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LEADER |
00000cam a2200000 i 4500 |
001 |
EBSCO_ocn970041840 |
003 |
OCoLC |
005 |
20231017213018.0 |
006 |
m o d |
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cr cnu|||unuuu |
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170126s2016 ne o 100 0 eng d |
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|a N$T
|b eng
|e rda
|e pn
|c N$T
|d IOSPR
|d IDEBK
|d BTCTA
|d N$T
|d OCLCF
|d AGLDB
|d ICA
|d OCLCQ
|d D6H
|d OCLCQ
|d VTS
|d INT
|d AU@
|d OCLCQ
|d STF
|d OCLCQ
|d AUW
|d BTN
|d INTCL
|d MHW
|d SNK
|d M8D
|d CN6UV
|d AJS
|d OCLCO
|d OCLCQ
|d OCLCO
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|c (S
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|a 9781614997320
|q (electronic bk.)
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|a 1614997322
|q (electronic bk.)
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|z 9781614997313
|q (print)
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|a DEBSZ
|b 489860532
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|a AU@
|b 000062545230
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|a (OCoLC)970041840
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|a QC787.P3
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|
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|a SCI
|x 051000
|2 bisacsh
|
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0 |
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|a 539.7/3
|2 23
|
049 |
|
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|a UAMI
|
111 |
2 |
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|a Workshop "Future Research Infrastructures: Challenges and Opportunties"
|d (2015 :
|c Varenna, Italy)
|
245 |
1 |
0 |
|a Future research infrastructures :
|b challenges and opportunities /
|c edited by S. Bertolucci and L. Palumbo.
|
264 |
|
1 |
|a Amsterdam, Netherlands :
|b IOS Press,
|c 2016.
|
300 |
|
|
|a 1 online resource
|
336 |
|
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|a text
|b txt
|2 rdacontent
|
337 |
|
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|a computer
|b c
|2 rdamedia
|
338 |
|
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|a online resource
|b cr
|2 rdacarrier
|
490 |
1 |
|
|a International School of Physics "Enrico Fermi" ;
|v 194
|
588 |
0 |
|
|a Online resource; title from PDF title page (IOS Press, viewed January 26, 2017).
|
505 |
0 |
0 |
|g Machine generated contents note:
|t Challenges and perspectives of the European Spallation Source » /
|r R. Garoby --
|g 1.
|t Introduction --
|g 2.
|t ESS design --
|g 3.
|t Challenges --
|g 3.1.
|t Management challenges --
|g 3.2.
|t Technical challenges --
|g 3.2.1.
|t Accelerator --
|g 3.2.2.
|t Target and Moderator/Reflector --
|g 3.2.3.
|t Instruments --
|g 4.
|t Perspectives --
|t Swiss Light Source: The next 20 years /
|r A. Streun --
|g 1.
|t SLS history and status --
|g 2.
|t Motivation for an upgrade of the SLS --
|g 3.
|t Upgrade concept --
|g 4.
|t new low emittance cell --
|g 4.1.
|t Anti-bends --
|g 4.2.
|t Longitudinal gradient bends --
|g 5.
|t SLS-2 lattice --
|g 5.1.
|t Non-linear dynamics --
|g 5.2.
|t Collective effects --
|g 5.3.
|t Advanced modes of operation --
|g 5.4.
|t Technology --
|g 6.
|t Conclusion and outlook --
|t Elettra and FERMI perspectives /
|r M. Svandrlik --
|g 1.
|t Introduction --
|g 2.
|t Elettra --
|g 2.1.
|t Present status --
|g 2.2.
|t Short-term developments --
|g 2.3.
|
505 |
0 |
0 |
|t Elettra 2.0 --
|g 3.
|t FERMI --
|g 3.1.
|t Status --
|g 3.2.
|t Short-term upgrades --
|g 3.3.
|t Longer-term upgrades --
|g 4.
|t Conclusion --
|t X-ray brightness and coherence, and diffraction-limited storage rings /
|r M. Borland --
|g 1.
|t X-ray brightness and X-ray science --
|g 2.
|t Nanofocusing and coherence --
|g 3.
|t Diffraction-limited storage rings --
|g 3.1.
|t Brightness and electron beam emittance --
|g 3.2.
|t Emittance scaling --
|g 3.3.
|t Lattice concepts --
|g 3.4.
|t Nonlinear dynamics --
|g 3.5.
|t Collective effects --
|g 3.6.
|t Fifth generation --
|g 4.
|t Conclusion --
|t Accelerator projects in Korea: Current status and perspectives /
|r I.S. Ko --
|g 1.
|t Introduction --
|g 2.
|t PLS and PLS II --
|g 3.
|t PAL-XFEL --
|g 4.
|t KOMAC --
|g 5.
|t RISP --
|g 6.
