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  • Digital Humanities and Cultural Heritage
  • 2019-2023
  • Publications
  • SE
  • Publikationer från KTH
  • arXiv.org e-Print Archive
  • Digital Humanities and Cultural Her...

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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Carney, Daniel; Raj, Nirmal; Bai, Yang; Berger, Joshua; +24 Authors

    We outline the unique opportunities and challenges in the search for 'ultraheavy' dark matter candidates with masses between roughly $10~{\rm TeV}$ and the Planck scale $m_{\rm pl} \approx 10^{16}~{\rm TeV}$. This mass range presents a wide and relatively unexplored dark matter parameter space, with a rich space of possible models and cosmic histories. We emphasize that both current detectors and new, targeted search techniques, via both direct and indirect detection, are poised to contribute to searches for ultraheavy particle dark matter in the coming decade. We highlight the need for new developments in this space, including new analyses of current and imminent direct and indirect experiments targeting ultraheavy dark matter and development of new, ultra-sensitive detector technologies like next-generation liquid noble detectors, neutrino experiments, and specialized quantum sensing techniques. Snowmass 2021, Seattle, United States, 17 Jul 2022 - 26 Jul 2022; SciPost Physics Core 6(4), 075 (2023). doi:10.21468/SciPostPhysCore.6.4.075 Published by SciPost Foundation, Amsterdam

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    SciPost Physics Core
    Article . 2023 . Peer-reviewed
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    Other literature type . 2022
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      Other literature type . 2022
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    Authors: Fredrik Bertilsson;

    Det här kapitlet vägleds av ett intresse för hur humanistisk kunskap hargjorts användbar i det svenska försvaret i förhållande till informationsteknologiskalandvinningar och nya former av så kallad informationspåverkanunder slutet av 1900-talet. Informationspåverkan avser kort sagtanvändningen av (vilseledande) information i syfte att påverka den allmännaopinionen, demokratiska processer och det politiska beslutsfattandet. Målet med kapitlet är att bidra till en bättre förståelse av denbetydelse som humanistisk kunskap har haft i det svenska försvaret ochdärmed den svenska staten under slutet av 1900-talet. Jag studerar kunskapsom vanligen knyts till utbildningen och forskningen inom humanioraoch humanistiska fakulteter vid universitet och högskolor. Det handlarsärskilt om filosofisk kunskap om bedömningen eller värderingen av argumentoch utsagor i text samt källkritik. Källkritiken utvecklades ursprungligenav historiker under 1800-talet och har som vetenskaplig metod haftett stort inflytande på historievetenskapen i de nordiska länderna, kanskesärskilt i Sverige. QC 20230913 Humanistisk kunskap i den svenska försvarsforskningen: Humanvetenskapen vid FOA 5

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ Publikationer från K...arrow_drop_down
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    Publikationer från KTH
    Part of book or chapter of book . 2023 . Peer-reviewed
    https://doi.org/10.22188/krite...
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      Publikationer från KTH
      Part of book or chapter of book . 2023 . Peer-reviewed
      https://doi.org/10.22188/krite...
      Part of book or chapter of book . 2023 . Peer-reviewed
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    Authors: Idini, Andrea; Rotureau, Jimmy; Boström, Johan; Ljungberg, Jimmy; +1 Authors

    A microscopic and consistent description of both nuclear structure and reactions is instrumental to extend the predictivity of models calculating scattering observables. In particular, this is crucial in the case of exotic nuclei not yet discovered. In this manuscript, we will present the plan of the Lund effort for a symmetry breaking description of bound and scattering observables using a generator coordinate method model based on an effective Hamiltonian constrained with a (Skyrme) functional. Following this, we will illustrate the steps to construct an optical potential for deformed nuclei from microscopic wavefunctions obtained with projected generator coordinate method from Hartree-Fock-Bogoliubov basis. Comment: 3 pages, 1 figure, proceeding INPC 2022, Cape Town, South Africa

