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Joint Communiqué on EU-Tunisia relations: For a renewed partnership

Johnson & Johnson Joins World Health Organization in Efforts to Prevent Spread of Ebola in West Africa

Johnson & Johnson Joins World Health Organization in Efforts to Prevent Spread of Ebola in West Africa News provided by Share this article Up to 200,000 Johnson & Johnson Ebola vaccine regimens will be made available as part of a WHO early access clinical program now underway in Sierra Leone Company s Ebola vaccine regimen also receives Prequalification from the WHO The Johnson & Johnson vaccine regimen is designed to be used proactively to induce immunity against Ebola in adults and children NEW BRUNSWICK, N.J., May 13, 2021 /PRNewswire/ Johnson & Johnson (NYSE: JNJ) (the Company) today announced the World Health Organization (WHO) and the government of Sierra Leone have begun administering the Company s Ebola vaccine regimen as part of a WHO early access clinical program aimed at preventing further spread of Ebola in West Africa. The vaccine regimen, developed by the Janssen Pharmaceutical Companies of Johnson & Johnson (Janssen) in collaboration with Bavarian Nordic A/S,

Controlled Magneto-Mechanical Processes may Lead to New Generation of Artificial Muscles

Controlled Magneto-Mechanical Processes may Lead to New Generation of Artificial Muscles Written by AZoMMay 7 2021 The overarching idea of this research project is to influence different biological processes at the cellular level (i.e., wound healing, brain synapses or nervous system responses) by developing timely engineering applications , explains 4D-BIOMAP s lead researcher, Daniel García González from the UC3M s Department of Continuum Mechanics and Structural Analysis. The so-called magneto-active polymers are revolutionising the fields of solid mechanics and materials science. These composites consist of a polymeric matrix (i.e., an elastomer) that contains magnetic particles (i.e., iron) that react mechanically by changing their shape and volume.

Perovskite Solar Modules: High Efficiency on a Large Surface Area

Karlsruhe Institute of Technology An innovative combination of processes enables the interconnection of cells to form modules with nearly no losses. (Photo: Amadeus Bramsiepe, KIT) From cell to module without loss of efficiency: This is one of the main challenges of perovskite photovoltaics. Researchers at Karlsruhe Institute of Technology (KIT) have now managed to produce perovskite solar modules with minimum scaling loss. For this purpose, they combined laser-based series interconnections with vacuum processing of all layers of the solar cell. They achieved an 18 percent efficiency on an area of four square centimeters – a world record for vacuum-processed perovskite solar modules.

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