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  • Black holes could grow as large as 50 billion suns research shows

    Black holes at the heart of galaxies could swell to 50 billion times the mass of the sun before losing the discs of gas they rely on to sustain themselves, according to research by Professor Andrew King from the Department of Physics and Astronomy.

  • Food and drink outlets

    Browse the food outlets available on Leicester campus. Including central campus, Brookfield, Freemen's and Space Park Leicester.

  • GNSS Probe

    GNSSProbe is a new ESA funded study which looks at the potential of satellite navigation signals, to estimate soil water content and to provide a cheap alternative to existing techniques.

  • Fiendish Friday Quiz #5: Answers

    Answers to a fifth Evelyn Waugh quiz, taken From the Evelyn Waugh Newsletter Vol. 24 No. 2

  • Developmental genetics for schools and colleges

    Details on developmental genetics for students in schools or colleges, provided by The University of Leicester.

  • Management of airway disease

    Specialists Bankart Beardsmore Bradding Brightling Coats Gaillard Green Morgan Pandya Siddiqui Singh Steiner Thompson Wardlaw We are fully committed to a translational approach to our research and are keen to take our...

  • Facilities

    Geography at the University of Leicester has state-of-the-art facilities, providing a world class environment for student learning. Find out more about our laboratories, our 3D stereo virtual reality theatre, our study centre, equipment and more.

  • Calculations reveal Santa travels at 0.5% the speed of light

    Calculations reveal how quickly Santa travels Santa and reindeer|University of Leicester students have worked out just how fast Santa Claus has to travel to deliver all of his presents on time On Christmas Eve night, Santa Claus and his reindeer fly around the world...

  • Goal 2: Zero Hunger

    The second Sustainable Development Goal is to end hunger, achieve food security and improved nutrition and promote sustainable agriculture.

  • Discovery of a new gene enables the diagnosis for patients with rare lung disease

    As part of a large international research collaboration, scientists at the University of Leicester have helped identify a new candidate gene involved in the development of primary ciliary dyskinesia (PCD).

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