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1

Bosso, Nicola. Mechatronic Modeling of Real-Time Wheel-Rail Contact. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013.

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2

Veljko, Potkonjak, and Matijevic Vladimir, eds. Dynamics of Robots with Contact Tasks. Dordrecht: Springer Netherlands, 2003.

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3

Martins, João A. C. Contact Mechanics: Proceedings of the 3rd Contact Mechanics International Symposium, Praia da Consolação, Peniche, Portugal, 17-21 June 2001. Dordrecht: Springer Netherlands, 2002.

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4

P, Wriggers, and Nackenhorst Udo, eds. Analysis and simulation of contact problems. Berlin: Springer-Verlag, 2006.

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5

Lewicki, David G. Evaluation of low-noise, improved-bearing-contact spiral bevel gears. [Cleveland, Ohio: NASA Glenn Research Center, 2003.

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6

Lewicki, David G. Evaluation of low-noise, improved-bearing-contact spiral bevel gears. [Cleveland, Ohio: NASA Glenn Research Center, 2003.

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7

Lewicki, David G. Evaluation of low-noise, improved-bearing-contact spiral bevel gears. [Cleveland, Ohio: NASA Glenn Research Center, 2003.

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8

Cook, Robert Manuel. Airfoil Vibration Dampers Program, contract no. NAS8-36720: Final report. [Washington, DC: National Aeronautics and Space Administration, 1991.

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9

Pfeiffer, F. IUTAM Symposium on Unilateral Multibody Contacts: Proceedings of the IUTAM Symposium held in Munich, Germany, August 3-7, 1998. Dordrecht: Springer Netherlands, 1999.

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10

Friedrich, Pfeiffer, Wriggers Peter, and SpringerLink (Online service), eds. Numerics of Unilateral Contacts and Friction: Modeling and Numerical Time Integration in Non-Smooth Dynamics. Berlin, Heidelberg: Springer Berlin Heidelberg, 2009.

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11

Martinez-Sanchez, Manuel. Turbine blade-tip clearance excitation forces: Final report on Contract number NAS8-35018. Cambridge, Mass: Massachusetts Institute of Technology, 1985.

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12

Martinez-Sanchez, Manuel. Turbine blade-tip clearance excitation forces: Final report on Contract number NAS8-35018. Cambridge, Mass: Massachusetts Institute of Technology, 1985.

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13

Micromechanics of Contact and Interphase Layers. Springer, 2007.

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14

L, Woods Ron, and NASA Glenn Research Center, eds. Evaluation of low-noise, improved-bearing-contact spiral bevel gears. [Cleveland, Ohio: NASA Glenn Research Center, 2003.

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15

Friction-Induced Vibrations and Self-Organization: Mechanics and Non-Equilibrium Thermodynamics of Sliding Contact. Taylor & Francis Group, 2013.

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16

M-T, Yang, and United States. National Aeronautics and Space Administration., eds. Modeling the effect of shroud contact and friction dampers on the mistuned response of turbopumps. [Washington, DC: National Aeronautics and Space Administration, 1994.

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17

M-T, Yang, and United States. National Aeronautics and Space Administration., eds. Modeling the effect of shroud contact and friction dampers on the mistuned response of turbopumps: Final report. [Washington, DC: National Aeronautics and Space Administration, 1994.

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18

Analysis and Simulation of Contact Problems (Lecture Notes in Applied and Computational Mechanics) (Lecture Notes in Applied and Computational Mechanics). Springer, 2006.

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19

Multishaker modal testing: Final report : contract no. NAS8-35338 : August 1983 - May 1985. Austin, Tex: Center for Aeronautical Research, Bureau of Engineering Research, The University of Texas at Austin, 1985.

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20

F, Seible, and United States. National Aeronautics and Space Administration., eds. Comparison of NASTRAN analysis with ground vibration results of UH-60A NASA/AEFA test configuration: Structural systems research project : final contractor report for NASA ARC contract NCC2-598. La Jolla, CA: Dept. of Applied Mechanics and Engineering Sciences, University of California, San Diego, 1990.

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21

United States. National Aeronautics and Space Administration., ed. Minimizing structural vibrations with input shaping (TM): Final report for contract NAS5-32034. [Washington, DC: National Aeronautics and Space Administration, 1995.

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22

United States. National Aeronautics and Space Administration., ed. Minimizing structural vibrations with input shaping (TM): Final report for contract NAS5-32034. [Washington, DC: National Aeronautics and Space Administration, 1995.

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23

Studer, Christian. Numerics of Unilateral Contacts and Friction: Modeling and Numerical Time Integration in Non-Smooth Dynamics. Springer, 2010.

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24

Integrated Advanced Microwave Sounding Unit-A (AMSU-A), engineering test report, AMSU-A1 METSAT Instrument (S/N 105) qualification level vibration tests of December 1998 (S/O 605445, OC-419): Contract no. NAS 5-32314. Azusa, Calif: Aerojet, 1998.

