73 resultados para Mickey


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In a victory for corporate control of cultural heritage, the Supreme Court of the United States has rejected a constitutional challenge to the Sonny Bono Copyright Term Extension Act 1998 (US) by a majority of seven to two.

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El presente trabajo de investigación se estableció entre los meses de Marzo– Junio 2009, bajo sistema de riego por aspersión en la finca las Mercedes, ubicada en Managua km 11 carretera norte, 2 km entrada al Carnic en las coordenadas 12°10’14” a 12°08’05” de latitud Norte y 86°10’22” a 86°09’44” longitud Oeste, a una altura de 56 msnm. Con el objetivo de evaluar el cultivo de la sandía (Citrullus lanatus L) bajo tres tipos de fertilizantes orgánicos y un sintético, y obtención de los coeficientes del cultivo “Kc” y de rendimiento “Ky”. Se estableció un bloque completo al azar, con cuatro tratamientos y cuatro repeticiones. Los tratamientos orgánicos evaluados son: compost a razón de 25 595 kg ha-1 , bocashi 15 087 kg ha-1 y biofertilizante con aplicaciones de 20 000 lt ha-1 y un tratamiento sintético (testigo): fertilizante completo (NPK) formula 12-30-10, a razón de 350 kg ha-1 más urea 46% a razón de 219 kg ha-1 , todos los abonos orgánicos fueron elaborados como parte de la investigación haciendo uso de los distintos materiales que se tienen en la finca para su elaboración. Los resultados de campos se sometió a un análisis de varianza (ANDEVA) y separación de medias mediante el uso de la prueba de Diferencias Mínimas Significativas (LSD α=0.05). Utilizando el Software estadístico Infostat versión 2008. Con base a los datos obtenidos se puede afirmar, que no hubo diferencia significativa para las variables de crecimiento, tomadas en momentos diferentes, sin embargo para la variable de rendimiento y sus componentes se encontró diferencia significativas en número de frutos por planta (5.13), diámetro del fruto (15.90 cm), peso del fruto (5.96 lb) y rendimiento (70 020 kg ha-1 ) logrando obtener el mejor resultado cuando el cultivo se fertilizó con sintético, Con respecto a las variables de riego con un volumen de agua de 526.5 mm ha-1 en todo el ciclo del cultivo y tomando en cuenta las etapas fenológicas se le aplicó mayor volumen de agua en la etapa de floración y fructificación que es donde el cultivo requiere mayor cantidad de agua, logrando para todos los tratamientos un coeficiente de cultivo uniforme y curva de Kc siguió el mismo patrón de cualquier cultivo comercial, presentando una fase inicial, de desarrollo, de madurez y senescencia; En el caso de la reducción del coeficiente de rendimiento de la sandía en los tratamientos orgánicos no se debe a un estrés hídrico o limitación de agua durante los periodos de floración y fructificación que son los períodos más sensibles a la sequía, mas bien corresponde al factor de fertilidad ya que el abono orgánico no va dirigido a liberar grandes cantidades de nutrientes para el cultivo de una sola vez.

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El objetivo de esta serie es desarrollar en los niños las habilidades para la lectura y la comprensión de textos, a lo largo de doce niveles y mediante la narración de una historia distinta en cada uno de los libros que la componen. Se refuerza el vocabulario relacionado con el contenido de la historia y se acompaña de distintas actividades. En ésta, se cuentan las aventuras del mono Mickey Monkey en un supermercado, y se incluye en el nivel cinco.

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El artículo forma parte de un monográfico dedicado a la composición en el aula de música

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(from 1948 U.S. Olympic Team Swimming Team Trial program]

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Dissertação de Mestrado apresentada no Instituto Superior de Psicologia Aplicada, para obtenção do grau de Mestre na especialidade de Psicologia Clínica

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Fondo Margaritainés Restrepo