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    Journal of Physics : Conference Series
    Article . 2023 . Peer-reviewed
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    https://doi.org/10.48550/arxiv...
    Article . 2022
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      Journal of Physics : Conference Series
      Article . 2023 . Peer-reviewed
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      https://doi.org/10.48550/arxiv...
      Article . 2022
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    Authors: Sans-Planell, Oriol; Cantini, Francesco; Costa, Marco; Grazzi, Francesco; +2 Authors

    This communication presents the results obtained at an experimental campaign at PSI BOA beamline using the combination of the ANET Compact Neutron Collimator (CNC) with the actual BOA pin-hole system. Through extensive resolution campaigns, it has been possible to quantify and understand the effects of improvement on the beam divergence when combining the two collimating systems. A new theoretical approach to this problem is described and discussed. The effect is expected not to be limited to the specific case that has been studied at PSI BOA but to have a more general validity for neutron collimation systems. Comment: 8 pages, 8 figures, ITMNR-9 conference series paper

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    Journal of Physics : Conference Series
    Article . 2023 . Peer-reviewed
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    https://doi.org/10.48550/arxiv...
    Article . 2023
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      Journal of Physics : Conference Series
      Article . 2023 . Peer-reviewed
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      https://doi.org/10.48550/arxiv...
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    The fact that we can build models from data, and therefore refine our models with more data from experiments, is usually given for granted in scientific inquiry. However, how much information can we extract, and how precise can we expect our learned model to be, if we have only a finite amount of data at our disposal? Nuclear physics demands an high degree of precision from models that are inferred from the limited number of nuclei that can be possibly made in the laboratories. In manuscript I will introduce some concepts of computational science, such as statistical theory of learning and Hamiltonian complexity, and use them to contextualise the results concerning the amount of data necessary to extrapolate a mass model to a given precision. 6 pages, 1 figure, proceeding INPC 2022, Cape Town, South Africa

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    https://doi.org/10.48550/arxiv...
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      Journal of Physics : Conference Series
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      https://doi.org/10.48550/arxiv...
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    Authors: Ljungberg, J.; Boström, J.; Carlsson, B. G.; Idini, A.; +1 Authors

    A method for beyond-mean-field calculations based on an energy density functional is described. The main idea is to map the energy surface for the nuclear quadrupole deformation, obtained from an energy density functional at the mean-field level, into an effective Hamiltonian expressed as a many-body operator. The advantage of this procedure is that one avoids the problems with density dependence which can arise in beyond-mean-field methods. The effective Hamiltonian is then used in a straightforward way in the generator-coordinate-method with the inclusion of projections onto good particle numbers and angular momentum. In the end, both spectra and wave functions are obtained. As an example of the method, calculations for the nucleus $ ^{62} $Zn is performed with three different parametrizations of the Skyrme functional. The results are compared with experiment. 6 pages, 3 figures, conference proceeding to INPC 2022

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    Journal of Physics : Conference Series
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      Journal of Physics : Conference Series
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    Authors: Johnsson, Martin;

    This paper will argue that one of the biggest challenges for livestock genomics is to make whole-genome sequencing and functional genomics applicable to breeding practice. It discusses potential explanations for why it is so difficult to consistently improve the accuracy of genomic prediction by means of whole-genome sequence data, and three potential attacks on the problem.

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    Authors: Miniotaite, Ugne; Forslund, Ola Kenji; Nocerino, Elisabetta; Elson, Frank; +11 Authors

    LiFePO$_4$ (LFPO) is an archetypical and well-known cathode material for rechargeable Li-ion batteries. However, its quasi-one-dimensional (Q1D) structure along with the Fe ions, LFPO also displays interesting low-temperature magnetic properties. Our team has previously utilized the muon spin rotation ($\mu^+$SR) technique to investigate both magnetic spin order as well as Li-ion diffusion in LFPO. In this initial study we extend our investigation and make use of high-pressure $\mu^+$SR to investigate effects on the low-$T$ magnetic order. Contrary to theoretical predictions we find that the magnetic ordering temperature as well as the ordered magnetic moment increase at high pressure (compressive strain). Comment: 8 pages, 6 figures, submitted as a part of the International Conference on Muon Spin Rotation, Relaxation and Resonance 2022. Accepted Dec 2022

