{"id":21374,"date":"2022-01-10T08:39:49","date_gmt":"2022-01-10T07:39:49","guid":{"rendered":"https:\/\/us.edu.pl\/wydzial\/wnst\/?page_id=21374"},"modified":"2023-01-20T14:00:30","modified_gmt":"2023-01-20T13:00:30","slug":"physics-2","status":"publish","type":"page","link":"https:\/\/us.edu.pl\/wydzial\/wnst\/en\/strona-glowna\/realizowane-projekty\/projekty-dydaktyczne\/vinci\/physics-0\/physics-2\/","title":{"rendered":"online lectures"},"content":{"rendered":"<p>[vc_row][vc_column]\r\n                <div class=\"text-modules\">\r\n                    <div class=\"container\">\r\n                        \r\n                        <div class=\"text-modules__content\"><\/p>\n<p><center><img class=\"alignnone size-full wp-image-20599\" src=\"https:\/\/us.edu.pl\/wydzial\/wnst\/wp-content\/uploads\/sites\/18\/zdjecia-wydarzenia\/vinci\/loga-2.png\" alt=\"\" width=\"80%\" height=\"auto\" \/><\/center><\/p>\n<\/div>\r\n                    <\/div>\r\n                <\/div>[\/vc_column][\/vc_row][vc_row][vc_column]\r\n                <div class=\"text-modules\">\r\n                    <div class=\"container\">\r\n                        \r\n                        <div class=\"text-modules__content\"><\/p>\n<h3 style=\"text-align: center;\"><span style=\"color: #002a5e;\">DISCIPLINE &#8211; PHYSICS<br \/>\nTYPE OF STUDY &#8211; ONLINE LECTURES<br \/>\n<\/span><\/h3>\n<p>\n<\/div>\r\n                    <\/div>\r\n                <\/div>[\/vc_column][\/vc_row][vc_row el_class=&#8221;container&#8221;][vc_column][vc_btn title=&#8221;Edition 2023&#8243; style=&#8221;outline-custom&#8221; outline_custom_color=&#8221;#9b132a&#8221; outline_custom_hover_background=&#8221;#9b132a&#8221; outline_custom_hover_text=&#8221;#ffffff&#8221; shape=&#8221;square&#8221; size=&#8221;lg&#8221; align=&#8221;center&#8221; button_block=&#8221;true&#8221;][vc_tta_accordion color=&#8221;white&#8221; c_icon=&#8221;triangle&#8221; active_section=&#8221;10&#8243; no_fill=&#8221;true&#8221; collapsible_all=&#8221;true&#8221; el_id=&#8221;zmiana-koloru&#8221;][vc_tta_section title=&#8221;Studies of the phase diagram of strongly interacting matterat the CERN SPS &#8211; 22 years after discovery of a new state of matter&#8221; tab_id=&#8221;1667727402858-b42572ec-1ba2&#8243;]\r\n                <div class=\"text-modules\">\r\n                    <div class=\"container\">\r\n                        \r\n                        <div class=\"text-modules__content\"><p>Twenty two years ago, the seven experiments on CERN&#8217;s Heavy Ion programme at the Super Proton Synchrotron (NA44, NA45\/CEREA,NA49, NA50,NA52\/NEWMASS, WA97\/NA57 and WA98) combining their data were able to characterise a new state of matter, verifying an important prediction of the theory of fundamental forces between quarks.<\/p>\n<p>This talk briefly reviews studies of the phase diagram of strongly interacting matter with relativistic nuclear collisions at the CERN Super Proton Synchrotron which followed the observation of the quark-gluon plasma. The first ten years of this period was mostly influenced by the results of the NA49 experiment, the second period was dominated by NA61\/SHINE. I will close by suggesting priorities for future measurements.<\/p>\n<\/div>\r\n                    <\/div>\r\n                <\/div>[\/vc_tta_section][vc_tta_section title=&#8221;Introduction to Astroparticle physics&#8221; tab_id=&#8221;1672665997011-72b0c39d-db50&#8243;]\r\n                <div class=\"text-modules\">\r\n                    <div class=\"container\">\r\n                        \r\n                        <div class=\"text-modules__content\"><p>This lecture will introduce astroparticle physics focusing on cosmic rays and astrophysical neutrinos. It covers the cosmic speed limit (Greisen Zatsepin-Kuzmin Cutoff), gigantic avalanches of elementary particles (air showers), 3000 km<sup>2<\/sup> large particle detectors (Pierre Auger Observatory), cosmic neutrinos (and how to find them) and astrophysical accelerators achieving 10,000,000 times larger beam energies than the Large Hadron Collider at CERN.<\/p>\n<\/div>\r\n                    <\/div>\r\n                <\/div>[\/vc_tta_section][vc_tta_section title=&#8221;SAXS (small angle X-ray scattering) Structural Investigation of soft nanoparticles for new nanomedicines applications&#8221; tab_id=&#8221;1672665834524-87c0aa7a-3632&#8243;]\r\n                <div class=\"text-modules\">\r\n                    <div class=\"container\">\r\n                        \r\n                        <div class=\"text-modules__content\"><p><span data-contrast=\"auto\">Thes scattering of X-rays at small angles (SAXS) is a unique technique to study emulsion phases and nanoparticles. The lecture will present the method with practical details and applications to modern pharmaceutics.