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You searched for subject:(THERMAL EXPANSION OF SOLIDS THERMOPHYSICS ). Showing records 1 – 30 of 244692 total matches.

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ETH Zürich

1. Andres, Klaus. Thermische Ausdehnung von Metallen bei tiefen Temperaturen.

Degree: 1964, ETH Zürich

Subjects/Keywords: WÄRMEAUSDEHNUNG VON FESTKÖRPERN (WÄRMELEHRE); THERMAL EXPANSION OF SOLIDS (THERMOPHYSICS); info:eu-repo/classification/ddc/530; Physics

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APA (6th Edition):

Andres, K. (1964). Thermische Ausdehnung von Metallen bei tiefen Temperaturen. (Doctoral Dissertation). ETH Zürich. Retrieved from http://hdl.handle.net/20.500.11850/132841

Chicago Manual of Style (16th Edition):

Andres, Klaus. “Thermische Ausdehnung von Metallen bei tiefen Temperaturen.” 1964. Doctoral Dissertation, ETH Zürich. Accessed November 20, 2019. http://hdl.handle.net/20.500.11850/132841.

MLA Handbook (7th Edition):

Andres, Klaus. “Thermische Ausdehnung von Metallen bei tiefen Temperaturen.” 1964. Web. 20 Nov 2019.

Vancouver:

Andres K. Thermische Ausdehnung von Metallen bei tiefen Temperaturen. [Internet] [Doctoral dissertation]. ETH Zürich; 1964. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/20.500.11850/132841.

Council of Science Editors:

Andres K. Thermische Ausdehnung von Metallen bei tiefen Temperaturen. [Doctoral Dissertation]. ETH Zürich; 1964. Available from: http://hdl.handle.net/20.500.11850/132841


Virginia Tech

2. Stein, Bland Allen. Development and verification of the relationship between atomic vibrational amplitude and thermal expansion of crystalline solids.

Degree: MS, Metallurgical Engineering, 1964, Virginia Tech

Subjects/Keywords: LD5655.V855 1964.S744; Expansion of solids; Thermal stresses

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APA (6th Edition):

Stein, B. A. (1964). Development and verification of the relationship between atomic vibrational amplitude and thermal expansion of crystalline solids. (Masters Thesis). Virginia Tech. Retrieved from http://hdl.handle.net/10919/77714

Chicago Manual of Style (16th Edition):

Stein, Bland Allen. “Development and verification of the relationship between atomic vibrational amplitude and thermal expansion of crystalline solids.” 1964. Masters Thesis, Virginia Tech. Accessed November 20, 2019. http://hdl.handle.net/10919/77714.

MLA Handbook (7th Edition):

Stein, Bland Allen. “Development and verification of the relationship between atomic vibrational amplitude and thermal expansion of crystalline solids.” 1964. Web. 20 Nov 2019.

Vancouver:

Stein BA. Development and verification of the relationship between atomic vibrational amplitude and thermal expansion of crystalline solids. [Internet] [Masters thesis]. Virginia Tech; 1964. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/10919/77714.

Council of Science Editors:

Stein BA. Development and verification of the relationship between atomic vibrational amplitude and thermal expansion of crystalline solids. [Masters Thesis]. Virginia Tech; 1964. Available from: http://hdl.handle.net/10919/77714


Georgia Tech

3. White, Kathleen Madara. Low Temperature Synthesis and Characterization of Some Low Positive and Negative Thermal Expansion Materials.

Degree: PhD, Chemistry and Biochemistry, 2006, Georgia Tech

 LOW TEMPERATURE SYNTHESIS AND CHARACTERIZATION OF SOME LOW POSITIVE AND NEGATIVE THERMAL EXPANSION MATERIALS Kathleen Madara White 151 pages Directed by Dr. Angus P. Wilkinson… (more)

Subjects/Keywords: Thermal expansion; Negative thermal expansion; Low temperature synthesis; Pyrophosphates; Cation substitution; Materials Thermal properties; Pyrophosphates; Expansion (Heat); Expansion of solids

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APA (6th Edition):

White, K. M. (2006). Low Temperature Synthesis and Characterization of Some Low Positive and Negative Thermal Expansion Materials. (Doctoral Dissertation). Georgia Tech. Retrieved from http://hdl.handle.net/1853/11582

Chicago Manual of Style (16th Edition):

White, Kathleen Madara. “Low Temperature Synthesis and Characterization of Some Low Positive and Negative Thermal Expansion Materials.” 2006. Doctoral Dissertation, Georgia Tech. Accessed November 20, 2019. http://hdl.handle.net/1853/11582.

MLA Handbook (7th Edition):

White, Kathleen Madara. “Low Temperature Synthesis and Characterization of Some Low Positive and Negative Thermal Expansion Materials.” 2006. Web. 20 Nov 2019.

Vancouver:

White KM. Low Temperature Synthesis and Characterization of Some Low Positive and Negative Thermal Expansion Materials. [Internet] [Doctoral dissertation]. Georgia Tech; 2006. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/1853/11582.

Council of Science Editors:

White KM. Low Temperature Synthesis and Characterization of Some Low Positive and Negative Thermal Expansion Materials. [Doctoral Dissertation]. Georgia Tech; 2006. Available from: http://hdl.handle.net/1853/11582


ETH Zürich

4. Toneatti, Peter. Das Verhalten des Langschienengeleises unter dem Betrieb: ein Beitrag zur Lösung des Problems des lückenlosen Geleises.

Degree: 1939, ETH Zürich

Subjects/Keywords: SCHIENEN + SCHIENENBEFESTIGUNGEN (EISENBAHNBAU); WÄRMEAUSDEHNUNG VON FESTKÖRPERN (WÄRMELEHRE); MECHANISCHE RAD-SCHIENE-WECHSELWIRKUNGEN (EISENBAHNBAU); RAILS + RAIL FASTENINGS (RAILWAY ENGINEERING); THERMAL EXPANSION OF SOLIDS (THERMOPHYSICS); MECHANICAL WHEEL-RAIL INTERACTIONS (RAILWAY ENGINEERING); info:eu-repo/classification/ddc/624; Civil engineering

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APA (6th Edition):

Toneatti, P. (1939). Das Verhalten des Langschienengeleises unter dem Betrieb: ein Beitrag zur Lösung des Problems des lückenlosen Geleises. (Doctoral Dissertation). ETH Zürich. Retrieved from http://hdl.handle.net/20.500.11850/134846

Chicago Manual of Style (16th Edition):

Toneatti, Peter. “Das Verhalten des Langschienengeleises unter dem Betrieb: ein Beitrag zur Lösung des Problems des lückenlosen Geleises.” 1939. Doctoral Dissertation, ETH Zürich. Accessed November 20, 2019. http://hdl.handle.net/20.500.11850/134846.

MLA Handbook (7th Edition):

Toneatti, Peter. “Das Verhalten des Langschienengeleises unter dem Betrieb: ein Beitrag zur Lösung des Problems des lückenlosen Geleises.” 1939. Web. 20 Nov 2019.

