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Thermal runaway is not possible in FET because of?
The excess heat produced at the collector base junction may even burn and destroy the transistor.This situation is called thermal runaway.
Thermal runaway is a condition in which an increase in temperature causes a reaction to accelerate, leading to further temperature rises and potentially catastrophic failures, commonly seen in batteries and chemical processes. To eliminate thermal runaway, methods include improving thermal management through better heat dissipation, using materials with higher thermal stability, implementing robust safety mechanisms like thermal fuses or circuit breakers, and incorporating advanced monitoring systems to detect early signs of overheating. Additionally, using battery management systems (BMS) can help regulate charging and discharging processes to prevent overheating.
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Industry controls the risks of thermal runaway reactions through rigorous process design, understanding of reaction kinetics, automatic temperature control systems, emergency relief systems, use of specialized equipment and materials, and thorough training of personnel in safety protocols. Monitoring of key process parameters, such as temperature, pressure, and flow rates is crucial to detect potential issues early and prevent thermal runaway reactions from occurring.
because they are.
very safely
caz they have a positive temperature coefficient
death or bad injuries
Photochemical reaction: a chemical reaction induced by electromagnetic radiations: ul- traviolet, visible, etc.) Thermal reaction: a chemical reaction induced by increasing the temperature (ex.: thermal dissociation, etc.)
mobility decreases
Industry controls the risks of thermal runaway reactions by implementing process safety measures such as temperature monitoring, pressure relief systems, and automatic shutdown mechanisms. Additionally, conducting thorough risk assessments, providing proper training to employees, and utilizing appropriate safety equipment are crucial in mitigating the risks associated with thermal runaway reactions.