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      Journal of Physics : Conference Series
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    Authors: Elson, Frank; Das, Debarchan; Simutis, Gediminas; Forslund, Ola Kenji; +5 Authors

    For quantum systems or materials, a common procedure for probing their behaviour is to tune electronic/magnetic properties using external parameters, e.g. temperature, magnetic field or pressure. Pressure application as an external stimuli is a widely used tool, where the sample in question is inserted into a pressure cell providing a hydrostatic pressure condition. Such device causes some practical problems when using in Muon Spin Rotation/Relaxation ($\mu^+$SR) experiments as a large proportion of the muons will be implanted in the pressure cell rather than in the sample, resulting in a higher background signal. This issue gets further amplified when the temperature dependent response from the sample is much smaller than that of the pressure cell,which may cause the sample response to be lost in the background and cause difficulties in aligning the sample within the beam. To tackle this issue, we have used pySRIM to construct a practical and helpful simulation tool for calculating muon stopping fractions, specifically for the pressure cell setup at the $\mu$E1 beamline using the GPD spectrometer at the Paul Scherrer Institute, with the use of TRIM simulations. The program is used to estimate the number of muon stopping in both the sample and the pressure cell at a given momentum. The simulation tool is programmed into a GUI, making it accessible to user to approximate prior to their experiments at GPD what fractions will belong to the sample and the pressure cell in their fitting procedure. Comment: 8 Pages, 3 Figures, Conference proceedings for 15th international conference on muon spin rotation, relaxation and resonance

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    Authors: Ge, Yuqing; Andreica, Daniel; Sassa, Yasmine; Nocerino, Elisabetta; +5 Authors

    Abstract A Muon Spin Rotation (µ + SR) study was conducted to investigate the magnetic properties of SrCu2(BO3)2 (SCBO) as a function of temperature/pressure. Measurements in zero field and transverse field confirm the absence of long range magnetic order at high pressures and low temperatures. These measurements suggest changes in the Cu spin fluctuations characteristics above 21 kbar, consistent with the formation of a plaquette phase as previously suggested by inelastic neutron scattering measurements. SCBO is the only known realisation of the Shatry-Sutherland model, thus the ground state mediating the dimer and antiferromagnetic phase is likekly to be a plaquette state.

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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Carney, Daniel; Raj, Nirmal; Bai, Yang; Berger, Joshua; +24 Authors

    We outline the unique opportunities and challenges in the search for 'ultraheavy' dark matter candidates with masses between roughly $10~{\rm TeV}$ and the Planck scale $m_{\rm pl} \approx 10^{16}~{\rm TeV}$. This mass range presents a wide and relatively unexplored dark matter parameter space, with a rich space of possible models and cosmic histories. We emphasize that both current detectors and new, targeted search techniques, via both direct and indirect detection, are poised to contribute to searches for ultraheavy particle dark matter in the coming decade. We highlight the need for new developments in this space, including new analyses of current and imminent direct and indirect experiments targeting ultraheavy dark matter and development of new, ultra-sensitive detector technologies like next-generation liquid noble detectors, neutrino experiments, and specialized quantum sensing techniques. Snowmass 2021, Seattle, United States, 17 Jul 2022 - 26 Jul 2022; SciPost Physics Core 6(4), 075 (2023). doi:10.21468/SciPostPhysCore.6.4.075 Published by SciPost Foundation, Amsterdam

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    Authors: Fredrik Bertilsson;