Vancouver:

Toneatti P. Das Verhalten des Langschienengeleises unter dem Betrieb: ein Beitrag zur Lösung des Problems des lückenlosen Geleises. [Internet] [Doctoral dissertation]. ETH Zürich; 1939. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/20.500.11850/134846.

Council of Science Editors:

Toneatti P. Das Verhalten des Langschienengeleises unter dem Betrieb: ein Beitrag zur Lösung des Problems des lückenlosen Geleises. [Doctoral Dissertation]. ETH Zürich; 1939. Available from: http://hdl.handle.net/20.500.11850/134846


University of Arizona

5. Berthold, John William, 1945-. DIMENSIONAL STABILITY OF LOW EXPANSIVITY MATERIALS – TIME DEPENDENT CHANGES IN OPTICAL CONTACT INTERFACES AND PHASE SHIFTS ON REFLECTION FROM MULTILAYER DIELECTRICS .

Degree: 1976, University of Arizona

Subjects/Keywords: Expansion of solids.

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APA (6th Edition):

Berthold, John William, 1. (1976). DIMENSIONAL STABILITY OF LOW EXPANSIVITY MATERIALS – TIME DEPENDENT CHANGES IN OPTICAL CONTACT INTERFACES AND PHASE SHIFTS ON REFLECTION FROM MULTILAYER DIELECTRICS . (Doctoral Dissertation). University of Arizona. Retrieved from http://hdl.handle.net/10150/290402

Chicago Manual of Style (16th Edition):

Berthold, John William, 1945-. “DIMENSIONAL STABILITY OF LOW EXPANSIVITY MATERIALS – TIME DEPENDENT CHANGES IN OPTICAL CONTACT INTERFACES AND PHASE SHIFTS ON REFLECTION FROM MULTILAYER DIELECTRICS .” 1976. Doctoral Dissertation, University of Arizona. Accessed November 20, 2019. http://hdl.handle.net/10150/290402.

MLA Handbook (7th Edition):

Berthold, John William, 1945-. “DIMENSIONAL STABILITY OF LOW EXPANSIVITY MATERIALS – TIME DEPENDENT CHANGES IN OPTICAL CONTACT INTERFACES AND PHASE SHIFTS ON REFLECTION FROM MULTILAYER DIELECTRICS .” 1976. Web. 20 Nov 2019.

Vancouver:

Berthold, John William 1. DIMENSIONAL STABILITY OF LOW EXPANSIVITY MATERIALS – TIME DEPENDENT CHANGES IN OPTICAL CONTACT INTERFACES AND PHASE SHIFTS ON REFLECTION FROM MULTILAYER DIELECTRICS . [Internet] [Doctoral dissertation]. University of Arizona; 1976. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/10150/290402.

Council of Science Editors:

Berthold, John William 1. DIMENSIONAL STABILITY OF LOW EXPANSIVITY MATERIALS – TIME DEPENDENT CHANGES IN OPTICAL CONTACT INTERFACES AND PHASE SHIFTS ON REFLECTION FROM MULTILAYER DIELECTRICS . [Doctoral Dissertation]. University of Arizona; 1976. Available from: http://hdl.handle.net/10150/290402


University of Arizona

6. Berthold, John William, 1945-. Measurement of thermal expansion coefficients: system improvements and homogeneity studies .

Degree: 1974, University of Arizona

Subjects/Keywords: Expansion of solids.; Glass.

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APA (6th Edition):

Berthold, John William, 1. (1974). Measurement of thermal expansion coefficients: system improvements and homogeneity studies . (Masters Thesis). University of Arizona. Retrieved from http://hdl.handle.net/10150/554714

Chicago Manual of Style (16th Edition):

Berthold, John William, 1945-. “Measurement of thermal expansion coefficients: system improvements and homogeneity studies .” 1974. Masters Thesis, University of Arizona. Accessed November 20, 2019. http://hdl.handle.net/10150/554714.

MLA Handbook (7th Edition):

Berthold, John William, 1945-. “Measurement of thermal expansion coefficients: system improvements and homogeneity studies .” 1974. Web. 20 Nov 2019.

Vancouver:

Berthold, John William 1. Measurement of thermal expansion coefficients: system improvements and homogeneity studies . [Internet] [Masters thesis]. University of Arizona; 1974. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/10150/554714.

Council of Science Editors:

Berthold, John William 1. Measurement of thermal expansion coefficients: system improvements and homogeneity studies . [Masters Thesis]. University of Arizona; 1974. Available from: http://hdl.handle.net/10150/554714

7. Karch, Matthias Ottmar. Design and Manufacturing of Hierarchical Multi-Functional Materials Via High Resolution additive Manufacturing.

Degree: MS, Mechanical Engineering, 2017, Virginia Tech

 This master's thesis deals with the challenges of undesirable thermal expansion in lightweight materials. Thermal expansion of parts or components can lead to malfunction or… (more)

Subjects/Keywords: 3D-printing; Microstereolithography; Coefficient of Thermal Expansion

Page 1 Page 2 Page 3 Page 4

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APA (6th Edition):

Karch, M. O. (2017). Design and Manufacturing of Hierarchical Multi-Functional Materials Via High Resolution additive Manufacturing. (Masters Thesis). Virginia Tech. Retrieved from http://hdl.handle.net/10919/79453

Chicago Manual of Style (16th Edition):

Karch, Matthias Ottmar. “Design and Manufacturing of Hierarchical Multi-Functional Materials Via High Resolution additive Manufacturing.” 2017. Masters Thesis, Virginia Tech. Accessed November 20, 2019. http://hdl.handle.net/10919/79453.

MLA Handbook (7th Edition):

Karch, Matthias Ottmar. “Design and Manufacturing of Hierarchical Multi-Functional Materials Via High Resolution additive Manufacturing.” 2017. Web. 20 Nov 2019.

Vancouver:

Karch MO. Design and Manufacturing of Hierarchical Multi-Functional Materials Via High Resolution additive Manufacturing. [Internet] [Masters thesis]. Virginia Tech; 2017. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/10919/79453.

Council of Science Editors:

Karch MO. Design and Manufacturing of Hierarchical Multi-Functional Materials Via High Resolution additive Manufacturing. [Masters Thesis]. Virginia Tech; 2017. Available from: http://hdl.handle.net/10919/79453


ETH Zürich

8. Ess, Markus. Simulation and compensation of thermal errors of machine tools.

Degree: 2012, ETH Zürich

Subjects/Keywords: THERMAL EXPANSION OF SOLIDS (THERMOPHYSICS); MEASURING TECHNIQUES (PHYSICS); ACCURACY (MECHANICAL ENGINEERING); WÄRMEAUSDEHNUNG VON FESTKÖRPERN (WÄRMELEHRE); GENAUIGKEIT (MASCHINENBAU); MACHINE TOOLS AND MACHINERY (MANUFACTURING TECHNOLOGY); HEAT EFFECTS DEPENDING ON SHAPE AND TYPE OF BODIES (THERMOPHYSICS); FINITE-ELEMENTE-METHODE (NUMERISCHE MATHEMATIK); MESSTECHNIK (PHYSIK); FINITE ELEMENT METHOD (NUMERICAL MATHEMATICS); WERKZEUGMASCHINEN UND ANLAGEN (FERTIGUNGSTECHNIK); WÄRMEEFFEKTE IN ABHÄNGIGKEIT VON FORM UND ART EINES KÖRPERS (WÄRMELEHRE); info:eu-repo/classification/ddc/620; Engineering & allied operations

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APA (6th Edition):

Ess, M. (2012). Simulation and compensation of thermal errors of machine tools. (Doctoral Dissertation). ETH Zürich. Retrieved from http://hdl.handle.net/20.500.11850/54069

Chicago Manual of Style (16th Edition):

Ess, Markus. “Simulation and compensation of thermal errors of machine tools.” 2012. Doctoral Dissertation, ETH Zürich. Accessed November 20, 2019. http://hdl.handle.net/20.500.11850/54069.

