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Green's Coaches LCL 806V was a Leyland Leopard with attractive Duple Dominant II coachwork originally new to Eastern Counties in 1980. It arrived in Kirkintilloch along with several sisters and Nationals from the descendant Cambus fleet to help Greens with their challenge to KCB on the busy services to Glasgow.
LCL 806V is seen on New Lairdsland Road in Kirkintilloch on the Waterside service.
©eb2010
Do not use this image without my permission.
1963 Morris Mini pick-up.
Previously registered 2306 PJ.
Fitted with a 1098cc engine.
East Anglian Motor Auctions at Wymondham -
"A fantastic example of a usable classic Morris Mini Pick-Up. Recently replaced wiring system and new interior. Just 2 owners from new! Runs and drives, MOT and tax exempt. A rare opportunity to add one of these to any collection."
Infos : LCL, caravane publicitaire du Tour de France.
Infos : LCL, advertising parade of Le Tour de France.
Infos : caravane publicitaire LCL, Le Tour de France 2019.
Infos : LCL advertising parade, Le Tour de France 2019.
The XPP (X-ray Pump Probe) instrument predominantly uses a fast optical laser to generate transient states of matter, which are probed with hard X-ray pulses from LCLS. This reveals changes in the sample’s structure initiated by the laser excitation.
(Brad Plummer/SLAC National Accelerator Laboratory)
Electrons accelerated by SLAC’s linear accelerator enter the LCLS undulator hall and run a gauntlet of 32 powerful undulators. Each undulator contains 224 magnets whose alternating poles force the electrons to zigzag violently and radiate X-rays. By the time they leave the undulator hall, the X-ray laser pulses are a billion times brighter than beams from traditional synchrotron X-ray sources, opening a new realm of possible experiments and discoveries.
Electrons accelerated by SLAC’s linear accelerator ender the LCLS undulator hall and run a gauntlet of 32 powerful undulators. Each undulator contains 224 magnets whose alternating poles force the electrons to zigzag violently and radiate X-rays. By the time they leave the undulator hall, the X-ray laser pulses are a billion times brighter than beams from traditional synchrotron X-ray sources, opening a new realm of possible experiments and discoveries.
(Brad Plummer/SLAC National Accelerator Laboratory)
Airbus A320 YL-LCL de Corendon Airlines Realizando un vuelo de Alitalia Aterrizando en Madrid- Barajas.
The LCLS-II upgrade to SLAC's Linac Coherent Light Source X-ray free-electron laser includes replacing sectors 0-10 of the linear accelerator, about 1km, with superconducting accelerator cavities. A cryoplant building provides the liquid helium needed to cool the accelerator to just a few degrees Kelvin.
Learn more: lcls.slac.stanford.edu/lcls-ii
Credit: SLAC National Accelerator Laboratory
The LCLS-II upgrade to SLAC's Linac Coherent Light Source X-ray free-electron laser includes replacing sectors 0-10 of the linear accelerator, about 1km, with superconducting accelerator cavities. A cryoplant building provides the liquid helium needed to cool the accelerator to just a few degrees Kelvin.
Learn more: lcls.slac.stanford.edu/lcls-ii
Credit: SLAC National Accelerator Laboratory
The LCLS-II upgrade to SLAC's Linac Coherent Light Source X-ray free-electron laser includes replacing sectors 0-10 of the linear accelerator, about 1km, with superconducting accelerator cavities. A cryoplant building provides the liquid helium needed to cool the accelerator to just a few degrees Kelvin.
Learn more: lcls.slac.stanford.edu/lcls-ii
Credit: SLAC National Accelerator Laboratory
Roughly 70-80% of experiments at SLAC's Linac Coherent Light Source make use of a secondary laser system. Here SLAC scientist Ryan Coffee adjusts elements on one of LCLS's laser tables.
This chamber at SLAC’s Linac Coherent Light Source is designed to conduct experiments using terahertz (THz) wavelength light along with powerful X-rays from LCLS to study quantum properties in materials. Installed in the LCLS’s Soft X-ray instrument (SXR), this ultra-high vacuum chamber includes a sample holder attached to a liquid helium flow cryostat (copper, background center), a large parabolic focusing mirror (gold, right) and two adjacent avalanche photodiode (APD) detectors (silver, foreground left).
