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Talk
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PSI 2016/2017 - Condensed Matter - Lecture 15
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Frank Marsiglio University of Alberta
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PSI 2016/2017 - Condensed Matter - Lecture 14
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Frank Marsiglio University of Alberta
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PSI 2016/2017 - Condensed Matter - Lecture 13
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Frank Marsiglio University of Alberta
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PSI 2016/2017 - Condensed Matter - Lecture 12
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Frank Marsiglio University of Alberta
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PSI 2016/2017 - Condensed Matter - Lecture 11
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Frank Marsiglio University of Alberta
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PSI 2016/2017 - Condensed Matter - Lecture 10
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Frank Marsiglio University of Alberta
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PSI 2016/2017 - Condensed Matter - Lecture 9
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Frank Marsiglio University of Alberta
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PSI 2016/2017 - Condensed Matter - Lecture 8
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Frank Marsiglio University of Alberta
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Talk
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PSI 2016/2017 Quantum Field Theory II - Lecture 15
PIRSA:16110015 -
PSI 2016/2017 Quantum Field Theory II - Lecture 14
PIRSA:16110014 -
PSI 2016/2017 Quantum Field Theory II - Lecture 13
PIRSA:16110013 -
PSI 2016/2017 - Quantum Field Theory II - Lecture 12
PIRSA:16110012 -
PSI 2016/2017 - Quantum Field Theory II - Lecture 11
PIRSA:16110011 -
PSI 2016/2017 - Quantum Field Theory II - Lecture 10
PIRSA:16110010 -
PSI 2016/2017 - Quantum Field Theory II - Lecture 9
PIRSA:16110009 -
PSI 2016/2017 - Quantum Field Theory II - Lecture 8
PIRSA:16110008
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Talk
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PSI 2016/2017 - Quantum Field Theory I - Lecture 14
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Tibra Ali Perimeter Institute for Theoretical Physics
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Dan Wohns Perimeter Institute for Theoretical Physics
PIRSA:16100014 -
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PSI 2016/2017 - Quantum Field Theory I - Lecture 13
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Tibra Ali Perimeter Institute for Theoretical Physics
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Dan Wohns Perimeter Institute for Theoretical Physics
PIRSA:16100013 -
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PSI 2016/2017 - Quantum Field Theory I - Lecture 12
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Tibra Ali Perimeter Institute for Theoretical Physics
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Dan Wohns Perimeter Institute for Theoretical Physics
PIRSA:16100012 -
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PSI 2016/2017 - Quantum Field Theory I - Lecture 11
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Tibra Ali Perimeter Institute for Theoretical Physics
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Dan Wohns Perimeter Institute for Theoretical Physics
PIRSA:16100011 -
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PSI 2016/2017 - Quantum Field Theory I - Lecture 10
Tibra Ali Perimeter Institute for Theoretical Physics
PIRSA:16100010 -
PSI 2016/2017 - Quantum Field Theory I - Lecture 9
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Tibra Ali Perimeter Institute for Theoretical Physics
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Dan Wohns Perimeter Institute for Theoretical Physics
PIRSA:16100009 -
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PSI 2016/2017 - Quantum Field Theory I - Lecture 8
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Tibra Ali Perimeter Institute for Theoretical Physics
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Dan Wohns Perimeter Institute for Theoretical Physics
PIRSA:16100008 -
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PSI 2016/2017 - Quantum Field Theory I - Lecture 7
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Tibra Ali Perimeter Institute for Theoretical Physics
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Dan Wohns Perimeter Institute for Theoretical Physics
PIRSA:16100007 -
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Infrared Problems in QED and Quantum Gravity
Infrared Problems in QED and Quantum Gravity
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ICTP-ICTS Winter School on Quantitative Systems Biology
The School is focused on the basic physical and biological principles of the development of multicellular organisms.The purpose of this advanced School is to provide both an introduction to the basic physical and biological principles of development, and an overview of recent breakthroughs and promising research directions in the field. The selected topics will include morphogen signaling, somatogenesis, control of growth and division, tissue mechanics and regeneration, both in model organisms (drosophila, zebrafish, mouse) and in humans.Invited Lecturers include:James Briscoe (Crick Institute, London)Marie-Anne Félix (ENS, Paris)Mauro Giacca (ICGEB, Trieste)Thomas Gregor (Princeton University)Anna-Katerina Hadjantonakis (Memorial Sloan Kettering Cancer Center)Frank Jülicher (MPIPKS Dresden)Allon Klein (Harvard Medical School)Arthur Lander (UC Irvine)Andrew Oates (Crick Institute, London)Kenneth Poss (Duke University)Boris Shraiman (UC Santa Barbara)Aryeh Warmflash (Rice University)Eri...