MLA Handbook (7th Edition):

Ess, Markus. “Simulation and compensation of thermal errors of machine tools.” 2012. Web. 20 Nov 2019.

Vancouver:

Ess M. Simulation and compensation of thermal errors of machine tools. [Internet] [Doctoral dissertation]. ETH Zürich; 2012. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/20.500.11850/54069.

Council of Science Editors:

Ess M. Simulation and compensation of thermal errors of machine tools. [Doctoral Dissertation]. ETH Zürich; 2012. Available from: http://hdl.handle.net/20.500.11850/54069


ETH Zürich

9. Mayr, Josef. Beurteilung und Kompensation des Temperaturganges von Werkzeugmaschinen.

Degree: 2009, ETH Zürich

Subjects/Keywords: WERKZEUGMASCHINEN UND ANLAGEN (FERTIGUNGSTECHNIK); FEINMECHANIK (MASCHINENBAU); WÄRMEAUSDEHNUNG VON FESTKÖRPERN (WÄRMELEHRE); TEMPERATURMESSUNG + THERMOMETER (WÄRMELEHRE); LÄNGENMESSUNG (MECHANIK); NUMERISCHE SIMULATION UND MATHEMATISCHE MODELLRECHNUNG; MACHINE TOOLS AND MACHINERY (MANUFACTURING TECHNOLOGY); PRECISION MECHANISMS AND INSTRUMENTS (MECHANICAL ENGINEERING); THERMAL EXPANSION OF SOLIDS (THERMOPHYSICS); TEMPERATURE + THERMOMETRY (THERMOPHYSICS); LENGTH MEASUREMENT (MECHANICS); NUMERICAL SIMULATION AND MATHEMATICAL MODELING; info:eu-repo/classification/ddc/620; Engineering & allied operations

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APA (6th Edition):

Mayr, J. (2009). Beurteilung und Kompensation des Temperaturganges von Werkzeugmaschinen. (Doctoral Dissertation). ETH Zürich. Retrieved from http://hdl.handle.net/20.500.11850/151980

Chicago Manual of Style (16th Edition):

Mayr, Josef. “Beurteilung und Kompensation des Temperaturganges von Werkzeugmaschinen.” 2009. Doctoral Dissertation, ETH Zürich. Accessed November 20, 2019. http://hdl.handle.net/20.500.11850/151980.

MLA Handbook (7th Edition):

Mayr, Josef. “Beurteilung und Kompensation des Temperaturganges von Werkzeugmaschinen.” 2009. Web. 20 Nov 2019.

Vancouver:

Mayr J. Beurteilung und Kompensation des Temperaturganges von Werkzeugmaschinen. [Internet] [Doctoral dissertation]. ETH Zürich; 2009. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/20.500.11850/151980.

Council of Science Editors:

Mayr J. Beurteilung und Kompensation des Temperaturganges von Werkzeugmaschinen. [Doctoral Dissertation]. ETH Zürich; 2009. Available from: http://hdl.handle.net/20.500.11850/151980

10. Uchimiya, Ronald. Systems Engineering Analysis for Optimum Selection Protocol for Thermal Expansion Measurement of a Carbon Fiber Reinforced Composite Tube.

Degree: MS, Systems Engineering, 2018, Loyola Marymount University

  A material’s Coefficient of Thermal Expansion (CTE) is a valuable physical property, particularly for structural fiber reinforced composites that are routinely used in satellite/aerospace… (more)

Subjects/Keywords: coefficient of thermal expansion; expansion; strain gage; CTE; Carbon Fiber Composite; Engineering; Systems Engineering

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APA (6th Edition):

Uchimiya, R. (2018). Systems Engineering Analysis for Optimum Selection Protocol for Thermal Expansion Measurement of a Carbon Fiber Reinforced Composite Tube. (Masters Thesis). Loyola Marymount University. Retrieved from http://digitalcommons.lmu.edu/etd/322

Chicago Manual of Style (16th Edition):

Uchimiya, Ronald. “Systems Engineering Analysis for Optimum Selection Protocol for Thermal Expansion Measurement of a Carbon Fiber Reinforced Composite Tube.” 2018. Masters Thesis, Loyola Marymount University. Accessed November 20, 2019. http://digitalcommons.lmu.edu/etd/322.

MLA Handbook (7th Edition):

Uchimiya, Ronald. “Systems Engineering Analysis for Optimum Selection Protocol for Thermal Expansion Measurement of a Carbon Fiber Reinforced Composite Tube.” 2018. Web. 20 Nov 2019.

Vancouver:

Uchimiya R. Systems Engineering Analysis for Optimum Selection Protocol for Thermal Expansion Measurement of a Carbon Fiber Reinforced Composite Tube. [Internet] [Masters thesis]. Loyola Marymount University; 2018. [cited 2019 Nov 20]. Available from: http://digitalcommons.lmu.edu/etd/322.

Council of Science Editors:

Uchimiya R. Systems Engineering Analysis for Optimum Selection Protocol for Thermal Expansion Measurement of a Carbon Fiber Reinforced Composite Tube. [Masters Thesis]. Loyola Marymount University; 2018. Available from: http://digitalcommons.lmu.edu/etd/322


NSYSU

11. Chen, Kai. Development of the system for Determining the Thermal Expansion Coefficient of Thin Film.

Degree: Master, Mechanical and Electro-Mechanical Engineering, 2018, NSYSU

 The coefficient of thermal expansion (CTE) is the important thermal property that affects the performance of thin film components. Therefore, this study establishes a detection… (more)

Subjects/Keywords: Test-key; pull-in voltage; empirical formula; coefficient of thermal expansion

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APA (6th Edition):

Chen, K. (2018). Development of the system for Determining the Thermal Expansion Coefficient of Thin Film. (Thesis). NSYSU. Retrieved from http://etd.lib.nsysu.edu.tw/ETD-db/ETD-search/view_etd?URN=etd-0727118-230340

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Chicago Manual of Style (16th Edition):

Chen, Kai. “Development of the system for Determining the Thermal Expansion Coefficient of Thin Film.” 2018. Thesis, NSYSU. Accessed November 20, 2019. http://etd.lib.nsysu.edu.tw/ETD-db/ETD-search/view_etd?URN=etd-0727118-230340.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

MLA Handbook (7th Edition):

Chen, Kai. “Development of the system for Determining the Thermal Expansion Coefficient of Thin Film.” 2018. Web. 20 Nov 2019.