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25

(Firm), Aerojet, and United States. National Aeronautics and Space Administration., eds. Integrated Advanced Microwave Sounding Unit-A (AMSU-A), engineering test report, AMSU-A1 METSAT Instrument (S/N 105) qualification level vibration tests of December 1998 (S/O 605445, OC-419): Contract no. NAS 5-32314. Azusa, Calif: Aerojet, 1998.

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26

(Firm), Aerojet, and United States. National Aeronautics and Space Administration., eds. Integrated Advanced Microwave Sounding Unit-A (AMSU-A), engineering test report, AMSU-A1 METSAT Instrument (S/N 105) qualification level vibration tests of December 1998 (S/O 605445, OC-419): Contract no. NAS 5-32314. Azusa, Calif: Aerojet, 1998.

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27

M, Greitzer Edward, George C. Marshall Space Flight Center., and Massachusetts Institute of Technology, eds. Turbine blade-tip clearance excitation forces: Final report on Contract number NAS8-35018. Cambridge, Mass: Massachusetts Institute of Technology, 1985.

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28

M, Greitzer Edward, George C. Marshall Space Flight Center, and Massachusetts Institute of Technology, eds. Turbine blade-tip clearance excitation forces: Final report on Contract number NAS8-35018. Cambridge, Mass: Massachusetts Institute of Technology, 1985.

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29

Kodali, Anil K., and Rohit Bhargava. Nanostructured probes to enhance optical and vibrational spectroscopic imaging for biomedical applications. Edited by A. V. Narlikar and Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533060.013.15.

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This article describes the use of nanostructured probes to enhance optical and vibrational spectroscopic imaging for biomedical applications. Engineered probes and surfaces are promising tools for enhancing signals for ultrasensitive detection of diseases like carcinoma. Two methods of interest are surface-enhanced infrared absorption (SEIRA) spectroscopy and surface-enhanced Raman spectroscopy (SERS) for IR and Raman modalities, respectively. SERS and SEIRA can be broadly categorized under a common modality termed surface-enhanced vibrational spectroscopy. This article first reviews various breakthrough findings reported in SERS and SEIRA, along with different types ofsubstrates and contrast agents used in realizing the enhancement and theories proposed to explain these findings. It then considers the configurations of nano-LAMPs and presents example results demonstrating their optical resonances and tunability. Finally, it evaluates a few techniques for fabricating multilayered nanoparticles and highlights some issues with respect to fabrication.
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30

United States. National Aeronautics and Space Administration., ed. Integrated Advanced Microwave Sounding Unit-A (AMSU-A): METOP stress analysis report (qual level random vibration), A1 module : contract no. NAS 5-32314. Azusa, Calif: Aerojet, 1996.

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31

Integrated Advanced Microwave Sounding Unit-A (AMSU-A): METOP stress analysis report (qual level random vibration), A1 module : contract no. NAS 5-32314. Azusa, Calif: Aerojet, 1996.

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32

A, Copeland Richard, and United States. National Aeronautics and Space Administration., eds. O₂ Herzberg state reaction with N₂: A possible source of stratospheric N₂O : final report, SRI project PYU 1205, contract no. NAG2-1022. Menlo Park, CA: SRI International, 1997.

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33

A, Copeland Richard, and United States. National Aeronautics and Space Administration., eds. O₂ Herzberg state reaction with N₂: A possible source of stratospheric N₂O : final report, SRI project PYU 1205, contract no. NAG2-1022. Menlo Park, CA: SRI International, 1997.

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34

(Firm), Aerojet, and United States. National Aeronautics and Space Administration., eds. Integrated Advanced Microwave Sounding Unit-A (AMSU-A), performance verification report, METSAT Phase Locked Oscillator assembly, P/N 1348360-1, S/N's F07 and F08: Contract no. NAS 5-32314. [Washington, DC: National Aeronautics and Space Administration, 1998.

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35

(Firm), Aerojet, and United States. National Aeronautics and Space Administration., eds. Integrated Advanced Microwave Sounding Unit-A (AMSU-A), performance verification report, METSAT Phase Locked Oscillator assembly, P/N 1348360-1, S/N's F07 and F08: Contract no. NAS 5-32314. [Washington, DC: National Aeronautics and Space Administration, 1998.

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36

Brinckerhoff, Bechtel/Parsons. Central artery (i-93)/tunnel (i-90) project: i-93 central artery (north-causeway) design contract d015a preliminary report. 1991.

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37

Brinckerhoff, Bechtel/Parsons. Central artery (i-93)/tunnel (i-90) project: i-93 central artery (congress-north) design contract d017a preliminary design report. 1991.

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38

Nolte, David D. Galileo’s Trajectory. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198805847.003.0003.

