All science stories

Filters

Showing results 220 to 230
of
541
  • New approaches to controlling dynamics

    Once limited to modelling physical problems in engineering, today Partial Differential Equations (PDEs) are used by a diverse array of fields, from natural resources to meteorology, aeronautics, oil and gas and biomedicine – to name only a few. But…
    Once limited to modelling physical problems in engineering, today Partial Differential Equations (PDEs) are used by a diverse array of fields, from natural resources to meteorology,…
    Once limited to modelling physical problems in engineering, today Partial Differential Equations (PDEs) are used by a diverse array of fields, from…
    Once limited to modelling physical problems in engineering, today Partial Differential Equations (PDEs) are used by a diverse array of fields, from natural resources to…
    Once limited to modelling physical problems in engineering, today Partial Differential Equations (PDEs) are used by a…
  • Statistical inference for random functions and measures

    How does one infer the dynamics of a DNA minicircle in solution? How does one align the neuronal firing patterns of several neurons across individuals? These questions are intrinsically statistical, but nevertheless escape the traditional tools of…
    How does one infer the dynamics of a DNA minicircle in solution? How does one align the neuronal firing patterns of several neurons across individuals? These questions are…
    How does one infer the dynamics of a DNA minicircle in solution? How does one align the neuronal firing patterns of several neurons across…
    How does one infer the dynamics of a DNA minicircle in solution? How does one align the neuronal firing patterns of several neurons across individuals? These questions are…
    How does one infer the dynamics of a DNA minicircle in solution? How does one align the neuronal firing patterns of several…
  • Understanding the deformation spaces of geometric structures

    Funded by the ERC, Prof. Anna Wienhard studies several new geometric forms that have been discovered over the past 20 years. These structures are closely related to the generalisation of Teichmüller space, which describes how the surface of a…
    Funded by the ERC, Prof. Anna Wienhard studies several new geometric forms that have been discovered over the past 20 years. These structures are closely related to the generalisation…
    Funded by the ERC, Prof. Anna Wienhard studies several new geometric forms that have been discovered over the past 20 years. These structures are…
    Funded by the ERC, Prof. Anna Wienhard studies several new geometric forms that have been discovered over the past 20 years. These structures are closely related to the…
    Funded by the ERC, Prof. Anna Wienhard studies several new geometric forms that have been discovered over the past 20 years…
  • Unravelling the mysteries of homogeneous dynamics

    How do you study arithmetic objects like integer points using the theory of dynamical systems? The answer is homogenous dynamics, and this connection goes both ways. The GMODGAMMADYNAMICS project, funded by an ERC grant, took a broad approach…
    How do you study arithmetic objects like integer points using the theory of dynamical systems? The answer is homogenous dynamics, and this connection goes both ways. The…
    How do you study arithmetic objects like integer points using the theory of dynamical systems? The answer is homogenous dynamics, and this connection…
    How do you study arithmetic objects like integer points using the theory of dynamical systems? The answer is homogenous dynamics, and this connection goes both ways. The…
    How do you study arithmetic objects like integer points using the theory of dynamical systems? The answer is homogenous…
  • Getting to grips with (slow) chaos

    Chaotic systems are everywhere: the weather, molecules in a gas, the stock market. Small variations in initial conditions can lead to a drastically different time evolution, a phenomenon known as the butterfly effect. Systems can be classified…
    Chaotic systems are everywhere: the weather, molecules in a gas, the stock market. Small variations in initial conditions can lead to a drastically different time evolution, a…
    Chaotic systems are everywhere: the weather, molecules in a gas, the stock market. Small variations in initial conditions can lead to a drastically…
    Chaotic systems are everywhere: the weather, molecules in a gas, the stock market. Small variations in initial conditions can lead to a drastically different time evolution,…
    Chaotic systems are everywhere: the weather, molecules in a gas, the stock market. Small variations in initial conditions…
  • Cerebral organoids: an innovative treatment for neurological disorders