Vancouver:

Chen K. Development of the system for Determining the Thermal Expansion Coefficient of Thin Film. [Internet] [Thesis]. NSYSU; 2018. [cited 2019 Nov 20]. Available from: http://etd.lib.nsysu.edu.tw/ETD-db/ETD-search/view_etd?URN=etd-0727118-230340.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Council of Science Editors:

Chen K. Development of the system for Determining the Thermal Expansion Coefficient of Thin Film. [Thesis]. NSYSU; 2018. Available from: http://etd.lib.nsysu.edu.tw/ETD-db/ETD-search/view_etd?URN=etd-0727118-230340

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation


University of New Mexico

12. Fu, Ran. Metrology of optical telescope components.

Degree: Civil Engineering, 2010, University of New Mexico

 Precision astronomic structures such as telescopes often require structural materials that possess ultra low coefficient of thermal expansion (CTE) and coefficient of moisture expansion (CME)… (more)

Subjects/Keywords: Telescopes – Materials – Testing; Expansion of solids – Measurement; Fibrous composites – Testing; Epoxy compounds – Testing; Structural analysis (Engineering)

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APA (6th Edition):

Fu, R. (2010). Metrology of optical telescope components. (Masters Thesis). University of New Mexico. Retrieved from http://hdl.handle.net/1928/11073

Chicago Manual of Style (16th Edition):

Fu, Ran. “Metrology of optical telescope components.” 2010. Masters Thesis, University of New Mexico. Accessed November 20, 2019. http://hdl.handle.net/1928/11073.

MLA Handbook (7th Edition):

Fu, Ran. “Metrology of optical telescope components.” 2010. Web. 20 Nov 2019.

Vancouver:

Fu R. Metrology of optical telescope components. [Internet] [Masters thesis]. University of New Mexico; 2010. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/1928/11073.

Council of Science Editors:

Fu R. Metrology of optical telescope components. [Masters Thesis]. University of New Mexico; 2010. Available from: http://hdl.handle.net/1928/11073


Iowa State University

13. McLean, Kent Otho. Low temperature thermal expansion of copper, silver, gold and aluminum.

Degree: 1969, Iowa State University

Subjects/Keywords: Expansion (Heat); Expansion of solids; Low temperatures; Solid-state physics; Condensed Matter Physics

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APA (6th Edition):

McLean, K. O. (1969). Low temperature thermal expansion of copper, silver, gold and aluminum. (Thesis). Iowa State University. Retrieved from https://lib.dr.iastate.edu/rtd/4127

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Chicago Manual of Style (16th Edition):

McLean, Kent Otho. “Low temperature thermal expansion of copper, silver, gold and aluminum.” 1969. Thesis, Iowa State University. Accessed November 20, 2019. https://lib.dr.iastate.edu/rtd/4127.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

MLA Handbook (7th Edition):

McLean, Kent Otho. “Low temperature thermal expansion of copper, silver, gold and aluminum.” 1969. Web. 20 Nov 2019.

Vancouver:

McLean KO. Low temperature thermal expansion of copper, silver, gold and aluminum. [Internet] [Thesis]. Iowa State University; 1969. [cited 2019 Nov 20]. Available from: https://lib.dr.iastate.edu/rtd/4127.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Council of Science Editors:

McLean KO. Low temperature thermal expansion of copper, silver, gold and aluminum. [Thesis]. Iowa State University; 1969. Available from: https://lib.dr.iastate.edu/rtd/4127

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation


Iowa State University

14. Tilford, Charles Robert. Thermal expansion of solid argon from 1 to 25 K.

Degree: 1969, Iowa State University

Subjects/Keywords: Expansion (Heat); Expansion of solids; Low temperatures; Argon; Condensed Matter Physics

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APA (6th Edition):

Tilford, C. R. (1969). Thermal expansion of solid argon from 1 to 25 K. (Thesis). Iowa State University. Retrieved from https://lib.dr.iastate.edu/rtd/3791

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Chicago Manual of Style (16th Edition):

Tilford, Charles Robert. “Thermal expansion of solid argon from 1 to 25 K.” 1969. Thesis, Iowa State University. Accessed November 20, 2019. https://lib.dr.iastate.edu/rtd/3791.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

MLA Handbook (7th Edition):

Tilford, Charles Robert. “Thermal expansion of solid argon from 1 to 25 K.” 1969. Web. 20 Nov 2019.

Vancouver:

Tilford CR. Thermal expansion of solid argon from 1 to 25 K. [Internet] [Thesis]. Iowa State University; 1969. [cited 2019 Nov 20]. Available from: https://lib.dr.iastate.edu/rtd/3791.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Council of Science Editors:

Tilford CR. Thermal expansion of solid argon from 1 to 25 K. [Thesis]. Iowa State University; 1969. Available from: https://lib.dr.iastate.edu/rtd/3791

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation


McGill University

15. Xu, Hang; Farag, amr. routes to program thermal expansion in three-dimensional lattice metamaterials built from tetrahedral building blocks.

Degree: Department of Mechanical Engineering, 2018, McGill University

Note:

Thermal expansion can be problematic in manifold applications that require thermal stability, yet it can also be purposely exploited to meet specific directional requirements… (more)

Subjects/Keywords: Thermal expansion; Three-dimensional lattices

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APA (6th Edition):

Xu, Hang; Farag, a. (2018). routes to program thermal expansion in three-dimensional lattice metamaterials built from tetrahedral building blocks. (Thesis). McGill University. Retrieved from http://digitool.library.mcgill.ca/thesisfile164744.pdf

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Chicago Manual of Style (16th Edition):

Xu, Hang; Farag, amr. “routes to program thermal expansion in three-dimensional lattice metamaterials built from tetrahedral building blocks.” 2018. Thesis, McGill University. Accessed November 20, 2019. http://digitool.library.mcgill.ca/thesisfile164744.pdf.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

MLA Handbook (7th Edition):

Xu, Hang; Farag, amr. “routes to program thermal expansion in three-dimensional lattice metamaterials built from tetrahedral building blocks.” 2018. Web. 20 Nov 2019.

Vancouver:

Xu, Hang; Farag a. routes to program thermal expansion in three-dimensional lattice metamaterials built from tetrahedral building blocks. [Internet] [Thesis]. McGill University; 2018. [cited 2019 Nov 20]. Available from: http://digitool.library.mcgill.ca/thesisfile164744.pdf.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Council of Science Editors:

Xu, Hang; Farag a. routes to program thermal expansion in three-dimensional lattice metamaterials built from tetrahedral building blocks. [Thesis]. McGill University; 2018. Available from: http://digitool.library.mcgill.ca/thesisfile164744.pdf

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation


Université de Neuchâtel

16. Alers, Paul. Aspects of the synthesis and characterization of diamond and diamond like carbon films.

Degree: 2007, Université de Neuchâtel

 La présente thèse est le résultat de 15 ans d’efforts continus. Débuté en 1991, le travail de recherche s’est achevé en 2005 avec une publication… (more)

Subjects/Keywords: thermal expansion

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APA (6th Edition):

Alers, P. (2007). Aspects of the synthesis and characterization of diamond and diamond like carbon films. (Thesis). Université de Neuchâtel. Retrieved from http://doc.rero.ch/record/8116

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Chicago Manual of Style (16th Edition):

Alers, Paul. “Aspects of the synthesis and characterization of diamond and diamond like carbon films.” 2007. Thesis, Université de Neuchâtel. Accessed November 20, 2019. http://doc.rero.ch/record/8116.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

MLA Handbook (7th Edition):

Alers, Paul. “Aspects of the synthesis and characterization of diamond and diamond like carbon films.” 2007. Web. 20 Nov 2019.

