885 research outputs found

    Late pleistocene ignimbrites at Los Azufres volcanic center, Mexico : implications for the present magmatic cycle

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    Depuis le PlĂ©istocĂšne infĂ©rieur, le complexe volcanique de Los Azufres alterne l'Ă©mission de magmas diffĂ©renciĂ©s - rhyolites et dacites - et basiques. Compte tenu de cette longue histoire, du caractĂšre "cyclique" des phases magmatiques, et de l'Ăąge rĂ©cent (26 000 Ă  38 000 ans) des derniĂšres ignimbrites, on peut penser que l'activitĂ© Ă©ruptive, liĂ©e Ă  un (ou plusieurs) volumineux rĂ©servoir(s) de magma diffĂ©renciĂ© Ă  faible profondeur, n'est pas terminĂ©e, en particulier au sud du complexe, oĂč se situe le champ gĂ©othermique et oĂč vivent plus de 200 000 personnes. (RĂ©sumĂ© d'auteur

    Structure-property relations in Sodium-Bismuth Titanate related materials

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    Involvement of ethylene signalling in a non-climacteric fruit: new elements regarding the regulation of ADH expression in grapevine

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    Although grape berries have been classified as non climacteric fruits, ongoing studies on grape ethylene signalling lead to challenge the role of ethylene in their ripening. One of the significant molecular changes in berries is the up regulation of ADH (alcohol dehydrogenase, EC. 1.1.1.1) enzyme activity at the inception of fruit ripening and of VvADH2 transcript levels. This paper shows that the ethylene signal transduction pathway could be involved in the control of VvADH2 expression in grapevine berries and in cell suspensions. The induction of VvADH2 transcription, either in berries at the inception of ripening or in cell suspensions, was found to be partly inhibited by 1 methylcyclopropene (1 MCP), an inhibitor of ethylene receptors. Treatment of cell suspensions with 2 chloroethylphosphonic acid (2-CEPA), an ethylene releasing compound, also resulted in a significant increase of ADH activity and VvADH2 transcription under anaerobiosis, showing that concomitant ethylene and anaerobic treatments in cell suspensions could result in changes of VvADH2 expression. All these results, associated with the presence in the VvADH2 promoter of regulatory elements for ethylene and anaerobic response, suggest that ethylene transduction pathway and anaerobic stress could be in part involved in the regulation of VvADH2 expression in ripening berries and cell suspensions. These data open new aspects of the expression control of a ripening-related gene in a non climacteric fruit

    Synthesis and characterization of a pyrochlore solid solution in the Na2O‐Bi2O3‐TiO2 system

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    The compositional limits of a previously reported (J. Am. Ceram. Soc., 61, 5‐8. (1978)) but relatively unstudied sodium‐bismuth titanate pyrochlore solid solution are revised and their electrical properties presented. The pyrochlore solid solution we report forms via a different mechanism to that originally reported and occurs in a different location within the Na2O‐Bi2O3‐TiO2 ternary system. In both cases, relatively large amounts of vacancies are required on the A‐sites and on the oxygen sites, similar to that reported for undoped ‘Bi2Ti2O7’ pyrochlore. In contrast to ‘Bi2Ti2O7’, this ternary pyrochlore solid solution can be prepared and ceramics sintered using conventional solid‐state methods; however, the processing requires several challenges to be overcome to obtain dense ceramics. This cubic pyrochlore series has low electrical conductivity (and does not exhibit any evidence of oxide‐ion conduction) and exhibits relaxor ferroelectric behavior with a broad permittivity maximum of ~100 near room temperature. Variable temperature neutron diffraction data do not provide any conclusive evidence for a phase transition in the pyrochlore solid solution between ~4 and 873 K

    L-Py, an open L-systems framework in Python

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    International audienceL-systems were conceived as a mathematical framework for modeling growth of plants. In this paper, we present L-Py, a simulation software that mixes L-systems construction with the Python high-level modeling language. In addition to this software module, an integrated visual development environment has been developed that facilitates the creation of plant models. In particular, easy to use optimization tools have been integrated. Thanks to Python and its modular approach, this framework makes it possible to integrate a variety of tools defined in different modeling context, in particular tools from the OpenAlea platform. Additionally, it can be integrated as a simple growth simulation module into more complex computational pipelines

    Temporal development and collapse of an Arctic plant-pollinator network

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    <p>Abstract</p> <p>Background</p> <p>The temporal dynamics and formation of plant-pollinator networks are difficult to study as it requires detailed observations of how the networks change over time. Understanding the temporal dynamics might provide insight into sustainability and robustness of the networks and how they react to environmental changes, such as global warming. Here we study an Arctic plant-pollinator network in two consecutive years using a simple mathematical model and describe the temporal dynamics (daily assembly and disassembly of links) by random mechanisms.</p> <p>Results</p> <p>We develop a mathematical model with parameters governed by the probabilities for entering, leaving and making connections in the network and demonstrate that A. The dynamics is described by very similar parameters in both years despite a strong turnover in the composition of the pollinator community and different climate conditions, B. There is a drastic change in the temporal behaviour a few days before the end of the season in both years. This change leads to the collapse of the network and does not correlate with weather parameters, C. We estimate that the number of available pollinator species is about 80 species of which 75-80% are observed in each year, D. The network does not reach an equilibrium state (as defined by our model) before the collapse set in and the season is over.</p> <p>Conclusion</p> <p>We have shown that the temporal dynamics of an Arctic plant-pollinator network can be described by a simple mathematical model and that the model allows us to draw biologically interesting conclusions. Our model makes it possible to investigate how the network topology changes with changes in parameter values and might provide means to study the effect of climate on plant-pollinator networks.</p

    Pourquoi un portrait de Blaise Pascal ?

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    J’ai toujours Ă©tĂ© fascinĂ© par ces fulgurances que sont les PensĂ©es de Pascal. L’esprit capte un problĂšme. La rĂ©flexion le dĂ©cape et le synthĂ©tise pour aboutir Ă  une phrase, aiguĂ« comme un rayon laser, dans laquelle rien n’est Ă  ajouter, rien Ă  retrancher non plus. La peinture est mon mĂ©tier. J’y crois comme moyen de connaissance, non comme Ă  un « divertissement », je dis bien divertissement. Comme le Verbe, la peinture est lĂ  pour dire, non pour dĂ©crire ou dĂ©corer. Elle est, comme toute forme..
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