<\/span><span data-ccp-props=\"{&quot;201341983&quot;:0,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559739&quot;:160,&quot;335559740&quot;:259}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">Continuous production of drug delivery systems (DDS) assisted by microfluidics has drawn a growing interest because of the high reproducibility, low batch-to-batch variation of formulations, narrow and controlled particle size distribution and scale-up facilities induced by this process. Besides, microfluidics offers opportunities for high throughput screening of process parameters and the implementation of Process Analytical Technologies (PAT) as close to the product.<\/span><span data-ccp-props=\"{&quot;201341983&quot;:0,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559739&quot;:160,&quot;335559740&quot;:259}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">In this context, we propose to spotlight the GALECHIP concept [1] through the development of an instrumented microfluidic pilot considered as a Galenic Lab-on-Chip to formulate nanomedicines, such as Lipid Nano-Emulsions (LNE), under controlled process conditions which are essential to obtain DDS with controlled sizes and properties.<\/span><span data-ccp-props=\"{&quot;201341983&quot;:0,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559739&quot;:160,&quot;335559740&quot;:259}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">With this microfluidic pilot, we conducted:<\/span><span data-ccp-props=\"{&quot;201341983&quot;:0,&quot;335559739&quot;:160,&quot;335559740&quot;:259}\">\u00a0<\/span><\/p>\n<ol style=\"list-style-type: lower-roman;\">\n<li><span data-contrast=\"auto\">an in operando Small Angle X-ray Scattering (SAXS) investigation along the microfluidic channels in order to understand the physicochemical and hydrodynamical mechanisms involved in the formation of well controlled LNEs (25, 50 and 100 nm in size). Starting at the mixing point of pure water and non-ionic surfactants in a pharmaceutical oil, we studied the phase inversion process that occurs during the Lipid Nano Emulsion formation and the DDS maturation pathway. The mapping of the SAXS signal from the chip in continuous production, was obtained with sufficient time and spatial resolution, by combining a tailored silicon\/glass chip, high speed SAXS \u201cfly-scans\u201d and the use of X-ray Compound Refractive Lenses,<\/span><\/li>\n<li>a technological development of affordable 3D printed plastic microfluidic chips (PEEK &amp; ABS) in order to encourage the use of such formulation platforms at low costs; and,<\/li>\n<li>the application to the formulation in sterile production of loaded-LNE for medical treatments involving hydrophobic drugs.<span data-ccp-props=\"{&quot;201341983&quot;:0,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559739&quot;:160,&quot;335559740&quot;:259}\">\u00a0<\/span><\/li>\n<\/ol>\n<p>\n<\/div>\r\n                    <\/div>\r\n                <\/div>[\/vc_tta_section][vc_tta_section title=&#8221;Structural properties using beamline at the SOLEIL synchrotron&#8221; tab_id=&#8221;1667727402916-89448c87-9e00&#8243;]\r\n                <div class=\"text-modules\">\r\n                    <div class=\"container\">\r\n                        \r\n                        <div class=\"text-modules__content\"><p><span class=\"TextRun SCXW43556405 BCX0\" data-contrast=\"none\"><span class=\"NormalTextRun SCXW43556405 BCX0\">To <\/span><span class=\"SpellingError SCXW43556405 BCX0\">understand<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> the <\/span><span class=\"SpellingError SCXW43556405 BCX0\">physical<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">properties<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> of materials <\/span><span class=\"SpellingError SCXW43556405 BCX0\">or<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">nanomaterials<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> we <\/span><span class=\"SpellingError SCXW43556405 BCX0\">need<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> to <\/span><span class=\"SpellingError SCXW43556405 BCX0\">know<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">perfectly<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">their<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">structure<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">properties<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\">. In <\/span><span class=\"SpellingError SCXW43556405 BCX0\">some<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">cases<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\">, X-<\/span><span class=\"SpellingError SCXW43556405 BCX0\">ray<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">diffraction<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\">, Neutron <\/span><span class=\"SpellingError SCXW43556405 BCX0\">diffraction<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> and <\/span><span