Vancouver:

Alers P. Aspects of the synthesis and characterization of diamond and diamond like carbon films. [Internet] [Thesis]. Université de Neuchâtel; 2007. [cited 2019 Nov 20]. Available from: http://doc.rero.ch/record/8116.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Council of Science Editors:

Alers P. Aspects of the synthesis and characterization of diamond and diamond like carbon films. [Thesis]. Université de Neuchâtel; 2007. Available from: http://doc.rero.ch/record/8116

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation


Texas A&M University

17. Neekhra, Siddharth. A new mineralogical approach to predict coefficient of thermal expansion of aggregate and concrete.

Degree: 2005, Texas A&M University

 A new mineralogical approach is introduced to predict aggregate and concrete coefficient of thermal expansion (CoTE). Basically, a modeling approach is suggested based on the… (more)

Subjects/Keywords: Coefficient of thermal expansion; Aggregates; dilatometer

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APA (6th Edition):

Neekhra, S. (2005). A new mineralogical approach to predict coefficient of thermal expansion of aggregate and concrete. (Thesis). Texas A&M University. Retrieved from http://hdl.handle.net/1969.1/1461

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Chicago Manual of Style (16th Edition):

Neekhra, Siddharth. “A new mineralogical approach to predict coefficient of thermal expansion of aggregate and concrete.” 2005. Thesis, Texas A&M University. Accessed November 20, 2019. http://hdl.handle.net/1969.1/1461.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

MLA Handbook (7th Edition):

Neekhra, Siddharth. “A new mineralogical approach to predict coefficient of thermal expansion of aggregate and concrete.” 2005. Web. 20 Nov 2019.

Vancouver:

Neekhra S. A new mineralogical approach to predict coefficient of thermal expansion of aggregate and concrete. [Internet] [Thesis]. Texas A&M University; 2005. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/1969.1/1461.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Council of Science Editors:

Neekhra S. A new mineralogical approach to predict coefficient of thermal expansion of aggregate and concrete. [Thesis]. Texas A&M University; 2005. Available from: http://hdl.handle.net/1969.1/1461

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation


University of Akron

18. Drews, Aaron M. Control of Thermal Expansion Coefficient of a Metal Powder Composite via Ceramic Nanofiber Reinforcement.

Degree: MS, Chemical Engineering, 2009, University of Akron

 Solder is used in nearly all electronic packages to provide mechanical, electrical and thermal contact between various components. The mismatch between the components¿ coefficient of… (more)

Subjects/Keywords: Chemical Engineering; Mechanical Engineering; solder; composite; coefficient of thermal expansion; nanofiber; titania

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APA (6th Edition):

Drews, A. M. (2009). Control of Thermal Expansion Coefficient of a Metal Powder Composite via Ceramic Nanofiber Reinforcement. (Masters Thesis). University of Akron. Retrieved from http://rave.ohiolink.edu/etdc/view?acc_num=akron1248114951

Chicago Manual of Style (16th Edition):

Drews, Aaron M. “Control of Thermal Expansion Coefficient of a Metal Powder Composite via Ceramic Nanofiber Reinforcement.” 2009. Masters Thesis, University of Akron. Accessed November 20, 2019. http://rave.ohiolink.edu/etdc/view?acc_num=akron1248114951.

MLA Handbook (7th Edition):

Drews, Aaron M. “Control of Thermal Expansion Coefficient of a Metal Powder Composite via Ceramic Nanofiber Reinforcement.” 2009. Web. 20 Nov 2019.

Vancouver:

Drews AM. Control of Thermal Expansion Coefficient of a Metal Powder Composite via Ceramic Nanofiber Reinforcement. [Internet] [Masters thesis]. University of Akron; 2009. [cited 2019 Nov 20]. Available from: http://rave.ohiolink.edu/etdc/view?acc_num=akron1248114951.

Council of Science Editors:

Drews AM. Control of Thermal Expansion Coefficient of a Metal Powder Composite via Ceramic Nanofiber Reinforcement. [Masters Thesis]. University of Akron; 2009. Available from: http://rave.ohiolink.edu/etdc/view?acc_num=akron1248114951


NSYSU

19. Chen , Yu-yen. Mechanical Properties Calculations for Metal IMC at Reflow Temperature â Youngâs Modulus, Poissonâs Ratio and Coefficient of Thermal Expansion.

Degree: Master, Mechanical and Electro-Mechanical Engineering, 2016, NSYSU

 The characteristics of the intermetallic compound in an IC package are very important. When it is too thick or non-uniformly distributed, the reliability of the… (more)

Subjects/Keywords: first-principles method; Poissonâs ratio; Youngâs modulus; intermetallic compound; coefficient of thermal expansion

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APA (6th Edition):

Chen , Y. (2016). Mechanical Properties Calculations for Metal IMC at Reflow Temperature â Youngâs Modulus, Poissonâs Ratio and Coefficient of Thermal Expansion. (Thesis). NSYSU. Retrieved from http://etd.lib.nsysu.edu.tw/ETD-db/ETD-search/view_etd?URN=etd-0722116-143912

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Chicago Manual of Style (16th Edition):

Chen , Yu-yen. “Mechanical Properties Calculations for Metal IMC at Reflow Temperature â Youngâs Modulus, Poissonâs Ratio and Coefficient of Thermal Expansion.” 2016. Thesis, NSYSU. Accessed November 20, 2019. http://etd.lib.nsysu.edu.tw/ETD-db/ETD-search/view_etd?URN=etd-0722116-143912.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

MLA Handbook (7th Edition):

Chen , Yu-yen. “Mechanical Properties Calculations for Metal IMC at Reflow Temperature â Youngâs Modulus, Poissonâs Ratio and Coefficient of Thermal Expansion.” 2016. Web. 20 Nov 2019.

Vancouver:

Chen Y. Mechanical Properties Calculations for Metal IMC at Reflow Temperature â Youngâs Modulus, Poissonâs Ratio and Coefficient of Thermal Expansion. [Internet] [Thesis]. NSYSU; 2016. [cited 2019 Nov 20]. Available from: http://etd.lib.nsysu.edu.tw/ETD-db/ETD-search/view_etd?URN=etd-0722116-143912.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Council of Science Editors:

Chen Y. Mechanical Properties Calculations for Metal IMC at Reflow Temperature â Youngâs Modulus, Poissonâs Ratio and Coefficient of Thermal Expansion. [Thesis]. NSYSU; 2016. Available from: http://etd.lib.nsysu.edu.tw/ETD-db/ETD-search/view_etd?URN=etd-0722116-143912

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation


Baylor University

20. [No author]. Numerical determination of elastic and viscoelastic properties of aligned continuous and discontinuous fiber reinforced composites.

