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Boca recibirá a Fortaleza de Brasil este miércoles desde las 21 en La Bombonera, por la quinta fecha en el Grupo D de la Copa Sudamericana, en lo que será una "final" por el liderato que será dirigido por el árbitro venezolano Jesús Valenzuela. El Xeneize viene de caer 1-0 con Atlético Tucumán en el Monumental José Fierro y arrancó con el pie izquierdo en la Liga Profesional. Sin embargo, el equipo de Diego Martínez tiene la chance de revertir la pálida imagen que mostró ante el conjunto brasileño, primero en el grupo con nueve puntos, y buscar un triunfo para alcanzar las 10 unidades y llegar a la cima a falta de una jornada. El cuadro azul y oro buscará terminar primero en el Grupo D para pasar directamente a los octavos de final del certamen continental y evitar el segundo puesto que te lleva a disputar los 16avos frente a un tercero en los grupos de la Copa Libertadores. En tanto, en relación al once que cayó en el norte del país, Cristian Lema reaparecerá en la zaga por Lautaro Di Lollo, Pol Fernández estará en el mediocampo en lugar de Milton Delgado y el uruguayo Edinson Cavani será titular y saldrá Luca Langoni. Además, el colombiano Frank Fabra saldrá y esperarán hasta último momento para ver si llega en condiciones Kevin Zenon, quien arrastra una molestica muscular, y sino jugará Jabes Saralegui. Por su parte, el conjunto dirigido por Juan Pablo Vojvoda viene de empatar 1-1 con Botafogo en el Brasileirao y, tras la dura derrota por 4-1 con Nacional de Potosí en la altura de Bolivia, intentará conseguir un triunfo que le asegure ser líder del Grupo D por encima del cuadro azul y oro. El técnico argentino no podrá contar con Renato Kayzer, quien deberá purgar la segunda fecha de suspensión por la roja que sufrió justamente ante Boca en la tercera jornada. La probable formación de Boca vs. Fortaleza, por la Copa Sudamericana Sergio Romero; Luis Advíncula, Cristian Lema, Nicolás Figal, Lautaro Blanco; Cristian Medina, Pol Fernández, Equi Fernández, Kevin Zenón; Miguel Merentiel y Edinson Cavani. El posible once de Fortaleza vs. Boca, por la Copa Sudamericana João Ricardo; Emanuel Brítez, Bejamín Kuscevic, Titi o Tomás Cardona; Yago Pikachu, José Welison, Hercules, Tomás Pochettino, Bruno Pacheco; Imanol Machuca y Juan Martín Lucero. Los datos de Boca vs. Fortaleza, por la Copa Sudamericana Hora: 21 Estadio: La Bombonera Árbitro: Jesús Valenzuela.
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The Novikov self-consistency principle, also known as the Novikov self-consistency conjecture and Larry Niven's law of conservation of history, is a principle developed by Russian physicist Igor Dmitriyevich Novikov in the mid-1980s. Novikov intended it to solve the problem of paradoxes in time travel, which is theoretically permitted in certain solutions of general relativity that contain what are known as closed timelike curves.
In mathematics, a presentation is one method of specifying a group. A presentation of a group G comprises a set S of generators—so that every element of the group can be written as a product of powers of some of these generators—and a set R of relations among those generators.
This page concerns mathematician Sergei Novikov's topology conjecture. For astrophysicist Igor Novikov's conjecture regarding time travel, see Novikov self-consistency principle.The Novikov conjecture is one of the most important unsolved problems in topology.
Novikov, Novikoff or Novikova (feminine) is one of the most common Russian surnames. Derived from novik - a teenager on military service who comes from a noble, boyar or cossack family in Russia of 16th-18th centuries.
In mathematics, given an additive subgroup Γ ⊂ R {\displaystyle \Gamma \subset \mathbb {R} } , the Novikov ring Nov {\displaystyle \operatorname {Nov} (\Gamma )} of Γ {\displaystyle \Gamma } is the subring of Z [ [ Γ ] ] {\displaystyle \mathbb {Z} [\![\Gamma ]\!]} consisting of formal sums ∑ n γ i t γ i {\displaystyle \sum n_{\gamma _{i}}t^{\gamma _{i}}} such that γ 1 > γ 2 > ⋯ {\displaystyle \gamma _{1}>\gamma _{2}>\cdots } and γ i → − ∞ {\displaystyle \gamma _{i}\to -\infty } . The notion was introduced by S. P. Novikov in the papers that initiated the generalization of Morse theory using a closed one-form instead of a function.
In probability theory, Novikov's condition is the sufficient condition for a stochastic process which takes the form of the Radon–Nikodym derivative in Girsanov's theorem to be a martingale. If satisfied together with other conditions, Girsanov's theorem may be applied to a Brownian motion stochastic process to change from the original measure to the new measure defined by the Radon–Nikodym derivative.
In mathematics, Novikov's compact leaf theorem, named after Sergei Novikov, states that A codimension-one foliation of a compact 3-manifold whose universal covering space is not contractible must have a compact leaf.
In mathematics, the Novikov–Veselov equation is a natural (2+1)-dimensional analogue of the Korteweg–de Vries (KdV) equation. Unlike another (2+1)-dimensional analogue of KdV, the Kadomtsev–Petviashvili equation, it is integrable via the inverse scattering transform for the 2-dimensional stationary Schrödinger equation.
In mathematics, a Novikov–Shubin invariant. introduced by Sergei Novikov and Mikhail Shubin , is an invariant of a compact Riemannian manifold related to the spectrum of the Laplace operator acting on square-integrable differential forms on its universal cover.
Novikovo is a rural locality (a selo) in Starooskolsky District, Belgorod Oblast, Russia. The population was 51 as of 2010.
Gerard I , called Guinard, was the count of Roussillon from 1102 to his murder in 1113. He was the son and heir of Giselbert II. He participated in the First Crusade, possibly in the retinue of Raymond IV of Toulouse, although the database of Riley-Smth, et al, is uncertain of his affiliation.
Guinardó | Hospital de Sant Pau is a station of the Barcelona Metro, on L4, serving Ronda del Guinardó and Plaça del Guinardó. It opened in 1974.
El Guinardó is a neighborhood in the Horta-Guinardó district of Barcelona .