class=\"SpellingError SCXW43556405 BCX0\">even<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> DFT <\/span><span class=\"SpellingError SCXW43556405 BCX0\">calculations<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">cannot<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">specify<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">certain<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">structural<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">properties<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\">. One of the <\/span><span class=\"SpellingError SCXW43556405 BCX0\">solutions<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">is<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> to <\/span><span class=\"SpellingError SCXW43556405 BCX0\">use<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">large<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">instruments<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">facilities<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">like<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> the synchrotron SOLEIL. We <\/span><span class=\"SpellingError SCXW43556405 BCX0\">will<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">give<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">some<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">examples<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> of <\/span><span class=\"SpellingError SCXW43556405 BCX0\">intermetallic<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">nanomaterials<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> for <\/span><span class=\"SpellingError SCXW43556405 BCX0\">which<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> the <\/span><span class=\"SpellingError SCXW43556405 BCX0\">use<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> of the synchrotron <\/span><span class=\"SpellingError SCXW43556405 BCX0\">is<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">essential<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\">.<\/span><\/span><\/p>\n<\/div>\r\n                    <\/div>\r\n                <\/div>[\/vc_tta_section][\/vc_tta_accordion][vc_empty_space height=&#8221;4&#8243; css=&#8221;.vc_custom_1667727400383{background-color: #002e5a !important;}&#8221;][vc_empty_space][vc_btn title=&#8221;Edition 2022&#8243; style=&#8221;outline-custom&#8221; outline_custom_color=&#8221;#9b132a&#8221; outline_custom_hover_background=&#8221;#9b132a&#8221; outline_custom_hover_text=&#8221;#ffffff&#8221; shape=&#8221;square&#8221; size=&#8221;lg&#8221; align=&#8221;center&#8221; button_block=&#8221;true&#8221;][vc_tta_accordion color=&#8221;white&#8221; c_icon=&#8221;triangle&#8221; active_section=&#8221;10&#8243; no_fill=&#8221;true&#8221; collapsible_all=&#8221;true&#8221; el_id=&#8221;zmiana-koloru&#8221;][vc_tta_section title=&#8221;Studies of the phase diagram of strongly interacting matter at the CERN SPS &#8211; 22 years after the discovery of a new state of matter&#8221; tab_id=&#8221;1672130565052-248ce3e2-9097&#8243;]\r\n                <div class=\"text-modules\">\r\n                    <div class=\"container\">\r\n                        \r\n                        <div class=\"text-modules__content\"><p>Twenty two years ago, the seven experiments on CERN&#8217;s Heavy Ion programme at the Super Proton Synchrotron (NA44, NA45\/CEREA,NA49, NA50,NA52\/NEWMASS, WA97\/NA57 and WA98) combining their data were able to characterise a new state of matter, verifying an important prediction of the theory of fundamental forces between quarks.<\/p>\n<p>This talk briefly reviews studies of the phase diagram of strongly interacting matter with relativistic nuclear collisions at the CERN Super Proton Synchrotron which followed the observation of the quark-gluon plasma. The first ten years of this period was mostly influenced by the results of the NA49 experiment, the second period was dominated by NA61\/SHINE. I will close by suggesting priorities for future measurements.<\/p>\n<\/div>\r\n                    <\/div>\r\n                <\/div>[\/vc_tta_section][vc_tta_section title=&#8221;SAXS (small angle X-ray scattering) Structural Investigation of soft nanoparticles for new nanomedicines applications&#8221; tab_id=&#8221;1672130565011-cf661210-76d9&#8243;]\r\n                <div class=\"text-modules\">\r\n                    <div class=\"container\">\r\n                        \r\n                        <div class=\"text-modules__content\"><p><span data-contrast=\"auto\">Thes scattering of X-rays at small angles (SAXS) is a unique technique to study emulsion phases and nanoparticles. The lecture will present the method with practical details and applications to modern pharmaceutics.