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  1. 25 de abr. de 2024 · El Niño, in oceanography and climatology, the anomalous appearance, every few years, of unusually warm ocean conditions along the tropical west coast of South America. This event is associated with adverse effects on fishing, agriculture, and local weather from Ecuador to Chile and with far-field.

  2. 2 de may. de 2024 · Phenomenology, a philosophical movement originating in the 20th century, the primary objective of which is the direct investigation and description of phenomena as consciously experienced, without theories about their causal explanation and as free as possible from unexamined preconceptions and.

  3. en.wikipedia.org › wiki › Chaos_theoryChaos theory - Wikipedia

    Hace 1 día · Chaos theory is an interdisciplinary area of scientific study and branch of mathematics. It focuses on underlying patterns and deterministic laws of dynamical systems that are highly sensitive to initial conditions. These were once thought to have completely random states of disorder and irregularities. [1]

  4. 24 de abr. de 2024 · scientific hypothesis, an idea that proposes a tentative explanation about a phenomenon or a narrow set of phenomena observed in the natural world.

  5. 24 de abr. de 2024 · El Niño and La Niña are two weather phenomena that often confuse people. They are not exclusive to one another and can occur together or independently. What’s the difference between El Niño and La Niña? And what effects do they have on our climate? This blog post will answer those questions and more. Contents. What is El niño and La niña?

  6. en.wikipedia.org › wiki › PhotonPhoton - Wikipedia

    Hace 1 día · Photons are massless particles that always move at the speed of light when in vacuum. The photon belongs to the class of boson particles. As with other elementary particles, photons are best explained by quantum mechanics and exhibit wave–particle duality, their behavior featuring properties of both waves and particles. [2] .

  7. 19 de abr. de 2024 · 19 April 2024. Abstract. Non-Hermitian systems can exhibit unique quantum phases without any Hermitian counterparts. For example, latest theoretical studies predict a new surprising phenomenon that bulk bands can localize and dissipate prominently at the system boundary, which is dubbed the non-Hermitian edge burst effect.

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