Lithium (Li) is at the top of the electrochemical series due to its high electropositivity and low ionization energy, which allow it to easily lose its outermost electron. This results in a strong tendency to form positive ions (Li⁺), making it a powerful reducing agent. Additionally, lithium's small size and high charge density contribute to its strong reactivity, particularly in reactions with water and other compounds. These properties make lithium highly favorable in electrochemical applications, including batteries.
A student of A .L can give the answer of this question, simplified answer is the use of Electrochemical series must be kept in mind.
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The electrochemical series naturally are stronger reducing agents then hydrogen. They except electrons readily. Metals decrease from top to bottom, and contain positive levels of standard reduction
Electrochemical series-The position of a given metal in electrochemical series is fixed.there is no info. regarding position of alloys.it tells the relative displacement tendencies.Galvanic series-position may shift.alloys are included.predicts relative corrosion tendencies.
Electrochemical series-The position of a given metal in electrochemical series is fixed.there is no info. regarding position of alloys.it tells the relative displacement tendencies.Galvanic series-position may shift.alloys are included.predicts relative corrosion tendencies.
Carbon is not found in the electrochemical series because it is not easily oxidized or reduced in aqueous solutions. This means it does not readily participate in standard redox reactions like other metals. As a result, it is not commonly used as an electrode in electrochemical cells for comparison.
The electrochemical series, also known as the electromotive series, was not invented by a single individual. Instead, it is a compilation of data and observations made by various scientists over time to rank different metals and elements based on their tendency to undergo oxidation or reduction reactions. The concept of the electrochemical series is fundamental in understanding the reactivity of metals and predicting the outcomes of various electrochemical reactions.
By writing again and again
Battery
These are the cells which convert chemical energy into electerical energy
A battery is a combination of two or more electrochemical cells in series that store chemical energy which transforms into electrical energy.
It is so because every atom want to attract more electron toward itself & no atom wants to can release its electron. that's why electrochemical series is expressed in term of reduction potential.
A combination of two or more electrochemical cells in a series is called a battery. By connecting the cells together in series, the voltage of each cell is added together to create a higher total voltage output.
A base metal is any metal at the lower end of the electrochemical series which oxidizes readily.