    Det här kapitlet vägleds av ett intresse för hur humanistisk kunskap hargjorts användbar i det svenska försvaret i förhållande till informationsteknologiskalandvinningar och nya former av så kallad informationspåverkanunder slutet av 1900-talet. Informationspåverkan avser kort sagtanvändningen av (vilseledande) information i syfte att påverka den allmännaopinionen, demokratiska processer och det politiska beslutsfattandet. Målet med kapitlet är att bidra till en bättre förståelse av denbetydelse som humanistisk kunskap har haft i det svenska försvaret ochdärmed den svenska staten under slutet av 1900-talet. Jag studerar kunskapsom vanligen knyts till utbildningen och forskningen inom humanioraoch humanistiska fakulteter vid universitet och högskolor. Det handlarsärskilt om filosofisk kunskap om bedömningen eller värderingen av argumentoch utsagor i text samt källkritik. Källkritiken utvecklades ursprungligenav historiker under 1800-talet och har som vetenskaplig metod haftett stort inflytande på historievetenskapen i de nordiska länderna, kanskesärskilt i Sverige. QC 20230913 Humanistisk kunskap i den svenska försvarsforskningen: Humanvetenskapen vid FOA 5

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    Authors: Idini, Andrea; Rotureau, Jimmy; Boström, Johan; Ljungberg, Jimmy; +1 Authors

    A microscopic and consistent description of both nuclear structure and reactions is instrumental to extend the predictivity of models calculating scattering observables. In particular, this is crucial in the case of exotic nuclei not yet discovered. In this manuscript, we will present the plan of the Lund effort for a symmetry breaking description of bound and scattering observables using a generator coordinate method model based on an effective Hamiltonian constrained with a (Skyrme) functional. Following this, we will illustrate the steps to construct an optical potential for deformed nuclei from microscopic wavefunctions obtained with projected generator coordinate method from Hartree-Fock-Bogoliubov basis. Comment: 3 pages, 1 figure, proceeding INPC 2022, Cape Town, South Africa

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    Authors: Sans-Planell, Oriol; Cantini, Francesco; Costa, Marco; Grazzi, Francesco; +2 Authors

    This communication presents the results obtained at an experimental campaign at PSI BOA beamline using the combination of the ANET Compact Neutron Collimator (CNC) with the actual BOA pin-hole system. Through extensive resolution campaigns, it has been possible to quantify and understand the effects of improvement on the beam divergence when combining the two collimating systems. A new theoretical approach to this problem is described and discussed. The effect is expected not to be limited to the specific case that has been studied at PSI BOA but to have a more general validity for neutron collimation systems. Comment: 8 pages, 8 figures, ITMNR-9 conference series paper

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      https://doi.org/10.48550/arxiv...
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    The fact that we can build models from data, and therefore refine our models with more data from experiments, is usually given for granted in scientific inquiry. However, how much information can we extract, and how precise can we expect our learned model to be, if we have only a finite amount of data at our disposal? Nuclear physics demands an high degree of precision from models that are inferred from the limited number of nuclei that can be possibly made in the laboratories. In manuscript I will introduce some concepts of computational science, such as statistical theory of learning and Hamiltonian complexity, and use them to contextualise the results concerning the amount of data necessary to extrapolate a mass model to a given precision. 6 pages, 1 figure, proceeding INPC 2022, Cape Town, South Africa

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    Authors: Ljungberg, J.; Boström, J.; Carlsson, B. G.; Idini, A.; +1 Authors

    A method for beyond-mean-field calculations based on an energy density functional is described. The main idea is to map the energy surface for the nuclear quadrupole deformation, obtained from an energy density functional at the mean-field level, into an effective Hamiltonian expressed as a many-body operator. The advantage of this procedure is that one avoids the problems with density dependence which can arise in beyond-mean-field methods. The effective Hamiltonian is then used in a straightforward way in the generator-coordinate-method with the inclusion of projections onto good particle numbers and angular momentum. In the end, both spectra and wave functions are obtained. As an example of the method, calculations for the nucleus $ ^{62} $Zn is performed with three different parametrizations of the Skyrme functional. The results are compared with experiment. 6 pages, 3 figures, conference proceeding to INPC 2022

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    Authors: Johnsson, Martin;

    This paper will argue that one of the biggest challenges for livestock genomics is to make whole-genome sequencing and functional genomics applicable to breeding practice. It discusses potential explanations for why it is so difficult to consistently improve the accuracy of genomic prediction by means of whole-genome sequence data, and three potential attacks on the problem.