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ICTP-ICTS Winter School on Quantitative Systems Biology
The School is focused on the basic physical and biological principles of the development of multicellular organisms.The purpose of this advanced School is to provide both an introduction to the basic physical and biological principles of development, and an overview of recent breakthroughs and promising research directions in the field. The selected topics will include morphogen signaling, somatogenesis, control of growth and division, tissue mechanics and regeneration, both in model organisms (drosophila, zebrafish, mouse) and in humans.Invited Lecturers include:James Briscoe (Crick Institute, London)Marie-Anne Félix (ENS, Paris)Mauro Giacca (ICGEB, Trieste)Thomas Gregor (Princeton University)Anna-Katerina Hadjantonakis (Memorial Sloan Kettering Cancer Center)Frank Jülicher (MPIPKS Dresden)Allon Klein (Harvard Medical School)Arthur Lander (UC Irvine)Andrew Oates (Crick Institute, London)Kenneth Poss (Duke University)Boris Shraiman (UC Santa Barbara)Aryeh Warmflash (Rice University)Eri...
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Fundamental Problems of Quantum Physics
Quantum Theory has passed all experimental tests, with impressive accuracy. It applies to light and matter from the smallest scales so far explored, up to the mesoscopic scale. It is also a necessary ingredient for understanding the evolution of the universe. It has given rise to an impressive number of new technologies. Yet it suffers from internal problems of consistency. On top of this, its unification with general relativity is still problematic, and no fully satisfactory quantum theory of gravity yet exists. This program will explore the current state of the art and future perspectives in the foundations of quantum theory, also in connection with its unification with general relativity. It consists of a two-week school, followed by a discussion meeting. The topics to be covered in the school include:School 1st Week - Theory: The measurement problem and its proposed solutions, Role of gravity in wave function collapse, Weak measurements, Quantum Measure and the Born rule, Trace Dy...
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Fundamental Problems of Quantum Physics
Quantum Theory has passed all experimental tests, with impressive accuracy. It applies to light and matter from the smallest scales so far explored, up to the mesoscopic scale. It is also a necessary ingredient for understanding the evolution of the universe. It has given rise to an impressive number of new technologies. Yet it suffers from internal problems of consistency. On top of this, its unification with general relativity is still problematic, and no fully satisfactory quantum theory of gravity yet exists. This program will explore the current state of the art and future perspectives in the foundations of quantum theory, also in connection with its unification with general relativity. It consists of a two-week school, followed by a discussion meeting. The topics to be covered in the school include:School 1st Week - Theory: The measurement problem and its proposed solutions, Role of gravity in wave function collapse, Weak measurements, Quantum Measure and the Born rule, Trace Dy...
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PSI 2016/2017 - Condensed Matter (Marsiglio)
PSI 2016/2017 - Condensed Matter (Marsiglio) -
PSI 2016/2017 - Quantum Field Theory II (David)
PSI 2016/2017 - Quantum Field Theory II (David) -
Group Theory and Computational Methods
Computational techniques are of great help in dealing with substantial, otherwise intractable examples, possibly leading to further structural insights and the detection of patterns in many abstract mathematical fields like finite group theory, combinatorics, homological algebra etc. Computational mathematics has recently emerged as an important area of study and has established itself as a powerful tool, aiding quick maturing of intuition about concrete mathematical structures.The first part of this program, a 5-day instructional workshop during November 05 - 09, 2016, is an attempt to introduce computational techniques in group theory and related topics to graduate students and young researchers. This activity will consist of five mini-courses:Computational Homological AlgebraComputational Representation TheoryComputational aspects of finite p-groupsComputer algebra system GAPIntroduction to Monster simple group and MoonshineThe plan is to have five hours of teaching, tutorials and g...
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Group Theory and Computational Methods
Computational techniques are of great help in dealing with substantial, otherwise intractable examples, possibly leading to further structural insights and the detection of patterns in many abstract mathematical fields like finite group theory, combinatorics, homological algebra etc. Computational mathematics has recently emerged as an important area of study and has established itself as a powerful tool, aiding quick maturing of intuition about concrete mathematical structures.The first part of this program, a 5-day instructional workshop during November 05 - 09, 2016, is an attempt to introduce computational techniques in group theory and related topics to graduate students and young researchers. This activity will consist of five mini-courses:Computational Homological AlgebraComputational Representation TheoryComputational aspects of finite p-groupsComputer algebra system GAPIntroduction to Monster simple group and MoonshineThe plan is to have five hours of teaching, tutorials and g...
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PHYS 786 - General Relativity for Cosmology - Achim Kempf
PHYS 786 - General Relativity for Cosmology - Achim Kempf -
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PSI 2016/2017 - Quantum Field Theory I (Wohns)
PSI 2016/2017 - Quantum Field Theory I (Wohns)