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  1. This time last year LJMU student and now graduate Nathan Bickerton, went viral

    He was offered a job just fifteen minutes after creating a Wikipedia page and tweeting The Diary of a CEO host and BBC Dragon, Steven Bartlett. Here he tells us about the whirlwind of a year he's had, what his LJMU undergraduate and postgraduate degrees taught him, and his own tips for how to stand out from the crowd in the job market.

  2. LJMU PE, School Sport and Physical Activity Network Event

    This face-to-face event is for primary and secondary teachers, Sport/PE students, trainee teachers and sports coaches working in schools. The event will: Disseminate the research activity and projects across LJMU PESSPA network Reflect upon the findings and recommendations of the Ofsted subject PE report series (Sept 2023) Celebrate collaborative activities/events.

  3. Equality, diversity and inclusion in journalism teaching conference

    The journalism department is holding a free one-day conference on EDI in Journalism education on June 26th. Although the conference is geared towards Journalism education, the conference is open to educators from other subject areas who will be welcome to share their research and best practice as well as benefit from transferable, practical ideas around embedding EDI in teaching, learning and assessment and creating an inclusive environment for students.

  4. ARI Seminar: Nikhil Sarin (Stockholm University)

    A neutron star binary merges somewhere in the Universe approximately every 10 to 1000 seconds, creating violent explosions potentially observable in gravitational waves and across the electromagnetic spectrum. The transformative coincident gravitational wave and electromagnetic observations of the binary neutron star merger GW170817 gave invaluable insights into these cataclysmic collisions and fundamental astrophysics. However, despite our high expectations, we have failed to see any other event like it. In this talk, I will highlight what we can learn from other observations of mergers seen directly in gravitational waves or indirectly as a gamma-ray burst and/or kilonova. I will also discuss the diversity in electromagnetic and gravitational-wave emission we can expect for future mergers and showcase tools to help maximally extract physics from existing and future observations.