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    Authors: Miniotaite, Ugne; Forslund, Ola Kenji; Nocerino, Elisabetta; Elson, Frank; +11 Authors

    LiFePO$_4$ (LFPO) is an archetypical and well-known cathode material for rechargeable Li-ion batteries. However, its quasi-one-dimensional (Q1D) structure along with the Fe ions, LFPO also displays interesting low-temperature magnetic properties. Our team has previously utilized the muon spin rotation ($\mu^+$SR) technique to investigate both magnetic spin order as well as Li-ion diffusion in LFPO. In this initial study we extend our investigation and make use of high-pressure $\mu^+$SR to investigate effects on the low-$T$ magnetic order. Contrary to theoretical predictions we find that the magnetic ordering temperature as well as the ordered magnetic moment increase at high pressure (compressive strain). Comment: 8 pages, 6 figures, submitted as a part of the International Conference on Muon Spin Rotation, Relaxation and Resonance 2022. Accepted Dec 2022

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    Journal of Physics : Conference Series
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    https://doi.org/10.48550/arxiv...
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      Journal of Physics : Conference Series
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      https://doi.org/10.48550/arxiv...
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    Authors: Elson, Frank; Das, Debarchan; Simutis, Gediminas; Forslund, Ola Kenji; +5 Authors

    For quantum systems or materials, a common procedure for probing their behaviour is to tune electronic/magnetic properties using external parameters, e.g. temperature, magnetic field or pressure. Pressure application as an external stimuli is a widely used tool, where the sample in question is inserted into a pressure cell providing a hydrostatic pressure condition. Such device causes some practical problems when using in Muon Spin Rotation/Relaxation ($\mu^+$SR) experiments as a large proportion of the muons will be implanted in the pressure cell rather than in the sample, resulting in a higher background signal. This issue gets further amplified when the temperature dependent response from the sample is much smaller than that of the pressure cell,which may cause the sample response to be lost in the background and cause difficulties in aligning the sample within the beam. To tackle this issue, we have used pySRIM to construct a practical and helpful simulation tool for calculating muon stopping fractions, specifically for the pressure cell setup at the $\mu$E1 beamline using the GPD spectrometer at the Paul Scherrer Institute, with the use of TRIM simulations. The program is used to estimate the number of muon stopping in both the sample and the pressure cell at a given momentum. The simulation tool is programmed into a GUI, making it accessible to user to approximate prior to their experiments at GPD what fractions will belong to the sample and the pressure cell in their fitting procedure. Comment: 8 Pages, 3 Figures, Conference proceedings for 15th international conference on muon spin rotation, relaxation and resonance

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    https://doi.org/10.48550/arxiv...
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      https://doi.org/10.48550/arxiv...
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    Authors: Ge, Yuqing; Andreica, Daniel; Sassa, Yasmine; Nocerino, Elisabetta; +5 Authors

    Abstract A Muon Spin Rotation (µ + SR) study was conducted to investigate the magnetic properties of SrCu2(BO3)2 (SCBO) as a function of temperature/pressure. Measurements in zero field and transverse field confirm the absence of long range magnetic order at high pressures and low temperatures. These measurements suggest changes in the Cu spin fluctuations characteristics above 21 kbar, consistent with the formation of a plaquette phase as previously suggested by inelastic neutron scattering measurements. SCBO is the only known realisation of the Shatry-Sutherland model, thus the ground state mediating the dimer and antiferromagnetic phase is likekly to be a plaquette state.

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    https://doi.org/10.48550/arxiv...
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      https://doi.org/10.48550/arxiv...
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