Eleanor Hall - Profile and Journalist Details
Find journalists that align with your industry, location and vision. Unlock Eleanor Hall's full journalist profile, including location, coverage topics, current employer, biography and preferences. Sign up today and start building journalist relationships that fuel your startup's growth.
Get connected with journalists todayEleanor Hall
Verified
Journalist, ABC News (Australia)
Sydney
Beats
Biography
Eleanor Hall is the voice of ABC Radio at lunchtime. She hosts the ABC's daily newshour, The World Today, which delivers national and international news and analysis to radio and online audiences nationally and throughout the region. With two decades of reporting experience and with degrees from the US, Australia and a term studying at Oxford University, Eleanor is a truly international journalist who has reported with intelligence and compassion from all corners of the globe. She has hosted The World Today since 2001.
travel relationships personal storieswellness
Britain's favourite curries.
Content
By Eleanor Hall Verified| North West End UK@ This was a tender play about family dynamics which takes its title from a speech in the second act that praises the family unit as a ‘dear octopus from whose tentacles we never quite escape’. On the eve of World War Two, we bear witness to the reunion of the Randolph family, which forces them and their servants to confront the elements of romance, hatred, jealousy and shame that underscore their interactions.
By Eleanor Hall Verified| North West End UK@ Alexis Gregory’s one-man show did exactly what it said on the tin: it facilitated a co-imagining of future in which queerness is ubiquitous. Gregory’s ironic repetition of right-wing frenzied slogans (‘it’s woke gone mad!’) to open the show provided us with an effective comic introduction.
By Eleanor Hall Verified, Robert McGehee, Hitoshi Murayama, Thomas Konstandin| Physical Review B@ Abstract We introduce a model for matter genesis in which both the baryonic and dark matter asymmetries originate from a first-order phase transition in a dark sector with an SU(3)×SU(2)×U(1) gauge group and minimal matter content. In the simplest scenario, we predict that dark matter is a dark antineutron with mass of either mn¯=1.36GeV or mn¯=1.63GeV. Alternatively, dark matter may be comprised of equal numbers of dark antiprotons and pions.
Company Info
ABC News (Australia)
Kauhava, South Ostrobothnia, Finland