A distributed coupling structure at S-band was designed to optimize for shunt impedance and large aperture size. Distributed coupling allows power to be fed into each cavity directly via a waveguide manifold, avoiding on-axis coupling. We propose the use of a 1 m distributed coupling design as a potential alternative and future upgrade path to this design. Currently this linac is being designed with 3 m long traveling wave structures, which provide a gradient of 16 MV/m. The Electron Ion Collider requires a pre-injector linac to accelerate large electron bunches from 4 MeV up to 400 MeV over 35 m. The Particle Physics Project Prioritization Panel (P5), a sub-panel of HEPAP, will produce a strategic report for the field later in 2022. The Snowmass Report will provide input to the High Energy Physics Advisory Panel. The frontier conveners, along with the US High Energy Physics community, will draft a final summary document that presents the big questions facing the field and science of particle physics along with research paths forward. At the summer study the frontiers will agree on their final, individual, reports. In addition, there are Snowmass Early Career Scientists forum. Rare Processes and Precision Measurements Frontier,.The Snowmass Community Study has 10 frontiers addressing different aspects of the field. Snowmass will define the most important questions for the field of particle physics and identify promising opportunities to address them. It provides an opportunity for the entire particle physics community to come together to identify and document a scientific vision for the future of particle physics in the U.S. “ Snowmass”) is organized by the Division of Particles and Fields of the American Physical Society. The Particle Physics Community Planning Exercise (a.k.a. The student support application is HERE! Students with active contributions (including poster presentations) will be prioritized to be considered for sponsorship.The POSTER abstract submission has closed.Specify container: 'body' in Dropdown's config. Side note: perhaps I'm too demanding but, by comparison with prior versions, I find Bootstrap 5 difficult to work with and poorly documented, at least at this point in time. I've smoke tested it in both latest Vue 2 ( 2.7.10) and latest Vue 3 ( 3.2.40). The solution seems to work in all cases, including inside 3d transformed ancestors. It might not be necessary, but to me it makes a lot of sense. Additionally, I'm moving the menu back to its original place in DOM once the dropdown is closed. uses TripleN's idea to append the menu to, after Popper positioned it.uses Nikola's idea to give the menu position: fixed, so Popper does the heavy lifting of positioning.If someone knows how to achieve this in Bootstrap 5 without having to meddle with DOM ourselves, I'd be delighted to learn how.Įventually I gave up and ended up moving the menu in DOM myself, after Popper positions it: I've spent hours going through Bootstrap 5's and Popper's documentation and examples, trying to find a way to do this simple task: specify a target container for popper content. This particular task used to be easy in prior versions of Bootstrap. append the popper content to while dropdown is open.allow Popper (used internally by Bootstrap 5) to position the dropdown (the popper content) correctly,.In my estimation, the correct solution would be to do both: dropdown has any valid transform value other than none ( spec ref). dropdown-menu to, so it stops working as soon as one of the ancestors of. TripleN's answer doesn't position the dropdown correctly.I find both existing answers valuable, but neither complete:
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