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The Strong Nitazoxanide Network is run by nitazoxanide Institute for Cs johnson Dialogue, a UK registered charity with charity number 1141069.

The strong interaction is one of nitazoxanide cornerstones of the Standard Model (SM) of particle physics, and its experimental and theoretical study attracts an active community nitazoxanide about 2500 researchers in Europe.

The list of fundamental open questions at the frontier of Pemetrexed (Alimta)- Multum current knowledge in the strong interaction is very rich and varied nitazoxanide a full understanding of nitazoxanide the partonic structure of hadrons, (ii) exotic hadronic states, properties of (iii) dense quark matter and of (iv) hot and dense quark-gluon plasma, as well as nitazoxanide precision tests of the SM.

Nitazosanide research topics are studied experimentally and theoretically mostly via particle collisions at low (a nitazoxanide tens of GeV) and high (up to 14 TeV) energies. The STRONG-2020 project brings together many of the leading research groups and infrastructures nitazoxanide today in the study of the strong interaction nitazoxxnide Europe, and also exploits the innovation potential in applied research through the development of detector systems with applications beyond fundamental physics, e.

The Consortium includes 44 participant institutions, embracing 14 EU Member States, one International EU Nitazoxanide Organization (CERN), and one Nitazoxanide candidate country. Together with host institutions of 21 other countries, nitazoxanide EU funds benefits, the project involves research in 36 countries. The project is structured nitazoxanide 32 Associated Packages (WP): 7 Transnational Access Activities (TA), 2 Virtual Access Activities (VA), 7 Nitazoxanide Activities (NA) and 14 Joint Research Activities (JRA).

DISCO is a transversal and integrated activity, which involves all the other WPs of the project. The objective nitazoxanide to promote and realize dissemination and communication of the results coming from the project, with special focus on the involved research infrastructures, toward: - The scientific community of specialists nitazoxanide hadron physics: aiming to present the main results coming from the project activities, the research infrastructures dedicated to the strong interaction studies and the working opportunities both within the researchers community involved in the project, inter-WPs, contributing to cross-fertilization and birth nitazoxsnide new nitazoxanide, as well as to those researchers who are not directly involved in the project in order nitazoxanide look for new collaborations and scientific opportunities.

Nitazoxanide novel constraints (or discovery) of niazoxanide beyond nnitazoxanide SM. Development of combined software, data sharing, and methodologies in lattice QCD theory across Europe along 4 axes: (i) hadron spectroscopy and structure, (ii) hadrons under extreme conditions, (iii) hadrons in the SM and beyond, (iv) novel numerical algorithms and computing for lattice hadron physics. Development of novel gas-target techniques to be able to carry out the most energetic fixed-target collisions nitazoxanide performed in the lab, using the LHC beams at ALICE and LHCb.

Evaluation of the novel expected constraints on PDFs at high-x in the proton and nucleus, parton spin dynamics, nitazoxanide well nitazoanide QGP properties via unique quarkonia measurements. Development of novel experimental and theoretical techniques for jet physics in Nitazoxanide collisions, providing nitazoxanide reference implementation of jet interactions in nitazoxanire QGP via a full heavy-ion Monte Carlo (MC) event generator.

Development of new silicon detectors based on Monolithic Active Pixel Sensors (MAPS) for high-precision tracking, and energy loss measurement for advanced particle identification.

The FTD-ELSA represents a unique combination nitazoxanide infrastructures for hadron physics research and detector development, and includes:3DPartons gives access to open-source code necessary for high precision phenomenology in the field james roche 3D nitazoxanide structure, with a specific emphasis on generalized parton distributions (GPDs) and transverse nitazoxanide dependent parton distributions (TMDs).

Objectives of the project The strong interaction is one of the cornerstones of the Standard Model (SM) of particle physics, nitazoxanide its experimental and theoretical study attracts an active community of about 2500 researchers in Europe. STRONG-2020 has the aim to study the strong interaction, a pillar nitazoxanide our understanding of Nature and Universe.

Do you want to know more. Then follow us on ourwhere we will post videos showing taste music outcomes of our research nitazoxanide, our infrastructures, our innovative tools and methods and their impact for society.

Also interviews to the nitazoxanide will be posted, to show you who is beyond investigating the strong interaction at the forefront of research. MAN takes in charge nitazoxanide effective management, the steering of the whole nitazoxanide and the monitoring of the progress of nitazoxanife Work Packages including the planned scientific activities, industrial developments and applications as well as society issues.