Degree: 2016, Baylor University

 Micro-mechanics analysis using the Representative Volume Element (RVE) approach implemented with the Finite Element Method (FEM) has been extensively exploited for determining material properties of… (more)

Subjects/Keywords: Aligned fiber reinforced composites. Coefficient of Thermal Expansion. Viscoelastic creep behavior. Finite Element Method.

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APA (6th Edition):

author], [. (2016). Numerical determination of elastic and viscoelastic properties of aligned continuous and discontinuous fiber reinforced composites. (Thesis). Baylor University. Retrieved from http://hdl.handle.net/2104/9794

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Chicago Manual of Style (16th Edition):

author], [No. “Numerical determination of elastic and viscoelastic properties of aligned continuous and discontinuous fiber reinforced composites. ” 2016. Thesis, Baylor University. Accessed November 20, 2019. http://hdl.handle.net/2104/9794.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

MLA Handbook (7th Edition):

author], [No. “Numerical determination of elastic and viscoelastic properties of aligned continuous and discontinuous fiber reinforced composites. ” 2016. Web. 20 Nov 2019.

Vancouver:

author] [. Numerical determination of elastic and viscoelastic properties of aligned continuous and discontinuous fiber reinforced composites. [Internet] [Thesis]. Baylor University; 2016. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/2104/9794.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Council of Science Editors:

author] [. Numerical determination of elastic and viscoelastic properties of aligned continuous and discontinuous fiber reinforced composites. [Thesis]. Baylor University; 2016. Available from: http://hdl.handle.net/2104/9794

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation


UCLA

21. Trujillo, Joy Elizabeth. Negative Thermal Expansion and Ferroelectric Oxides in Electronic Device Composites.

Degree: Materials Science and Engineering, 2017, UCLA

 Electronic devices increasingly pervade our daily lives, driving the need to develop components which have material properties that can be designed to target a specific… (more)

Subjects/Keywords: Nanotechnology; Engineering; Packaging; ceramics; coefficient of thermal expansion; composites; dielectric constant; ferroelectric; nanoparticles

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APA (6th Edition):

Trujillo, J. E. (2017). Negative Thermal Expansion and Ferroelectric Oxides in Electronic Device Composites. (Thesis). UCLA. Retrieved from http://www.escholarship.org/uc/item/2pn1v1w1

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Chicago Manual of Style (16th Edition):

Trujillo, Joy Elizabeth. “Negative Thermal Expansion and Ferroelectric Oxides in Electronic Device Composites.” 2017. Thesis, UCLA. Accessed November 20, 2019. http://www.escholarship.org/uc/item/2pn1v1w1.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

MLA Handbook (7th Edition):

Trujillo, Joy Elizabeth. “Negative Thermal Expansion and Ferroelectric Oxides in Electronic Device Composites.” 2017. Web. 20 Nov 2019.

Vancouver:

Trujillo JE. Negative Thermal Expansion and Ferroelectric Oxides in Electronic Device Composites. [Internet] [Thesis]. UCLA; 2017. [cited 2019 Nov 20]. Available from: http://www.escholarship.org/uc/item/2pn1v1w1.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Council of Science Editors:

Trujillo JE. Negative Thermal Expansion and Ferroelectric Oxides in Electronic Device Composites. [Thesis]. UCLA; 2017. Available from: http://www.escholarship.org/uc/item/2pn1v1w1

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation


Youngstown State University

22. Maravola, Michael. Low Coefficient of Thermal Expansion Composite Tooling Manufactured via Additive Manufacturing Technologies.

Degree: MSin Engineering, Department of Civil/Environmental and Chemical Engineering, 2018, Youngstown State University

 The incorporation of additive manufacturing (AM) enables the ability to fabricate composite tooling molds rapidly and in a cost effective manner. This work has demonstrated… (more)

Subjects/Keywords: Materials Science; Additive manufacturing; 3D printing; Composite tooling; Low coefficient of thermal expansion

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APA (6th Edition):

Maravola, M. (2018). Low Coefficient of Thermal Expansion Composite Tooling Manufactured via Additive Manufacturing Technologies. (Masters Thesis). Youngstown State University. Retrieved from http://rave.ohiolink.edu/etdc/view?acc_num=ysu154704993501967

Chicago Manual of Style (16th Edition):

Maravola, Michael. “Low Coefficient of Thermal Expansion Composite Tooling Manufactured via Additive Manufacturing Technologies.” 2018. Masters Thesis, Youngstown State University. Accessed November 20, 2019. http://rave.ohiolink.edu/etdc/view?acc_num=ysu154704993501967.

MLA Handbook (7th Edition):

Maravola, Michael. “Low Coefficient of Thermal Expansion Composite Tooling Manufactured via Additive Manufacturing Technologies.” 2018. Web. 20 Nov 2019.

Vancouver:

Maravola M. Low Coefficient of Thermal Expansion Composite Tooling Manufactured via Additive Manufacturing Technologies. [Internet] [Masters thesis]. Youngstown State University; 2018. [cited 2019 Nov 20]. Available from: http://rave.ohiolink.edu/etdc/view?acc_num=ysu154704993501967.

Council of Science Editors:

Maravola M. Low Coefficient of Thermal Expansion Composite Tooling Manufactured via Additive Manufacturing Technologies. [Masters Thesis]. Youngstown State University; 2018. Available from: http://rave.ohiolink.edu/etdc/view?acc_num=ysu154704993501967


ETH Zürich

23. Jobst, Wolfram. Messungen der Wärmeleitfähigkeit von organischen, aliphatischen Flüssigkeiten und von Gasen nach einem instationären Absolutverfahren.

Degree: 1964, ETH Zürich

Subjects/Keywords: WÄRMELEITUNGSKOEFFIZIENT (WÄRMELEHRE); COEFFICIENT OF THERMAL CONDUCTIVITY (THERMOPHYSICS); info:eu-repo/classification/ddc/530; Physics

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APA (6th Edition):

Jobst, W. (1964). Messungen der Wärmeleitfähigkeit von organischen, aliphatischen Flüssigkeiten und von Gasen nach einem instationären Absolutverfahren. (Doctoral Dissertation). ETH Zürich. Retrieved from http://hdl.handle.net/20.500.11850/131712

Chicago Manual of Style (16th Edition):

Jobst, Wolfram. “Messungen der Wärmeleitfähigkeit von organischen, aliphatischen Flüssigkeiten und von Gasen nach einem instationären Absolutverfahren.” 1964. Doctoral Dissertation, ETH Zürich. Accessed November 20, 2019. http://hdl.handle.net/20.500.11850/131712.

MLA Handbook (7th Edition):

Jobst, Wolfram. “Messungen der Wärmeleitfähigkeit von organischen, aliphatischen Flüssigkeiten und von Gasen nach einem instationären Absolutverfahren.” 1964. Web. 20 Nov 2019.