(Christopher Smith/SLAC National Accelerator Laboratory)
Read more about the SXR instrument: portal.slac.stanford.edu/sites/lcls_public/instruments/sx...
Group photo of many of the LCLS team members, October 2019. (Jacqueline Ramseyer Orrell/SLAC National Accelerator Laboratory)
Electrons accelerated by SLAC’s linear accelerator ender the LCLS undulator hall and run a gauntlet of 32 powerful undulators. Each undulator contains 224 magnets whose alternating poles force the electrons to zigzag violently and radiate X-rays. By the time they leave the undulator hall, the X-ray laser pulses are a billion times brighter than beams from traditional synchrotron X-ray sources, opening a new realm of possible experiments and discoveries.
A femtosecond pulse from an X-ray free electron laser intersecting a droplet that contains crystals of photosystem II, the protein extracted and crystallized from cyanobacteria.
Read More:
www6.slac.stanford.edu/news/2016-11-21-new-detailed-snaps...
www.nature.com/nature/journal/vaop/ncurrent/full/nature20...
Infos : caravane publicitaire LCL, Le Tour de France 2019.
Infos : LCL advertising parade, Le Tour de France 2019.
The XPP (X-ray Pump Probe) instrument predominantly uses a fast optical laser to generate transient states of matter, which are probed with hard X-ray pulses from LCLS. This reveals changes in the sample’s structure initiated by the laser excitation.
(Brad Plummer/SLAC National Accelerator Laboratory)
This photo shows SLAC's Linac Coherent Light Source (LCLS) from the air with schematics and labels overlaying the main components of the facility. From injector to Far Experimental Hall, LCLS is close to a mile in length.
Electrons accelerated by SLAC’s linear accelerator ender the LCLS undulator hall and run a gauntlet of 32 powerful undulators. Each undulator contains 224 magnets whose alternating poles force the electrons to zigzag violently and radiate X-rays. By the time they leave the undulator hall, the X-ray laser pulses are a billion times brighter than beams from traditional synchrotron X-ray sources, opening a new realm of possible experiments and discoveries.
(Christopher Smith/SLAC National Accelerator Laboratory)
The LCLS-II upgrade to SLAC's Linac Coherent Light Source X-ray free-electron laser includes replacing sectors 0-10 of the linear accelerator, about 1km, with superconducting accelerator cavities. A cryoplant building provides the liquid helium needed to cool the accelerator to just a few degrees Kelvin.
Learn more: lcls.slac.stanford.edu/lcls-ii
Credit: SLAC National Accelerator Laboratory
Electrons accelerated by SLAC’s linear accelerator ender the LCLS undulator hall and run a gauntlet of 32 powerful undulators. Each undulator contains 224 magnets whose alternating poles force the electrons to zigzag violently and radiate X-rays. By the time they leave the undulator hall, the X-ray laser pulses are a billion times brighter than beams from traditional synchrotron X-ray sources, opening a new realm of possible experiments and discoveries.
1963 FIAT Nuova 500D.
Registered in February 2017.
Anglia Car Auctions, King's Lynn -
"V5, MoT Jan-18, 8,277 km. Imported from Italy in 2016 and UK reg'd 2017. Has original Italian registration book. Refurbished interior. Guide price: £9000 - £12,000."
This image shows the enlarged profile of an LCLS X-ray pulse, 2009. (SLAC National Accelerator Laboratory)
SRF Crymodule Assembly Tech Mike Murphy, left, and Design Engineer Naeem Huque, left, work inside a mobile clean room to install a LCLS-HE power coupler into a cyromodule at the SRF Test Lab at Jefferson Lab on Dec. 7, 2022. (Photo by Aileen Devlin | Jefferson Lab)
The XPP (X-ray Pump Probe) instrument predominantly uses a fast optical laser to generate transient states of matter, which are probed with hard X-ray pulses from LCLS. This reveals changes in the sample’s structure initiated by the laser excitation.
(Brad Plummer/SLAC National Accelerator Laboratory)