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The felicific calculus is an algorithm formulated by utilitarian philosopher Jeremy Bentham (1748–1832) for calculating the degree or amount of pleasure that a specific action is likely to induce. Bentham, an ethical hedonist , believed the moral rightness or wrongness of an action to be a function of the amount of pleasure or pain that it ...
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The Introduction also contains Bentham's famous discussion of the "felicific (or hedonic) calculus"—his proposed method for determining which future course of action would produce the greatest net amount of pleasure over pain. According to Bentham, seven factors should be considered in weighing the value of a pleasure or pain: its intensity ...
In his exposition of the felicific calculus, Bentham proposed a classification of 12 pains and 14 pleasures, by which we might test the "happiness factor" of any action. [88] For Bentham, according to P. J. Kelly, the law "provides the basic framework of social interaction by delimiting spheres of personal inviolability within which individuals ...
Functions that maximize or minimize functionals may be found using the Euler–Lagrange equation of the calculus of variations. A simple example of such a problem is to find the curve of shortest length connecting two points. If there are no constraints, the solution is a straight line between the points. However, if the curve is constrained to ...
The idea of a rational agent is important to the philosophy of utilitarianism, as detailed by philosopher Jeremy Bentham's theory of the felicific calculus, also known as the hedonistic calculus. The action a rational agent takes depends on: the preferences of the agent; the agent's information of its environment, which may come from past ...
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In mathematics, specifically in the calculus of variations, a variation δf of a function f can be concentrated on an arbitrarily small interval, but not a single point. . Accordingly, the necessary condition of extremum (functional derivative equal zero) appears in a weak formulation (variational form) integrated with an arbitrary function
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