Vancouver:

Jobst W. Messungen der Wärmeleitfähigkeit von organischen, aliphatischen Flüssigkeiten und von Gasen nach einem instationären Absolutverfahren. [Internet] [Doctoral dissertation]. ETH Zürich; 1964. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/20.500.11850/131712.

Council of Science Editors:

Jobst W. Messungen der Wärmeleitfähigkeit von organischen, aliphatischen Flüssigkeiten und von Gasen nach einem instationären Absolutverfahren. [Doctoral Dissertation]. ETH Zürich; 1964. Available from: http://hdl.handle.net/20.500.11850/131712

24. Chamroune, Nabil. Matériaux composites Aluminium/Carbone : architecture spécifique et propriétés thermiques adaptatives : Development of bulk MMC materials with specific architectures and thermal properties.

Degree: Docteur es, Physico-Chimie de la Matière Condensée, 2018, Bordeaux

Les matériaux composites à matrice métallique (CMM) sont actuellement étudiés pour être utilisés dans de nombreux domaines d’application. L’une des applications potentielles concerne leur utilisation… (more)

Subjects/Keywords: Composite; Aluminium; Carbone; Conductivité thermique; Coefficient d'expansion thermique; Composite; Aluminum; Carbon; Thermal conductivity; Coefficient of thermal expansion; 620.118

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APA (6th Edition):

Chamroune, N. (2018). Matériaux composites Aluminium/Carbone : architecture spécifique et propriétés thermiques adaptatives : Development of bulk MMC materials with specific architectures and thermal properties. (Doctoral Dissertation). Bordeaux. Retrieved from http://www.theses.fr/2018BORD0140

Chicago Manual of Style (16th Edition):

Chamroune, Nabil. “Matériaux composites Aluminium/Carbone : architecture spécifique et propriétés thermiques adaptatives : Development of bulk MMC materials with specific architectures and thermal properties.” 2018. Doctoral Dissertation, Bordeaux. Accessed November 20, 2019. http://www.theses.fr/2018BORD0140.

MLA Handbook (7th Edition):

Chamroune, Nabil. “Matériaux composites Aluminium/Carbone : architecture spécifique et propriétés thermiques adaptatives : Development of bulk MMC materials with specific architectures and thermal properties.” 2018. Web. 20 Nov 2019.

Vancouver:

Chamroune N. Matériaux composites Aluminium/Carbone : architecture spécifique et propriétés thermiques adaptatives : Development of bulk MMC materials with specific architectures and thermal properties. [Internet] [Doctoral dissertation]. Bordeaux; 2018. [cited 2019 Nov 20]. Available from: http://www.theses.fr/2018BORD0140.

Council of Science Editors:

Chamroune N. Matériaux composites Aluminium/Carbone : architecture spécifique et propriétés thermiques adaptatives : Development of bulk MMC materials with specific architectures and thermal properties. [Doctoral Dissertation]. Bordeaux; 2018. Available from: http://www.theses.fr/2018BORD0140

25. Thomas, Benjamin. Matériaux composites Argent/Carbone à propriétés thermiques adaptatives : Silver/Carbon composite materials with tunable thermal properties.

Degree: Docteur es, Physico-Chimie de la Matière Condensée, 2019, Bordeaux

 Du fait leur conductivité thermique élevée, les matériaux composites à matrice métallique et renfort carbone possèdent un fort potentiel d’application pour la gestion thermique en… (more)

Subjects/Keywords: Composite; Argent; Carbone; Conductivité thermique; Coefficient d’expansion thermique; Composite; Silver; Carbon; Thermal conductivity; Coefficient of thermal expansion; 620.118

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APA (6th Edition):

Thomas, B. (2019). Matériaux composites Argent/Carbone à propriétés thermiques adaptatives : Silver/Carbon composite materials with tunable thermal properties. (Doctoral Dissertation). Bordeaux. Retrieved from http://www.theses.fr/2019BORD0140

Chicago Manual of Style (16th Edition):

Thomas, Benjamin. “Matériaux composites Argent/Carbone à propriétés thermiques adaptatives : Silver/Carbon composite materials with tunable thermal properties.” 2019. Doctoral Dissertation, Bordeaux. Accessed November 20, 2019. http://www.theses.fr/2019BORD0140.

MLA Handbook (7th Edition):

Thomas, Benjamin. “Matériaux composites Argent/Carbone à propriétés thermiques adaptatives : Silver/Carbon composite materials with tunable thermal properties.” 2019. Web. 20 Nov 2019.

Vancouver:

Thomas B. Matériaux composites Argent/Carbone à propriétés thermiques adaptatives : Silver/Carbon composite materials with tunable thermal properties. [Internet] [Doctoral dissertation]. Bordeaux; 2019. [cited 2019 Nov 20]. Available from: http://www.theses.fr/2019BORD0140.

Council of Science Editors:

Thomas B. Matériaux composites Argent/Carbone à propriétés thermiques adaptatives : Silver/Carbon composite materials with tunable thermal properties. [Doctoral Dissertation]. Bordeaux; 2019. Available from: http://www.theses.fr/2019BORD0140


Euskal Herriko Unibertsitatea / Universidad del País Vasco

26. Iraola Sáenz, Bruno. Optimization of graphene dispersion and functionalization processes for the development of different composites .

Degree: 2017, Euskal Herriko Unibertsitatea / Universidad del País Vasco

 La tesis trata sobre la utilización de Grafeno y sus derivados en diversas aplicaciones. Comienza con la caracterización de la estructura y morfología de dichos… (more)

Subjects/Keywords: composites; thermal properties of solids; composite polymers; materiales compuestos; propiedades térmicas de los sólidos; materiales compuestos polimericos

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APA (6th Edition):

Iraola Sáenz, B. (2017). Optimization of graphene dispersion and functionalization processes for the development of different composites . (Doctoral Dissertation). Euskal Herriko Unibertsitatea / Universidad del País Vasco. Retrieved from http://hdl.handle.net/10810/24266

Chicago Manual of Style (16th Edition):

Iraola Sáenz, Bruno. “Optimization of graphene dispersion and functionalization processes for the development of different composites .” 2017. Doctoral Dissertation, Euskal Herriko Unibertsitatea / Universidad del País Vasco. Accessed November 20, 2019. http://hdl.handle.net/10810/24266.

MLA Handbook (7th Edition):

Iraola Sáenz, Bruno. “Optimization of graphene dispersion and functionalization processes for the development of different composites .” 2017. Web. 20 Nov 2019.

Vancouver:

Iraola Sáenz B. Optimization of graphene dispersion and functionalization processes for the development of different composites . [Internet] [Doctoral dissertation]. Euskal Herriko Unibertsitatea / Universidad del País Vasco; 2017. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/10810/24266.

Council of Science Editors:

Iraola Sáenz B. Optimization of graphene dispersion and functionalization processes for the development of different composites . [Doctoral Dissertation]. Euskal Herriko Unibertsitatea / Universidad del País Vasco; 2017. Available from: http://hdl.handle.net/10810/24266


Georgia Tech

27. Holmes, James. The development of a method for the measurement of the heat capacities of solids at elevated temperatures.

