Automotive Electronics focuses on the electronic systems used in modern vehicles to enhance performance, safety, efficiency, and comfort. These systems include engine control units, powertrain electronics, braking systems, infotainment, and advanced driver assistance systems. Automotive electronics integrate sensors, actuators, microcontrollers, and communication networks to monitor and control vehicle functions in real time. Physics principles such as electromagnetism, semiconductor physics, and signal processing underpin these technologies. Automotive electronics must operate reliably under harsh conditions, including temperature extremes and mechanical vibrations. The field is rapidly evolving with the rise of electric vehicles and autonomous driving. Automotive electronics play a central role in improving fuel efficiency, reducing emissions, and enabling intelligent mobility. This discipline bridges electronics, control systems, and applied physics to support next-generation transportation technologies.
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Vladimir Chigrinov, Hong Kong University of Science and Technology, Hong Kong
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Thomas J Webster, Brown University, United States
Title : How the Rad Lab helped avert nuclear war
Thomas F Ramos, Lawrence Livermore National Laboratory, United States
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Omar Mohammed Daud Shakarneh, Novosibirsk State University of Architecture and Civil Engineering, Russian Federation
Title : Global photochemical model CHARM-DE of the Earth’s atmosphere for altitudes 0-130 km
Alexei Krivolutsky, Central Aerological Observatory (CAO), Russian Federation
Title : Enhanced ferromagnetism in carbon dots polyaniline nanocomposite
Paulo Cesar De Morais, University of Brasilia, Brazil