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Stream ciphers are encryption algorithms used for ensuring the privacy of digital telecommunications. They have been widely used for encrypting military communications, satellite communications, pay TV encryption and for voice encryption of both fixed lined and wireless networks. The current multi year European project eSTREAM, which aims to select stream ciphers suitable for widespread adoptation, reflects the importance of this area of research. Stream ciphers consist of a keystream generator and an output function. Keystream generators produce a sequence that appears to be random, which is combined with the plaintext message using the output function. Most commonly, the output function is binary addition modulo two. Cryptanalysis of these ciphers focuses largely on analysis of the keystream generators and of relationships between the generator and the keystream it produces. Linear feedback shift registers are widely used components in building keystream generators, as the sequences they produce are well understood. Many types of attack have been proposed for breaking various LFSR based stream ciphers. A recent attack type is known as an algebraic attack. Algebraic attacks transform the problem of recovering the key into a problem of solving multivariate system of equations, which eventually recover the internal state bits or the key bits. This type of attack has been shown to be effective on a number of regularly clocked LFSR based stream ciphers. In this thesis, algebraic attacks are extended to a number of well known stream ciphers where at least one LFSR in the system is irregularly clocked. Applying algebriac attacks to these ciphers has only been discussed previously in the open literature for LILI-128. In this thesis, algebraic attacks are first applied to keystream generators using stop-and go clocking. Four ciphers belonging to this group are investigated: the Beth-Piper stop-and-go generator, the alternating step generator, the Gollmann cascade generator and the eSTREAM candidate: the Pomaranch cipher. It is shown that algebraic attacks are very effective on the first three of these ciphers. Although no effective algebraic attack was found for Pomaranch, the algebraic analysis lead to some interesting findings including weaknesses that may be exploited in future attacks. Algebraic attacks are then applied to keystream generators using (p; q) clocking. Two well known examples of such ciphers, the step1/step2 generator and the self decimated generator are investigated. Algebraic attacks are shown to be very powerful attack in recovering the internal state of these generators. A more complex clocking mechanism than either stop-and-go or the (p; q) clocking keystream generators is known as mutual clock control. In mutual clock control generators, the LFSRs control the clocking of each other. Four well known stream ciphers belonging to this group are investigated with respect to algebraic attacks: the Bilateral-stop-and-go generator, A5/1 stream cipher, Alpha 1 stream cipher, and the more recent eSTREAM proposal, the MICKEY stream ciphers. Some theoretical results with regards to the complexity of algebraic attacks on these ciphers are presented. The algebraic analysis of these ciphers showed that generally, it is hard to generate the system of equations required for an algebraic attack on these ciphers. As the algebraic attack could not be applied directly on these ciphers, a different approach was used, namely guessing some bits of the internal state, in order to reduce the degree of the equations. Finally, an algebraic attack on Alpha 1 that requires only 128 bits of keystream to recover the 128 internal state bits is presented. An essential process associated with stream cipher proposals is key initialization. Many recently proposed stream ciphers use an algorithm to initialize the large internal state with a smaller key and possibly publicly known initialization vectors. The effect of key initialization on the performance of algebraic attacks is also investigated in this thesis. The relationships between the two have not been investigated before in the open literature. The investigation is conducted on Trivium and Grain-128, two eSTREAM ciphers. It is shown that the key initialization process has an effect on the success of algebraic attacks, unlike other conventional attacks. In particular, the key initialization process allows an attacker to firstly generate a small number of equations of low degree and then perform an algebraic attack using multiple keystreams. The effect of the number of iterations performed during key initialization is investigated. It is shown that both the number of iterations and the maximum number of initialization vectors to be used with one key should be carefully chosen. Some experimental results on Trivium and Grain-128 are then presented. Finally, the security with respect to algebraic attacks of the well known LILI family of stream ciphers, including the unbroken LILI-II, is investigated. These are irregularly clock- controlled nonlinear filtered generators. While the structure is defined for the LILI family, a particular paramater choice defines a specific instance. Two well known such instances are LILI-128 and LILI-II. The security of these and other instances is investigated to identify which instances are vulnerable to algebraic attacks. The feasibility of recovering the key bits using algebraic attacks is then investigated for both LILI- 128 and LILI-II. Algebraic attacks which recover the internal state with less effort than exhaustive key search are possible for LILI-128 but not for LILI-II. Given the internal state at some point in time, the feasibility of recovering the key bits is also investigated, showing that the parameters used in the key initialization process, if poorly chosen, can lead to a key recovery using algebraic attacks.

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Well-designed initialisation and keystream generation processes for stream ciphers should ensure that each key-IV pair generates a distinct keystream. In this paper, we analyse some ciphers where this does not happen due to state convergence occurring either during initialisation, keystream generation or both. We show how state convergence occurs in each case and identify two mechanisms which can cause state convergence.

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This review examines the multiple levels of pre-existing immunity in the upper and lower female reproductive tract. In addition, we highlight the need for further research of innate and adaptive immune protection of mucosal surfaces in the female reproductive tract. Innate mechanisms include the mucus lining, a tight epithelial barrier and the secretion of antimicrobial peptides and cytokines by epithelial and innate immune cells. Stimulation of the innate immune system also serves to bridge the adaptive arm resulting in the generation of pathogen-specific humoral and cell-mediated immunity. Less understood are the multiple components that act in a coordinated way to provide a network of ongoing protection. Innate and adaptive immunity in the human female reproductive tract are influenced by the stage of menstrual cycle and are directly regulated by the sex steroid hormones, progesterone and estradiol. Furthermore, the effect of hormones on immunity is mediated both directly on immune and epithelial cells and indirectly by stimulating growth factor secretion from stromal cells. The goal of this review is to focus on the diverse aspects of the innate and adaptive immune systems that contribute to a unique network of protection throughout the female reproductive tract.