<\/span><span data-ccp-props=\"{&quot;201341983&quot;:0,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559739&quot;:160,&quot;335559740&quot;:259}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">Continuous production of drug delivery systems (DDS) assisted by microfluidics has drawn a growing interest because of the high reproducibility, low batch-to-batch variation of formulations, narrow and controlled particle size distribution and scale-up facilities induced by this process. Besides, microfluidics offers opportunities for high throughput screening of process parameters and the implementation of Process Analytical Technologies (PAT) as close to the product.<\/span><span data-ccp-props=\"{&quot;201341983&quot;:0,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559739&quot;:160,&quot;335559740&quot;:259}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">In this context, we propose to spotlight the GALECHIP concept [1] through the development of an instrumented microfluidic pilot considered as a Galenic Lab-on-Chip to formulate nanomedicines, such as Lipid Nano-Emulsions (LNE), under controlled process conditions which are essential to obtain DDS with controlled sizes and properties.<\/span><span data-ccp-props=\"{&quot;201341983&quot;:0,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559739&quot;:160,&quot;335559740&quot;:259}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">With this microfluidic pilot, we conducted:<\/span><span data-ccp-props=\"{&quot;201341983&quot;:0,&quot;335559739&quot;:160,&quot;335559740&quot;:259}\">\u00a0<\/span><\/p>\n<ol style=\"list-style-type: lower-roman;\">\n<li><span data-contrast=\"auto\">an in operando Small Angle X-ray Scattering (SAXS) investigation along the microfluidic channels in order to understand the physicochemical and hydrodynamical mechanisms involved in the formation of well controlled LNEs (25, 50 and 100 nm in size). Starting at the mixing point of pure water and non-ionic surfactants in a pharmaceutical oil, we studied the phase inversion process that occurs during the Lipid Nano Emulsion formation and the DDS maturation pathway. The mapping of the SAXS signal from the chip in continuous production, was obtained with sufficient time and spatial resolution, by combining a tailored silicon\/glass chip, high speed SAXS \u201cfly-scans\u201d and the use of X-ray Compound Refractive Lenses,<\/span><\/li>\n<li>a technological development of affordable 3D printed plastic microfluidic chips (PEEK &amp; ABS) in order to encourage the use of such formulation platforms at low costs; and,<\/li>\n<li>the application to the formulation in sterile production of loaded-LNE for medical treatments involving hydrophobic drugs.<span data-ccp-props=\"{&quot;201341983&quot;:0,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559739&quot;:160,&quot;335559740&quot;:259}\">\u00a0<\/span><\/li>\n<\/ol>\n<p>\n<\/div>\r\n                    <\/div>\r\n                <\/div>[\/vc_tta_section][vc_tta_section title=&#8221;Structural properties using beamline at the SOLEIL synchrotron&#8221; tab_id=&#8221;1672130565032-185c2d57-23c4&#8243;]\r\n                <div class=\"text-modules\">\r\n                    <div class=\"container\">\r\n                        \r\n                        <div class=\"text-modules__content\"><p><span class=\"TextRun SCXW43556405 BCX0\" data-contrast=\"none\"><span class=\"NormalTextRun SCXW43556405 BCX0\">To <\/span><span class=\"SpellingError SCXW43556405 BCX0\">understand<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> the <\/span><span class=\"SpellingError SCXW43556405 BCX0\">physical<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">properties<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> of materials <\/span><span class=\"SpellingError SCXW43556405 BCX0\">or<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">nanomaterials<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> we <\/span><span class=\"SpellingError SCXW43556405 BCX0\">need<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> to <\/span><span class=\"SpellingError SCXW43556405 BCX0\">know<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">perfectly<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">their<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">structure<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">properties<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\">. In <\/span><span class=\"SpellingError SCXW43556405 BCX0\">some<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">cases<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\">, X-<\/span><span class=\"SpellingError SCXW43556405 BCX0\">ray<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">diffraction<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\">, Neutron <\/span><span class=\"SpellingError SCXW43556405 BCX0\">diffraction<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> and <\/span><span class=\"SpellingError SCXW43556405 