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  2. Negative energy - Wikipedia

    en.wikipedia.org/wiki/Negative_energy

    The negative-energy particle then crosses the event horizon into the black hole, with the law of conservation of energy requiring that an equal amount of positive energy should escape. In the Penrose process , a body divides in two, with one half gaining negative energy and falling in, while the other half gains an equal amount of positive ...

  3. Energy homeostasis - Wikipedia

    en.wikipedia.org/wiki/Energy_homeostasis

    A negative balance or caloric deficit is a result of energy intake being less than what is consumed in external work and other bodily means of energy expenditure. The main cause is undereating due to a medical condition such as decreased appetite , anorexia nervosa , digestive disease , or due to some circumstance such as fasting or lack of ...

  4. Homeostasis - Wikipedia

    en.wikipedia.org/wiki/Homeostasis

    4.17 Energy balance. 5 Clinical ... Longer term regulation occurs through calcium absorption or loss from the gut. ... vast numbers of positive and negative feedback ...

  5. Nitrogen balance - Wikipedia

    en.wikipedia.org/wiki/Nitrogen_balance

    Negative nitrogen balance is associated with burns, serious tissue injuries, fever, hyperthyroidism, wasting diseases, and periods of fasting. A negative nitrogen balance can be used as part of a clinical evaluation of malnutrition. [3] Nitrogen balance is a method traditionally used to measure dietary protein requirements. [4]

  6. Radiative forcing - Wikipedia

    en.wikipedia.org/wiki/Radiative_forcing

    This balance is also called Earth's energy balance. Changes to this balance occur due to factors such as the intensity of solar energy, reflectivity of clouds or gases, absorption by various greenhouse gases or surfaces and heat emission by various materials. Any such alteration is a radiative forcing, which along with its climate feedbacks ...

  7. Exergonic reaction - Wikipedia

    en.wikipedia.org/wiki/Exergonic_reaction

    The change of Gibbs free energy (ΔG) in an exergonic reaction (that takes place at constant pressure and temperature) is negative because energy is lost (2). In chemical thermodynamics, an exergonic reaction is a chemical reaction where the change in the free energy is negative (there is a net release of free energy). [1]

  8. Thermodynamic system - Wikipedia

    en.wikipedia.org/wiki/Thermodynamic_system

    The sum of the last terms in the equations presents the total energy coming into the system with the stream of particles of substances that can be positive or negative; the quantity is chemical potential of substance .The middle terms in equations (2) and (3) depict energy dissipation (entropy production) due to the relaxation of internal ...

  9. Exothermic reaction - Wikipedia

    en.wikipedia.org/wiki/Exothermic_reaction

    An energy profile of an exothermic reaction. In an exothermic reaction, by definition, the enthalpy change has a negative value: ΔH = H products - H reactants < 0. where a larger value (the higher energy of the reactants) is subtracted from a smaller value (the lower energy of the products). For example, when hydrogen burns: 2H 2 (g) + O 2 (g ...