|t Summary --
|t High-Luminosity LHC /
|r L. Rossi --
|g 1.
|t Introduction --
|g 2.
|t High-Luminosity LHC: motivations and scope --
|g 3.
|t Luminosity and HL-LHC beam parameters --
|g 3.1.
|t Luminosity --
|g 3.2.
|t Luminosity limitation in LHC
|
505 |
0 |
0 |
|t Introduction --
|g 2.
|t Clinical innovations in hadrontherapy --
|g 3.
|t Accelerators and technical developments --
|g 4.
|t Medical physics and bioengineering R & D topics --
|g 5.
|t Future directions in radiobiology --
|g 6.
|t Conclusions --
|t Free electron laser based multicolor spectroscopy /
|r C. Masciovecchio --
|t Advances and perspectives of synchrotron-based techniques for Cultural Heritage /
|r J. Susini --
|g 1.
|t Synchrotron-based techniques for Cultural Heritage: the context --
|g 1.1.
|t Establishing the biography of works of art --
|g 1.2.
|t From objects to fragments --
|g 1.3.
|t emergence of SR techniques in the set of analytical techniques for CH --
|g 2.
|t Communication: a major challenge --
|g 3.
|t Developing hardware, software and protocols: the example of the ID21 beamline, ESRF --
|g 4.
|t From SR facilities to laboratory and portable instruments --
|g 5.
|t Conclusions --
|t Energy catalysis research with advanced X-ray techniques in SSRF: Present and future challenge
|
505 |
0 |
0 |
|r J. Wang --
|g 1.
|t Introduction --
|g 2.
|t Energy catalysis research with advanced X-ray techniques --
|g 2.1.
|t Energy current situation in China --
|g 2.2.
|t Importance of energy catalysis --
|g 2.3.
|t Synchrotron radiation techniques to catalysis research --
|g 2.4.
|t Energy catalysis research at SSRF --
|g 2.5.
|t SSRF Phase-II beamlines for energy catalysis research --
|g 2.6.
|t Future challenge --
|g 3.
|t Summary --
|t Panel Discussion: The need of International World Infrastructures /
|r L. Cifarelli.
|
590 |
|
|
|a eBooks on EBSCOhost
|b EBSCO eBook Subscription Academic Collection - Worldwide
|
650 |
|
0 |
|a Particle accelerators
|v Congresses.
|
650 |
|
6 |
|a Accélérateurs de particules
|v Congrès.
|
650 |
|
7 |
|a SCIENCE
|x Physics
|x Nuclear.
|2 bisacsh
|
650 |
|
7 |
|a Particle accelerators
|2 fast
|
655 |
|
7 |
|a proceedings (reports)
|2 aat
|
655 |
|
7 |
|a Conference papers and proceedings
|2 fast
|
655 |
|
7 |
|a Conference papers and proceedings.
|2 lcgft
|
655 |
|
7 |
|a Actes de congrès.
|2 rvmgf
|
700 |
1 |
|
|a Bertolucci, S.
|q (Sergio),
|e editor.
|
700 |
1 |
|
|a Palumbo, L.
|q (Luigi),
|e editor.
|
811 |
2 |
|
|a International School of Physics "Enrico Fermi."
|t Proceedings of the International School of Physics "Enrico Fermi" ;
|v 194.
|
856 |
4 |
0 |
|u https://ebsco.uam.elogim.com/login.aspx?direct=true&scope=site&db=nlebk&AN=1455956
|z Texto completo
|
880 |
0 |
0 |
|6 505-00/(S
|g Machine generated contents note:
|t Challenges and perspectives of the European Spallation Source » /
|r R. Garoby --
|g 1.
|t Introduction --
|g 2.
|t ESS design --
|g 3.
|t Challenges --
|g 3.1.
|t Management challenges --
|g 3.2.
|t Technical challenges --
|g 3.2.1.
|t Accelerator --
|g 3.2.2.
|t Target and Moderator/Reflector --
|g 3.2.3.
|t Instruments --
|g 4.
|t Perspectives --
|t Swiss Light Source: The next 20 years /
|r A. Streun --
|g 1.
|t SLS history and status --
|g 2.
|t Motivation for an upgrade of the SLS --
|g 3.
|t Upgrade concept --
|g 4.
|t new low emittance cell --
|g 4.1.
|t Anti-bends --
|g 4.2.
|t Longitudinal gradient bends --
|g 5.
|t SLS-2 lattice --
|g 5.1.
|t Non-linear dynamics --
|g 5.2.
|t Collective effects --
|g 5.3.
|t Advanced modes of operation --
|g 5.4.
|t Technology --
|g 6.
|t Conclusion and outlook --
|t Elettra and FERMI perspectives /
|r M. Svandrlik --
|g 1.
|t Introduction --
|g 2.
|t Elettra --
|g 2.1.
