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þ,1. I LUNDS UNIVERSITET Ins¿ituti onen f ör ut-bj"ldningsvetenskap f nsLitut i onsstyrel sen Deltagande ledamöter i beslut per capsulam: Anders Persson Andcrs Sonesson Sinikka Neuhaus Marita Ljungqvist Roger Johansson Jonatan Nâstesjö Karin Hjalmarsson Katarina Mårtensson Julia Homegård Bäverman Övriga: I-ina Andersson Sekreterare ProtokoL l Beslut per capsulam Datum: 2020 -09-25 [,ärare, prefekt

https://www.uvet.lu.se/fileadmin/user_upload/uvet/lararutbildning/pdf/Protokoll/Bilagor_201116.pdf - 2026-07-04

Rättighetslistan – Lunds universitets studenters rättigheter och ansvar

Rättighetslistan – Lunds universitets studenters rättigheter och ansvar Fo to : M ic h el T h o m as Rättighetslistan – Lunds universitets studenters rättigheter och ansvar FASTSTÄLLD AV REKTOR 2024-01-18 Fo to : M ik ae l R is ed al Fo to : K en n et R u o n a 3− LUNDS UNIVERSITETS STUDENTERS RÄTTIGHETER OCH ANSVAR Rättighetslistan – Lunds universitets studenters rättig heter och ansvar, nedan Rä

https://www.ht.lu.se/fileadmin/user_upload/ht/dokument/Fakulteterna/policydok_planer/R%C3%A4ttighetslistan__ikrafttr%C3%A4delsedatum_2024-09-02_.pdf - 2026-07-09

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LUNDS UNTVERSITET Humanistiska och teologiska fakulteterna Forskarutbildningsnämnden Närvarande ledamöter Övriga närvarande Lena Ambjörn professor Stephan Borgehammar professor, prodekanus Anton Emilsson doktorand Lena Halldenius professor Mia Huovilainen student Lars-Eric Jönsson professor Annamaria Laviola-Svensäter doktorand PROTOKOLL Sammanträdestid 2022-02-07 klockan 13.15 -15.55 Zoomsammantr

https://www.ht.lu.se/fileadmin/user_upload/ht/dokument/Fakulteterna/protokoll/FUN/FUN_2022.pdf - 2026-07-09

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Om balansen mellan människa – teknik – samhälle Skotte Mårtensson & Peter Broberg S ko tte M årtensso n & P eter B ro b erg CENTER FÖR TECHNOLUTIONwww.technolution.lth.se 1 1 Copyright © 2007 CENTER FÖR TECHNOLUTION 3 3 INNEHÅLL FÖRORD TECHNOLUTIONKONCEPTET – FRÅN EVOLUTION TILL TECHNOLUTION TELL – TECHNOLUTIONS BILDSPRÅK MÄNNISKANS BIOTEKNISKA EVOLUTION SAMTAL PÅ KRAPPERUPPS BORG TECHNOLUTION EVO

https://www.lth.se/technolution/assets/the_final_chapter.pdf - 2026-07-10

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Transverse momentum spectra of electrons (p(T)(e)) from semileptonic weak decays of heavy-flavor mesons in the range of 0.3 < p(T)(e) < 9.0 GeV/c have been measured at midrapidity (|y| < 0.35) by the PHENIX experiment at the Relativistic Heavy Ion Collider in p + p and Au + Au collisions at root s(NN) = 200 GeV. In addition, the azimuthal anisotropy parameter v(2) has been measured for 0.3 < p(T)(

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The PHENIX experiment has measured the suppression of semi-inclusive single high-transverse-momentum pi(0)'s in Au+Au collisions at root s(NN) = 200 GeV. The present understanding of this suppression is in terms of energy loss of the parent (fragmenting) parton in a dense color-charge medium. We have performed a quantitative comparison between various parton energy-loss models and our experimental

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Azimuthal angle (Delta phi) correlations are presented for a broad range of transverse momentum (0.4 < p(T) < 10 GeV/c) and centrality (0-92%) selections for charged hadrons from dijets in Au+Au collisions at root s(NN) = 200 GeV. With increasing p(T), the away-side Delta phi distribution evolves from a broad and relatively flat shape to a concave shape, then to a convex shape. Comparisons with p

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The transverse momentum (p(T)) spectra and ratios of identified charged hadrons (pi(+/-), K-+/-, p, (p) over bar) produced in root s(NN) = 200 GeV Au + Au and d + Au collisions are reported in five different centrality classes for each collision species. The measurements of pions and protons are reported up to p(T) = 6 GeV/c (5 GeV/c), and the measurements of kaons are reported up to p(T) = 4 GeV/