BCX0\">even<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> DFT <\/span><span class=\"SpellingError SCXW43556405 BCX0\">calculations<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">cannot<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">specify<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">certain<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">structural<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">properties<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\">. One of the <\/span><span class=\"SpellingError SCXW43556405 BCX0\">solutions<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">is<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> to <\/span><span class=\"SpellingError SCXW43556405 BCX0\">use<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">large<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">instruments<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">facilities<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">like<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> the synchrotron SOLEIL. We <\/span><span class=\"SpellingError SCXW43556405 BCX0\">will<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">give<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">some<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">examples<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> of <\/span><span class=\"SpellingError SCXW43556405 BCX0\">intermetallic<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">nanomaterials<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> for <\/span><span class=\"SpellingError SCXW43556405 BCX0\">which<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> the <\/span><span class=\"SpellingError SCXW43556405 BCX0\">use<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\"> of the synchrotron <\/span><span class=\"SpellingError SCXW43556405 BCX0\">is<\/span> <span class=\"SpellingError SCXW43556405 BCX0\">essential<\/span><span class=\"NormalTextRun SCXW43556405 BCX0\">.<\/span><\/span><\/p>\n<\/div>\r\n                    <\/div>\r\n                <\/div>[\/vc_tta_section][\/vc_tta_accordion][\/vc_column][\/vc_row]<\/p>","protected":false},"excerpt":{"rendered":"<p>[vc_row][vc_column][\/vc_column][\/vc_row][vc_row][vc_column][\/vc_column][\/vc_row][vc_row el_class=&#8221;container&#8221;][vc_column][vc_btn title=&#8221;Edition 2023&#8243; style=&#8221;outline-custom&#8221; outline_custom_color=&#8221;#9b132a&#8221; outline_custom_hover_background=&#8221;#9b132a&#8221; outline_custom_hover_text=&#8221;#ffffff&#8221; shape=&#8221;square&#8221; size=&#8221;lg&#8221; align=&#8221;center&#8221; button_block=&#8221;true&#8221;][vc_tta_accordion color=&#8221;white&#8221; c_icon=&#8221;triangle&#8221; active_section=&#8221;10&#8243; no_fill=&#8221;true&#8221; collapsible_all=&#8221;true&#8221; el_id=&#8221;zmiana-koloru&#8221;][vc_tta_section title=&#8221;Studies of the phase diagram of strongly interacting matterat the CERN SPS &#8211; 22 years after discovery of a new state of matter&#8221; tab_id=&#8221;1667727402858-b42572ec-1ba2&#8243;][\/vc_tta_section][vc_tta_section title=&#8221;Introduction to Astroparticle physics&#8221; tab_id=&#8221;1672665997011-72b0c39d-db50&#8243;][\/vc_tta_section][vc_tta_section title=&#8221;SAXS (small angle X-ray scattering) Structural Investigation of [&#8230;]<\/p>\n<p><a class=\"btn btn-secondary understrap-read-more-link\" href=\"https:\/\/us.edu.pl\/wydzial\/wnst\/en\/strona-glowna\/realizowane-projekty\/projekty-dydaktyczne\/vinci\/physics-0\/physics-2\/\">Read More&#8230;<\/a><\/p>\n","protected":false},"author":4017,"featured_media":0,"parent":22732,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"page-templates\/page-with-sidebar.php","meta":{"_expiration-date-status":"saved","_expiration-date":0,"_expiration-date-type":"","_expiration-date-categories":[],"_expiration-date-options":[]},"acf":[],"_links":{"self":[{"href":"https:\/\/us.edu.pl\/wydzial\/wnst\/en\/wp-json\/wp\/v2\/pages\/21374"}],"collection":[{"href":"https:\/\/us.edu.pl\/wydzial\/wnst\/en\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/us.edu.pl\/wydzial\/wnst\/en\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/us.edu.pl\/wydzial\/wnst\/en\/wp-json\/wp\/v2\/users\/4017"}],"replies":[{"embeddable":true,"href":"https:\/\/us.edu.pl\/wydzial\/wnst\/en\/wp-json\/wp\/v2\/comments?post=21374"}],"version-history":[{"count":10,"href":"https:\/\/us.edu.pl\/wydzial\/wnst\/en\/wp-json\/wp\/v2\/pages\/21374\/revisions"}],"predecessor-version":[{"id":162922,"href":"https:\/\/us.edu.pl\/wydzial\/wnst\/en\/wp-json\/wp\/v2\/pages\/21374\/revisions\/162922"}],"up":[{"embeddable":true,"href":"https:\/\/us.edu.pl\/wydzial\/wnst\/en\/wp-json\/wp\/v2\/pages\/22732"}],"wp:attachment":[{"href":"https:\/\/us.edu.pl\/wydzial\/wnst\/en\/wp-json\/wp\/v2\/media?parent=21374"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}