|t Present status --
|g 2.2.
|t Short-term developments --
|g 2.3.
|t Elettra 2.0 --
|g 3.
|t FERMI --
|g 3.1.
|t Status --
|g 3.2.
|t Short-term upgrades --
|g 3.3.
|t Longer-term upgrades --
|g 4.
|t Conclusion --
|t X-ray brightness and coherence, and diffraction-limited storage rings /
|r M. Borland --
|g 1.
|t X-ray brightness and X-ray science --
|g 2.
|t Nanofocusing and coherence --
|g 3.
|t Diffraction-limited storage rings --
|g 3.1.
|t Brightness and electron beam emittance --
|g 3.2.
|t Emittance scaling --
|g 3.3.
|t Lattice concepts --
|g 3.4.
|t Nonlinear dynamics --
|g 3.5.
|t Collective effects --
|g 3.6.
|t Fifth generation --
|g 4.
|t Conclusion --
|t Accelerator projects in Korea: Current status and perspectives /
|r I.S. Ko --
|g 1.
|t Introduction --
|g 2.
|t PLS and PLS II --
|g 3.
|t PAL-XFEL --
|g 4.
|t KOMAC --
|g 5.
|t RISP --
|g 6.
|t Summary --
|t High-Luminosity LHC /
|r L. Rossi --
|g 1.
|t Introduction --
|g 2.
|t High-Luminosity LHC: motivations and scope --
|g 3.
|t Luminosity and HL-LHC beam parameters --
|g 3.1.
|t Luminosity --
|g 3.2.
|t Luminosity limitation in LHC --
|g 3.3.
|t Luminosity levelling and beam parameter list --
|g 4.
|t HL-LHC Main hardware --
|g 4.1.
|t Nb3Sn quadrupoles --
|g 4.2.
|t Crab cavity --
|g 5.
|t Performance and plan --
|g 6.
|t Conclusion --
|t Future Circular Colliders /
|r F. Zimmermann --
|g 1.
|t Motivation --
|g 2.
|t Hadron collider FCC-hh --
|g 3.
|t Lepton collider FCC-ee --
|g 4.
|t Lepton-hadron option FCC-he --
|g 5.
|t Collaboration and time line --
|g 6.
|t Conclusions --
|t Extreme Light Infrastructure -- Nuclear Physics /
|r C.A. Ur --
|g 1.
|t ELI-NP Research Infrastructure --
|g 2.
|t ELI-NP Gamma Beam System --
|g 3.
|t Gamma beam experiments --
|g 4.
|t Conclusions --
|t Challenges and opportunities of high intensity X/γ photon beams for Nuclear Photonics and photon-photon scattering experiments /
|r E. Milotti --
|g 1.
|t Introduction --
|g 2.
|t Challenges of Advanced Compton Sources --
|g 3.
|t Fundamental QED with photon-photon scattering --
|g 4.
|t Conclusion --
|t New research horizon in hadrontherapy /
|r R. Orecchia --
|g 1.
|t Introduction --
|g 2.
|t Clinical innovations in hadrontherapy --
|g 3.
|t Accelerators and technical developments --
|g 4.
|t Medical physics and bioengineering R&D topics --
|g 5.
|t Future directions in radiobiology --
|g 6.
|t Conclusions --
|t Free electron laser based multicolor spectroscopy /
|r C. Masciovecchio --
|t Advances and perspectives of synchrotron-based techniques for Cultural Heritage /
|r J. Susini --
|g 1.
|t Synchrotron-based techniques for Cultural Heritage: the context --
|g 1.1.
|t Establishing the biography of works of art --
|g 1.2.
|t From objects to fragments --
|g 1.3.
|t emergence of SR techniques in the set of analytical techniques for CH --
|g 2.
|t Communication: a major challenge --
|g 3.
|t Developing hardware, software and protocols: the example of the ID21 beamline, ESRF --
|g 4.
|t From SR facilities to laboratory and portable instruments --
|g 5.
|t Conclusions --
|t Energy catalysis research with advanced X-ray techniques in SSRF: Present and future challenge /
|r J. Wang --
|g 1.
|t Introduction --
|g 2.
|t Energy catalysis research with advanced X-ray techniques --
|g 2.1.
|t Energy current situation in China --
|g 2.2.
|t Importance of energy catalysis --
|g 2.3.
|t Synchrotron radiation techniques to catalysis research --
|g 2.4.
|t Energy catalysis research at SSRF --
|g 2.5.
|t SSRF Phase-II beamlines for energy catalysis research --
|g 2.6.
|t Future challenge --
|g 3.
|t Summary --
|t Panel Discussion: The need of International World Infrastructures /
|r L. Cifarelli.
|
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|b IDEB
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|b EBSC
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938 |
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|a Baker and Taylor
|b BTCP
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