    Being able to generate human tissue in vitro in a dish is expected to revolutionise biomedical research. European researchers generated brain organoids to study the mechanisms of various neurological disorders and discover novel drugs to treat them.
    Being able to generate human tissue in vitro in a dish is expected to revolutionise biomedical research. European researchers generated brain organoids to study the mechanisms of…
    Being able to generate human tissue in vitro in a dish is expected to revolutionise biomedical research. European researchers generated brain…
    Being able to generate human tissue in vitro in a dish is expected to revolutionise biomedical research. European researchers generated brain organoids to study the…
    Being able to generate human tissue in vitro in a dish is expected to revolutionise biomedical research. European…
  • Putting the CRISPR back in bacteria

    CRISPR is a widely used molecular biology tool exploiting an immune process discovered in bacteria. Dr David Bikard studies CRISPR in bacterial cells, in conjunction with different DNA repair systems, to create even newer tools. He hopes to gain…
    CRISPR is a widely used molecular biology tool exploiting an immune process discovered in bacteria. Dr David Bikard studies CRISPR in bacterial cells, in conjunction with different DNA…
    CRISPR is a widely used molecular biology tool exploiting an immune process discovered in bacteria. Dr David Bikard studies CRISPR in bacterial cells…
    CRISPR is a widely used molecular biology tool exploiting an immune process discovered in bacteria. Dr David Bikard studies CRISPR in bacterial cells, in conjunction with…
    CRISPR is a widely used molecular biology tool exploiting an immune process discovered in bacteria. Dr David Bikard studies…
  • EU grants: paving the way for young researchers

    Originally from Gijón (Spain), Prof. Eva Hevia is Professor of Inorganic Chemistry at the University of Strathclyde, in Glasgow (UK). First an Erasmus student, then a recipient of both Marie Skłodowska-Curie and ERC grants, she believes that each of…
    Originally from Gijón (Spain), Prof. Eva Hevia is Professor of Inorganic Chemistry at the University of Strathclyde, in Glasgow (UK). First an Erasmus student, then a recipient of both…
    Originally from Gijón (Spain), Prof. Eva Hevia is Professor of Inorganic Chemistry at the University of Strathclyde, in Glasgow (UK). First an…
    Originally from Gijón (Spain), Prof. Eva Hevia is Professor of Inorganic Chemistry at the University of Strathclyde, in Glasgow (UK). First an Erasmus student, then a…
    Originally from Gijón (Spain), Prof. Eva Hevia is Professor of Inorganic Chemistry at the University of Strathclyde, in…
  • Growing intestinal organoids to open new research avenues in gut diseases

    Epithelial tissues cover all body surfaces and line most of our organs, internal cavities and passageways, including the digestive tract. Prof. Elena Martínez is engineering intestinal epithelial tissues that mimic the physiological characteristics…
    Epithelial tissues cover all body surfaces and line most of our organs, internal cavities and passageways, including the digestive tract. Prof. Elena Martínez is engineering intestinal…
    Epithelial tissues cover all body surfaces and line most of our organs, internal cavities and passageways, including the digestive tract. Prof. Elena…
    Epithelial tissues cover all body surfaces and line most of our organs, internal cavities and passageways, including the digestive tract. Prof. Elena Martínez is engineering…
    Epithelial tissues cover all body surfaces and line most of our organs, internal cavities and passageways, including the…
  • Mimicking nature to create new super materials

    Nature is a major source of inspiration for scientists. ERC grantee Giulia Lanzara is one of them. The unique sensing and shaping abilities of birds, dolphins and other living creatures inspired her to engineer novel multifunctional materials which…
    Nature is a major source of inspiration for scientists. ERC grantee Giulia Lanzara is one of them. The unique sensing and shaping abilities of birds, dolphins and other living…
    Nature is a major source of inspiration for scientists. ERC grantee Giulia Lanzara is one of them. The unique sensing and shaping abilities of birds,…
    Nature is a major source of inspiration for scientists. ERC grantee Giulia Lanzara is one of them. The unique sensing and shaping abilities of birds, dolphins and other…
    Nature is a major source of inspiration for scientists. ERC grantee Giulia Lanzara is one of them. The unique sensing and…