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This chapter describes the history of Galileo’s discovery of the law of fall and the parabolic trajectory, beginning with early work on the physics of motion by predecessors like the Oxford Scholars, Tartaglia and the polymath Simon Stevin who dropped lead weights from the leaning tower of Delft three years before Galileo dropped lead weights from the leaning tower of Pisa. The story of how Galileo developed his ideas of motion is described in the context of his studies of balls rolling on inclined plane and the surprising accuracy he achieved without access to modern timekeeping. Motion was always on Galileo’s mind. He saw motion in his father’s stringed instruments, vibrating in rational resonances. He saw motion in the lantern high above in the Duomo di Pisa, swinging with fixed regularity.
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39

Becht, IV, Charles. Process Piping: The Complete Guide to ASME B31.3, Fourth Edition. ASME, 2021. http://dx.doi.org/10.1115/1.883792.

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Fully updated for the 2020 Edition of the ASME B31.3 Code, this fourth edition provides background information, historical perspective, and expert commentary on the ASME B31.3 Code requirements for process piping design and construction. It provides the most complete coverage of the Code that is available today and is packed with additional information useful to those responsible for the design and mechanical integrity of process piping. The author and the primary contributor to the fourth edition, Don Frikken are a long-serving members, and Prior Chairmen, of the ASME B31.3, Process Piping Code committee. Dr. Becht explains the principal intentions of the Code, covering the content of each of the Code's chapters. Book inserts cover special topics such as calculation of refractory lined pipe wall temperature, spring design, design for vibration, welding processes, bonding processes and expansion joint pressure thrust. Appendices in the book include useful information for pressure design and flexibility analysis as well as guidelines for computer flexibility analysis and design of piping systems with expansion joints. From the new designer wanting to known how to size a pipe wall thickness or design a spring to the expert piping engineer wanting to understand some nuance or intent of the code, everyone whose career involves process piping will find this to be a valuable reference.
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40

(Firm), Aerojet, and United States. National Aeronautics and Space Administration., eds. Integrated Advanced Microwave Sounding Unit-A (AMSU-A), engineering test report, AMSU-A1 EOS instrument (S/N 202) qualification level vibration tests of August/September 1998 (S/O 565632, OC-417) plus Addendum A: Contract no. NAS 5-32314. [Washington, DC: National Aeronautics and Space Administration, 1998.

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41

(Firm), Aerojet, and United States. National Aeronautics and Space Administration., eds. Integrated Advanced Microwave Sounding Unit-A (AMSU-A), engineering test report, AMSU-A1 EOS instrument (S/N 202) qualification level vibration tests of August/September 1998 (S/O 565632, OC-417) plus Addendum A: Contract no. NAS 5-32314. [Washington, DC: National Aeronautics and Space Administration, 1998.

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42

(Firm), Aerojet, and United States. National Aeronautics and Space Administration., eds. Integrated Advanced Microwave Sounding Unit-A (AMSU-A), engineering test report, AMSU-A1 EOS instrument (S/N 202) qualification level vibration tests of August/September 1998 (S/O 565632, OC-417) plus Addendum A: Contract no. NAS 5-32314. [Washington, DC: National Aeronautics and Space Administration, 1998.

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43

Fiala, Michele L., and Martin Schuring. Great Oboists on Music and Musicianship. Oxford University Press, 2020. http://dx.doi.org/10.1093/oso/9780190915094.001.0001.

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This volume contains interviews with twenty-six of the most prominent oboists from around the world. The chapters are in prose format and highlight different aspects of each musician’s career, focusing on musicianship and pedagogy in ways that are applicable to all musicians. The interviews contain topics such as creating musical interpretations and shaping phrases, the relationship of vocal to instrumental music, taking orchestral auditions, and being a good ensemble player/colleague. The subjects describe their pedagogy and their thoughts on breathing and support on wind instruments, developing finger technique, and creating a useful warm-up routine. The oboists discuss their ideals in reed making, articulation, and vibrato. They also share stories from their lives and careers. The oboists and English hornists profiled from North America are Pedro Diaz, Elaine Douvas, and Nathan Hughes (Metropolitan Opera Orchestra); John Ferrillo (Boston Symphony Orchestra); Carolyn Hove (Los Angeles Philharmonic); Richard Killmer (Eastman School); Nancy Ambrose King (University of Michigan); Frank Rosenwein and Robert Walters (Cleveland Orchestra); Humbert Lucarelli (soloist); Grover Schiltz (formerly Chicago Symphony); Eugene Izotov (San Francisco Symphony, originally from Russia); Allan Vogel (Los Angeles Chamber Orchestra retired); David Weiss (formerly Los Angeles Philharmonic); Randall Wolfgang (New York City Ballet and formerly Orpheus Chamber Orchestra); Alex Klein (Brazil, formerly Chicago Symphony and currently Calgary, Canada); and Sarah Jeffrey, Toronto Symphony Orchestra. The performers based in Europe are Neil Black, Nicholas Daniel, and Gordon Hunt (England); Maurice Bourgue and David Walter (France); Thomas Indermühle (Switzerland); László Hadady (Hungary and France); and Omar Zoboli (Italy). From Australia is Diana Doherty of the Sydney Symphony Orchestra.
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