James Prescott Joule in the context of "Manchester Town Hall"

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⭐ Core Definition: James Prescott Joule

James Prescott Joule (/l/; 24 December 1818 – 11 October 1889) was an English physicist. Joule studied the nature of heat and discovered its relationship to mechanical work. This led to the law of conservation of energy, which in turn led to the development of the first law of thermodynamics. The SI unit of energy, the joule (J), is named after him.

He worked with Lord Kelvin to develop an absolute thermodynamic temperature scale, which came to be called the Kelvin scale. Joule also made observations of magnetostriction, and he found the relationship between the current through a resistor and the heat dissipated, which is also called Joule's first law. His experiments about energy transformations were first published in 1843.

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👉 James Prescott Joule in the context of Manchester Town Hall

Manchester Town Hall is a Victorian, neo-Gothic municipal building in Manchester, England. It is the ceremonial headquarters of Manchester City Council and houses a number of local government departments. The building faces Albert Square to the north and St Peter's Square to the south, with Manchester Cenotaph facing its southern entrance.

Designed by architect Alfred Waterhouse, the town hall was completed in 1877. The building contains offices and grand ceremonial rooms such as the Great Hall which is decorated with Ford Madox Brown's imposing Manchester Murals illustrating the history of the city. The entrance and Sculpture Hall contain busts and statues of influential figures including Dalton, Joule and Barbirolli. The exterior is dominated by the clock tower which rises to 280 feet (85 m) and houses Great Abel, the clock bell.

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James Prescott Joule in the context of Joule

The joule (/l/ JOOL, or /l/ JOWL; symbol: J) is the unit of energy in the International System of Units (SI). In terms of SI base units, one joule corresponds to one kilogram-metre squared per second squared (1 J = 1 kg⋅m⋅s). One joule is equal to the amount of work done when a force of one newton displaces a body through a distance of one metre in the direction of that force. It is also the energy dissipated as heat when an electric current of one ampere passes through a resistance of one ohm for one second. It is named after the English physicist James Prescott Joule (1818–1889).

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James Prescott Joule in the context of Mechanical energy

In physical sciences, mechanical energy is the sum of macroscopic potential and kinetic energies. The principle of conservation of mechanical energy states that if an isolated system or a closed system is subject only to conservative forces, then the mechanical energy is constant. If an object moves in the opposite direction of a conservative net force, the potential energy will increase; and if the speed (not the velocity) of the object changes, the kinetic energy of the object also changes. In all real systems, however, nonconservative forces, such as frictional forces, will be present, but if they are of negligible magnitude, the mechanical energy changes little and its conservation is a useful approximation. In elastic collisions, the kinetic energy is conserved, but in inelastic collisions some mechanical energy may be converted into thermal energy. The equivalence between lost mechanical energy and an increase in temperature was discovered by James Prescott Joule.

Many devices are used to convert mechanical energy to or from other forms of energy, e.g. an electric motor converts electrical energy to mechanical energy, an electric generator converts mechanical energy into electrical energy and a heat engine converts heat to mechanical energy.

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James Prescott Joule in the context of Units of energy

Energy is defined via work, so the SI unit of energy is the same as the unit of work – the joule (J), named in honour of James Prescott Joule and his experiments on the mechanical equivalent of heat. In slightly more fundamental terms, 1 joule is equal to 1 newton metre and, in terms of SI base units

An energy unit that is used in atomic physics, particle physics, and high energy physics is the electronvolt (eV). One eV is equivalent to 1.602176634×10 J.

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