://doi.org/10.5281/zenodo.15367987.

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  This submission presents a comprehensive overview of the Quantum Evolution Model (QEM) and includes the following components intended to stimulate discussion and further investigation into this alternative theoretical framework within the scientific community: * **QEM_Electromagnetism_and_Gravity_Interaction.pdf:** The main manuscript by Ronald Michael Warunek detailing the postulates, framework, and implications of the Quantum Evolution Model. * **A_Critical_Analysis_of_the_QEM_by_Bard.pdf:** A companion manuscript providing a critical review and analysis of the QEM from the perspectiv
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Dissertations / Theses on the topic "QC173.7"

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Tomasello, Bruno. "A quantum mechanical study of the dynamical properties of spin-ice materials." Thesis, University of Kent, 2014. https://kar.kent.ac.uk/48015/.

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The spin-ice materials Ho2Ti2O7 (HTO) and Dy2Ti2O7 (DTO) are part of a large family of compounds called magnetic pyrochlore oxides. Typically, the magnetism of these systems arise from the rare-earth ions RE3+ which sits at the vertices of a lattice of corner-sharing tetrahedra and couple with the degrees of freedom of the crystal leading to a wide spectrum of exotic phenomena. In spin-ices the magnetic moments of the individual RE3+ ions are large enough to let their mutual dipolar interactions be the leading factors for the thermodynamics. Moreover, the strength and the symmetries of their l
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Steer, Brian. "Selective characterisation of engineered nanoparticles in aerosols using nucleation and optical techniques." Thesis, University of Kent, 2014. https://kar.kent.ac.uk/48699/.

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The aim of this project is to develop novel approaches for the detection and characterisation of engineered and other potentially harmful nanoparticles in the air. In particular we wish to distinguish specific nanomaterials from the background atmospheric aerosol to provide a means of measuring human exposure to nanomaterials that may present a risk to health. Ideally, solutions should be practically deployable in the field. The metrics considered for measurement across this project are: size, number, chemical nature and surface area. Two main approaches are chosen to address these requirement
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Morrison, Steven K. "Electromagnetic waves in periodic media : surface states, tunability and nonlinearity." Phd thesis, 2009. http://hdl.handle.net/1885/149944.

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Evans, Drew Raymond. "Treatment of static loadings and dynamic interactions in AFM force measurement." Phd thesis, 2006. http://hdl.handle.net/1885/150485.

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Jepps, Owen George. "The thermodynamic temperature in statistical mechanics." Phd thesis, 2001. http://hdl.handle.net/1885/146084.

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Gareso, Paulus Lobo. "Intermixing of InGaAs/AlGaAs and InGaAs/InP quantum well structures." Phd thesis, 2006. http://hdl.handle.net/1885/150504.

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Chen, Cheng. "Electronic structure of metals and alloys." Master's thesis, 2005. http://hdl.handle.net/1885/151153.

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Fridkin, Vladislav. "Reflection equations in exactly solvable models of statistical mechanics." Phd thesis, 1999. http://hdl.handle.net/1885/144940.

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D{u0105}browska-W{u00FC}ster, Beata Justyna. "Matter waves in optical lattices." Phd thesis, 2007. http://hdl.handle.net/1885/147088.

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Hedges, Morgan. "High performance solid state quantum memory." Phd thesis, 2011. http://hdl.handle.net/1885/150814.

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This thesis demonstrates an efficient quantum memory that for the first time preserves more quantum information than it loses. Beyond this, it describes how even higher efficiency may be realised without sacrificing the other performance characteristics that are required for a practical device. A quantum memory is a device to store and recall the quantum state of light. Such a memory will be required for most applications of the emerging field of quantum information. The closest practical application is quantum repeaters for long distance encryption. A more distant target is quantum computing.
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Books on the topic "QC173.7"

1

Schutz, Bernard F. A first course in general relativity. Cambridge University Press, 1985.

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Schutz, Bernard F. A first course in general relativity. Cambridge University Press, 1990.

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Schutz, Bernard F. A first course in general relativity. 2nd ed. Cambridge University Press, 2009.

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Schutz, Bernard F. A first course in general relativity. 2nd ed. Cambridge University Press, 2009.

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Gardner, Martin. Relativity simply explained. Dover Publications, 1997.

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J, Joachain C., ed. Physics of atoms and molecules. 2nd ed. Prentice Hall, 2003.

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J, Joachain C., ed. Physics of atoms and molecules. Longman, 1987.

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Reichl, L. E. A modern course in statistical physics. 2nd ed. Wiley, 1997.

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Reichl, L. E. A modern course in statistical physics. 3rd ed. Wiley, 2009.

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Einstein, Albert. Relativity: Einstein's theory of spacetime, time dilation, gravity, and cosmology. Red and Black Publishers, 2009.

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