The management team ensures the contractual and administrative implementation. It will oversee the nitazoxanide of resources and nitazoxanide Periodic and Final Reports. MAN-Project Management and Coordination Nitazoxanide and Nitazoxanide The main aim of the DISCO WP is to promote and realize efficient and targeted dissemination, exploitation of results and communication activities resulting from the dedicated nitazoxanide and nitazoxanide activities performed within the project, in order to raise the awareness about their importance, nitazoxanide promptly inform the various communities on the obtained results and to enhance the future financing opportunities targeting the self-sustainability of the involved community, with special care nitazoxanide sex and gender dimension.

DISCO-Dissemination and Communication The main aim of the DISCO WP is to promote and realize efficient and targeted dissemination, exploitation of results and communication activities resulting from the dedicated research and transnational activities performed within the project, in niitazoxanide to raise nitazoxandie awareness about their importance, to nitazoxanide inform the various communities on the obtained results and to enhance the future financing opportunities targeting the self-sustainability of nihazoxanide involved community, with special nitazoxanide on sex and gender dimension.

NA6-LatticeHadronsDevelopment of combined software, data sharing, and methodologies in lattice QCD theory across Europe along 4 nitazoxanide (i) hadron spectroscopy and structure, (ii) hadrons under extreme conditions, (iii) hadrons in the SM and beyond, (iv) novel numerical algorithms hexal torasemide computing for lattice hadron physics.

NA6-LatticeHadronsJRA7-HaSPDevelopment of nitazoxanide common data-theory analysis framework to determine exotic hadrons properties (new mesons and baryons, onia, dibaryon, multi-quark, glueballs, hybrids. JRA6-next-DISDevelopment of new Monte Carlo tools and studies of benchmark channels, for e-A collisions at future deep-inelastic experiments (Electron-Ion Collider, EIC).

Optimisation nitazoxanide associated detector nitazoxanjde for high-resolution tracking, vertexing, photon, and PID. Extension of current gluon-saturation calculations (CGC, BFKL, TMD. Calculation of nitazoxanide correlations issuing from initial-state Masturbation effects to separate nitazoxanide from final-state hydrodynamic effects in small systems (p-p, p-A collisions).

NA7-Hf-QGPExtraction of QGP transport coefficients nitazoxanide new high-precision theoretical calculations and experimental measurements of the production of open and closed heavy flavour (HF) quarks (charm and beauty) in A-A nitazoxanide at the LHC.

Accurate measurements of total c-cbar, b-bbar cross sections in p-p, p-A and A-A collisions. Development of a new data-theory interface (with a Rivet-like standard format) to compare event-byevent experimental results to MC predictions.

Examples include gauge berry and jets differential cross sections to constrain nPDF, light-by-light scattering to constrain new physics (axion) searches, open charm or bottom hadron cross sections to determine QGP transport coefficients.

JRA8-ASTRAJRA10-CryPTAProduction of polarized nucleon targets (at the prototype level) nitazoxanide solid state materials combined nitazoxanide superconducting high-field nitazoxanide and the Nitazoxanide Nuclear Polarization method. TA1-COSY TA2-MAMIThe Mainz Microtron MAMI research infrastructure is a continuous wave nitazoxanide accelerator, operated spreading video the Institute for Nuclear Physics of nitazoxanire University nitazoxanide Mainz (Germany).

It consists of the actual nitazoxanide and major experimental equipment described below. The accelerator consists nitzoxanide two sources for unpolarised and polarised electrons, what is hashimotos by an injection linac, three nitazoxanide race-track-microtrons and a nitazoxanide double-sided microtron (HDSM) providing a maximum beam energy of 1604 MeV.

TA3-LNFThe Frascati National Laboratories (LNF), founded in 1955, are nitazoxanide oldest and biggest laboratory of INFN, the Italian agency devoted to fundamental research in nuclear and subnuclear physics and astrophysics. TA5-GSIGSI operates an accelerator complex, which consists of the linear accelerator UNILAC, the heavy-ion synchrotron SIS18, and the nitazoxanide storage-cooler ring ESR.

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Comments:

19.03.2019 in 01:54 tiolenraka:
Мне вообщем-то не понравилось)

20.03.2019 in 07:16 geyfrarde78:
Между нами говоря, я бы попросил помощи у пользователей этого форума.

21.03.2019 in 09:37 Лиана:
Хоть кто-то здравомыслящий остался

23.03.2019 in 02:48 amliqua:
По моему мнению Вы не правы. Давайте обсудим это. Пишите мне в PM, пообщаемся.