Degree: MS, Chemistry, 1938, Georgia Tech

Subjects/Keywords: Solids Thermal properties.

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APA (6th Edition):

Holmes, J. (1938). The development of a method for the measurement of the heat capacities of solids at elevated temperatures. (Masters Thesis). Georgia Tech. Retrieved from http://hdl.handle.net/1853/30540

Chicago Manual of Style (16th Edition):

Holmes, James. “The development of a method for the measurement of the heat capacities of solids at elevated temperatures.” 1938. Masters Thesis, Georgia Tech. Accessed November 20, 2019. http://hdl.handle.net/1853/30540.

MLA Handbook (7th Edition):

Holmes, James. “The development of a method for the measurement of the heat capacities of solids at elevated temperatures.” 1938. Web. 20 Nov 2019.

Vancouver:

Holmes J. The development of a method for the measurement of the heat capacities of solids at elevated temperatures. [Internet] [Masters thesis]. Georgia Tech; 1938. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/1853/30540.

Council of Science Editors:

Holmes J. The development of a method for the measurement of the heat capacities of solids at elevated temperatures. [Masters Thesis]. Georgia Tech; 1938. Available from: http://hdl.handle.net/1853/30540


Dalhousie University

28. Miller, Kimberly J. Towards Near-Zero Coefficients of Thermal Expansion in A2Mo3O12 Materials.

Degree: PhD, Department of Chemistry, 2012, Dalhousie University

 The A2Mo3O12 family, where A3+ is a large trivalent cation, can show interesting thermal properties such as negative thermal expansion, also known as thermomiotic behavior,… (more)

Subjects/Keywords: thermal expansion; thermal conductivity; thermomiotic; negative thermal expansion; ceramics; heat capacity; NTE

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APA (6th Edition):

Miller, K. J. (2012). Towards Near-Zero Coefficients of Thermal Expansion in A2Mo3O12 Materials. (Doctoral Dissertation). Dalhousie University. Retrieved from http://hdl.handle.net/10222/15817

Chicago Manual of Style (16th Edition):

Miller, Kimberly J. “Towards Near-Zero Coefficients of Thermal Expansion in A2Mo3O12 Materials.” 2012. Doctoral Dissertation, Dalhousie University. Accessed November 20, 2019. http://hdl.handle.net/10222/15817.

MLA Handbook (7th Edition):

Miller, Kimberly J. “Towards Near-Zero Coefficients of Thermal Expansion in A2Mo3O12 Materials.” 2012. Web. 20 Nov 2019.

Vancouver:

Miller KJ. Towards Near-Zero Coefficients of Thermal Expansion in A2Mo3O12 Materials. [Internet] [Doctoral dissertation]. Dalhousie University; 2012. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/10222/15817.

Council of Science Editors:

Miller KJ. Towards Near-Zero Coefficients of Thermal Expansion in A2Mo3O12 Materials. [Doctoral Dissertation]. Dalhousie University; 2012. Available from: http://hdl.handle.net/10222/15817


Rhodes University

29. Brown, Michael Ewart. A study of irradiation effects in solids.

Degree: Faculty of Science, Chemistry, 1966, Rhodes University

 One of the primary objects of this research was to determine, if possible, the nature of the radiation damage prior to thermal decomposition. The X-ray… (more)

Subjects/Keywords: Decomposition (Chemistry); Crystals  – Thermal properties; Oxalates  – Thermal properties; Solids  – Effect of radiation on

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APA · Chicago · MLA · Vancouver · CSE | Export to Zotero / EndNote / Reference Manager

APA (6th Edition):

Brown, M. E. (1966). A study of irradiation effects in solids. (Thesis). Rhodes University. Retrieved from http://hdl.handle.net/10962/d1013387

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Chicago Manual of Style (16th Edition):

Brown, Michael Ewart. “A study of irradiation effects in solids.” 1966. Thesis, Rhodes University. Accessed November 20, 2019. http://hdl.handle.net/10962/d1013387.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

MLA Handbook (7th Edition):

Brown, Michael Ewart. “A study of irradiation effects in solids.” 1966. Web. 20 Nov 2019.

Vancouver:

Brown ME. A study of irradiation effects in solids. [Internet] [Thesis]. Rhodes University; 1966. [cited 2019 Nov 20]. Available from: http://hdl.handle.net/10962/d1013387.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Council of Science Editors:

Brown ME. A study of irradiation effects in solids. [Thesis]. Rhodes University; 1966. Available from: http://hdl.handle.net/10962/d1013387

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation


The Ohio State University

30. Pritchard, Joshua D. Design, Fabrication, and Analysis of a Multi-Layer, Low-Density, Thermally-Invariant Smart Composite via Ultrasonic Additive Manufacturing.

Degree: MS, Mechanical Engineering, 2014, The Ohio State University

 Smart materials are a class of materials that couple different regimes, such as thermal, mechanical, electrical, and magnetic. Shape memory alloys (SMAs) are classified as… (more)

Subjects/Keywords: Mechanical Engineering; Engineering; ultrasonic additive manufacturing; UAM; shape memory alloys; SMA; metal matrix composite; MMC; smart material; coefficient of thermal expansion

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APA · Chicago · MLA · Vancouver · CSE | Export to Zotero / EndNote / Reference Manager

APA (6th Edition):

Pritchard, J. D. (2014). Design, Fabrication, and Analysis of a Multi-Layer, Low-Density, Thermally-Invariant Smart Composite via Ultrasonic Additive Manufacturing. (Masters Thesis). The Ohio State University. Retrieved from http://rave.ohiolink.edu/etdc/view?acc_num=osu1406284899

Chicago Manual of Style (16th Edition):

Pritchard, Joshua D. “Design, Fabrication, and Analysis of a Multi-Layer, Low-Density, Thermally-Invariant Smart Composite via Ultrasonic Additive Manufacturing.” 2014. Masters Thesis, The Ohio State University. Accessed November 20, 2019. http://rave.ohiolink.edu/etdc/view?acc_num=osu1406284899.

MLA Handbook (7th Edition):

Pritchard, Joshua D. “Design, Fabrication, and Analysis of a Multi-Layer, Low-Density, Thermally-Invariant Smart Composite via Ultrasonic Additive Manufacturing.” 2014. Web. 20 Nov 2019.

Vancouver:

Pritchard JD. Design, Fabrication, and Analysis of a Multi-Layer, Low-Density, Thermally-Invariant Smart Composite via Ultrasonic Additive Manufacturing. [Internet] [Masters thesis]. The Ohio State University; 2014. [cited 2019 Nov 20]. Available from: http://rave.ohiolink.edu/etdc/view?acc_num=osu1406284899.

Council of Science Editors:

Pritchard JD. Design, Fabrication, and Analysis of a Multi-Layer, Low-Density, Thermally-Invariant Smart Composite via Ultrasonic Additive Manufacturing. [Masters Thesis]. The Ohio State University; 2014. Available from: http://rave.ohiolink.edu/etdc/view?acc_num=osu1406284899

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