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PHENIX has measured the e(+)e(-) pair continuum in root s(NN) = 200 GeV Au+Au and p+p collisions over a wide range of mass and transverse momenta. The e(+)e(-) yield is compared to the expectations from hadronic sources, based on PHENIX measurements. In the intermediate-mass region, between the masses of the phi and the J/psi meson, the yield is consistent with expectations from correlated c (c) o

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Azimuthal angle (Delta phi) correlations are presented for charged hadrons from dijets for 0.4 < p(T)< 10 GeV/c in Au+Au collisions at root s(NN)=200 GeV. With increasing p(T), the away-side distribution evolves from a broad and relatively flat shape to a concave shape, then to a convex shape. Comparisons to p+p data suggest that the away-side can be divided into a partially suppressed "head" regi

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We have studied the dependence of azimuthal anisotropy nu(2) for inclusive and identified charged hadrons in Au + Au and Cu + Cu collisions on collision energy, species, and centrality. The values of nu(2) as a function of transverse momentum pT and centrality in Au + Au collisions at root s(NN) = 200 and 62.4 GeV are the same within uncertainties. However, in Cu + Cu collisions we observe a decre

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We present azimuthal angular correlations between charged hadrons and energy deposited in calorimeter towers in central d+Au and minimum bias p+p collisions at sqrt[s_{NN}]=200 GeV. The charged hadron is measured at midrapidity |η|<0.35, and the energy is measured at large rapidity (-3.7<η<-3.1, Au-going direction). An enhanced near-side angular correlation across |Δη|>2.75 is observed in d+Au col

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Correlations between p and (p) over bar at transverse momenta typical of enhanced baryon production in Au + Au collisions are reported. The PHENIX experiment has measured same and opposite sign baryon pairs in Au + Au collisions at root s(NN) = 200 GeV. Correlated production of p and p with the trigger particle from the range 2.5 < p(T) < 4.0 GeV/c and the associated particle with 1.8 < p(T) < 2.5

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Inclusive transverse momentum spectra of eta mesons in the range p(T)approximate to 2-12 GeV/c have been measured at midrapidity (vertical bar eta vertical bar < 0.35) by the PHENIX experiment at RHIC in p+p,d+Au, and Au+Au collisions at root s(NN)=200 GeV. The eta mesons are reconstructed through their eta ->gamma gamma channel for the three colliding systems as well as through the eta ->pi(0)pi(

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For Au + Au collisions at 200 GeV, we measure neutral pion production with good statistics for transverse momentum, p(T), up to 20 GeV/c. A fivefold suppression is found, which is essentially constant for 5 < p(T) < 20 GeV/c. Experimental uncertainties are small enough to constrain any model-dependent parametrization for the transport coefficient of the medium, e. g., <(q) over cap > in the parton

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Differential measurements of elliptic flow (v(2)) for Au+Au and Cu+Cu collisions at root s(NN)=200 GeV are used to test and validate predictions from perfect fluid hydrodynamics for scaling of v(2) with eccentricity, system size, and transverse kinetic energy (KET). For KET equivalent to m(T)-m up to similar to 1 GeV the scaling is compatible with hydrodynamic expansion of a thermalized fluid. For

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The PHENIX experiment at the BNL Relativistic Heavy Ion Collider (RHIC) has measured J/psi production for rapidities -2.2 < y < 2.2 in Au+Au collisions at root s(NN)=200 GeV. The J/psi invariant yield and nuclear modification factor R-AA as a function of centrality, transverse momentum, and rapidity are reported. A suppression of J/psi relative to binary collision scaling of proton-proton reaction

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The PHENIX experiment at the BNL Relativistic Heavy Ion Collider (RHIC) has measured electrons with 0.3 < p(T) < 9 GeV/c at midrapidity (y < 0.35) from heavy-flavor (charm and bottom) decays in Au + Au collisions at root s(NN) = 200 GeV. The nuclear modification factor R-AA relative to p + p collisions shows a strong suppression in central Au + Au collisions, indicating substantial energy loss of

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PHENIX measurements are presented for the cross section and double-helicity asymmetry (A(LL)) in inclusive pi(0) production at midrapidity from p + p collisions at root s = 510 GeV from data taken in 2012 and 2013 at the Relativistic Heavy Ion Collider. The next-to-leading-order perturbative-quantum-chromodynamics theory calculation is in excellent agreement with the presented cross section result

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The PHENIX experiment has measured open heavy-flavor production via semileptonic decay over the transverse momentum range 1 < p(T) < 6 GeV/c at forward and backward rapidity (1.4 < vertical bar y vertical bar < 2.0) in d + Au and p + p collisions at root s(NN) = 200 GeV. In central d + Au collisions, relative to the yield in p + p collisions scaled by the number of binary nucleon-nucleon collision