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  • Engineers measure Big Bens bong

    Department of Engineering has, for the first time ever, vibration-mapped the famous London bell Big Ben in order to reveal why it produces its distinct harmonious tone.

  • Inclusive curriculum will ensure “HE is fit for the 21st century”, says Leicester academic

    An inclusive curriculum will create a Higher Education system that is “fit for the 21st century”, a leading academic at the University of Leicester has said.

  • Quarantine support available for international students heading to Leicester

    The University of Leicester has published clear guidance for international students traveling to the UK this autumn, offering no-cost accommodation to every student required to quarantine.

  • 2024 news

    Please see below for articles published in 2024. Environmental and genetic regulation of Streptococcus pneumoniae galactose catabolic pathways Banaz O. Kareem, Ozcan Gazioglu, Karina Mueller Brown, Medhanie Habtom, David G. Glanville, Marco R. Oggioni, Peter W. Andrew, Andrew T.

  • Masters Research Project

    Module code: MB7205 This module comprises a full-time, 4 month research project placement: 3 months of lab work and then 1 month for writing the dissertation and project presentation.

  • About

    The University of Leicester social epigenetics lab is researching DNA methylation in insect models to investigate how it affects bees' social biology and environmental response.

  • The Business world and retail

    Learn more about the collections about business and retail in the East Midlands Oral History Archive.

  • Goal 2: Zero Hunger

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

  • Industrial impact

    Haemostatix Ltd, a spin-out from the University of Leicester, was co-founded in 2003 by Sarah Middleton and Alison Goodall (Professor of Thrombosis and Haemostasis) to commercialise a new scientific approach to enhance blood clotting.

  • 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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