953 resultados para VICIA-GRAMINEA SM


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Este trabalho teve por objetivos avaliar o efeito da temperatura e do estresse hídrico na germinação das sementes e na formação de plântulas normais de Amburana acreana. Foram realizados dois ensaios. No primeiro, as sementes foram colocadas para germinar nas temperaturas de 20, 25, 30, 35 e 40°C. No segundo, as sementes foram dispostas em substrato umedecido com soluções de polietilenoglicol 6000 nos seguintes potenciais hídricos: zero (testemunha), -0,2, -0,4, -0,8, -1,0 e -1,2MPa, a 30°C. A germinação das sementes e a formação de plântulas normais foi avaliada durante 30 dias, em cinco repetições de 20 sementes, sendo consideradas germinadas aquelas que apresentaram emissão de raiz primária com no mínimo 5mm de comprimento e curvatura geotrópica positiva. Os melhores resultados, no primeiro ensaio, foram encontrados nas temperaturas de 30 e 35°C, com maiores valores de porcentagens de germinação, sendo os tratamentos onde o processo germinativo ocorreu em menor tempo. A porcentagem de germinação, no segundo ensaio, diminuiu à medida que se reduziu a disponibilidade de água no substrato, a partir de -0,4MPa, e foi nula entre -1,0 e -1,2MPa. A formação de plântulas foi reduzida já no potencial -0,2MPa, sendo totalmente inibida entre -0,4 e -0,8MPa. Conclui-se que a temperatura de 30°C é mais recomendada para a condução do teste de germinação por propiciar melhores condições para o processo germinativo, com maior porcentagem de plântulas normais e menores porcentagens de plântulas anormais e de sementes deterioradas. A redução na disponibilidade hídrica diminui a germinação das sementes e a formação de plântulas de cerejeira e os limites para germinação ocorrem na faixa de zero a -1,0MPa e, para formação de plântulas, de zero a -0,4MPa.

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Tesis (Maestría en Ciencias con Especialidad en Microbiología) UANL

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Tesis (Maestría en Ciencias con orientación en Química de los Materiales) UANL, 2014.

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Dielectric resonator ceramics with composition formula Ba[(D3+0.3 Bi0.2)Nb0.5]O3,where D3+=Y,Pr,Sm,Gd,Dy and Er,were prepared by the conventional ceramic preparation route

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Microwave ceramic dielectric resonators (DRs) based on RETiNbO6 (RE = Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy, Y, and Yb) have been prepared using the conventional solid -state ceramic route. The DR samples are characterized using XRD and SEM methods. The microwave dielectric properties are measured using resonant methods and a net work analyzer . The ceramics based on Ce, Pr, Nd, and Sin have dielectric constants in the range 32-54 and positive coefficient of thermal variation of resonant frequency (r,). The ceramics based on Gd, Tb, Dy, Y. and Yb have dielectric constants in the range 19-22 and negative Tf

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Microwave dielectric ceramics based on RETiTaO6 (RE = La, Cc, Pr, Nd, Sm, Eu, Gd, Tb, Dy, Ho, Y, Er, Yb, Al, and In) were prepared using a conventional solid-state ceramic route. The structure and microstructure of the samples were analyzed using x-ray diffraction and scanning electron microscopy techniques. The sintered samples were characterized in the microwave frequency region. The ceramics based on Ce, Pr, Nd, Sm, Eu, Gd, Tb, and Dy, which crystallize in orthorhombic aeschynite structure, had a relatively high dielectric constant and positive T f while those based on Ho, Er, and Yb, with orthorhombic euxenite structure, had a low dielectric constant and negative Tf. The RETiTaO6 ceramics had a high-quality factor. The dielectric constant and unit cell volume of the ceramics increased with an increase in ionic radius of the rare-earth ions, but density decreased with it. The value of Tf increased with an increase in RE ionic radii, and a change in the sign of Tf occurred when the ionic radius was between 0.90 and 0.92 A. The results indicated that the boundary of the aeschynite to euxenite morphotropic phase change lay between DyTiTaO6 and HoTiTaO6. Low-loss ceramics like ErTiTaO6 (Er = 20.6, Qxf = 85,500), EuTiTaO6 (Er = 41.3, Qxf = 59,500), and YTiTaO6 (Er = 22.1, Q„xf = 51,400) are potential candidates for dielectric resonator applications

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Microwave dielectric ceramics based on GdTiNb,-,.Ta,O6 and Sml _.,Y,TiTa06 have been prepared by conventional solid state method . The GdTiTaO6 and SmTiTaO6 have aeschenite structure with positive rr and GdTiNbO6 and YTiTaO6 have euxenite structure with negative rr. The rr of the ceramics has been tuned by preparing solid solution phases between the aeschynites and euxenites for a possible zero rr material . It is observed that GdTiNbt_YTa.,O6 undergoes a phase transition from aeschynite to euxenite when x=0.75 and in Sml-,YxTiTa06 for x= 0.73. The microwave dielectric properties change abruptly near the transition region . The rr value approaches zero near the phase transition region while the samples have poor sinterability and poor quality factor . The unloaded quality factor, dielectric constant and the sign of rr of the solid solution phases are found to depend on the average ionic radius of the rare earth ion in RE ,-5RE',TiTaO6. The boundary of the euxenite-aeschynite phase transition occurs at an average ( RE) ionic radius of 0.915 A in Sm,_, Y,.TiTaO6 solid solution phases

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Microwave dielectric resonators (DRs) based on Ba(B1,2Nbi/2)03 [B' = La, Pr, Nd, