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WORKING PROCESS OF CELLS AND BATTERIES

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MAQOLA ANNOTATSIYASI

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Electric vehicles (EV)s have been in existence ever since the inception of the automobile. However, in the early race for dominance, the internal combustion engine (ICE) quickly. Overtook the EV as the prime propulsion power system for road vehicles. Although the electric powertrain was superior in terms of performance and energy conversion efficiency, the restrictive factor remained the source of electrical energy. Battery powered vehicles simply could not match the high-energy density, abundant supply and logistical attributes of petroleum based propulsion. Even with ICE energy conversion efficiency figures of below 20%, the energy density (Joules/kg) of petroleum far surpasses the energy density of any known battery technology. While economically recoverable petroleum deposits continue to diminish, the automobile population is ever increasing, causing cities to become congested with toxic hydrocarbons by-products. As a result, the ICE is increasingly becoming a target of environmental debates. The article analyzes difference between cells and batteries, what is cell and battery, consisting of battery pack, working process cells and batteries, charge and discharging processes of cells and batteries, connect cells and batteries in series and parallel, a number of principal components cells and batteries, primary and secondary cells and batteries.

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Teglar

# cell# battery# energy source# negative electrode# a positive electrode# the electrolyte# a separator

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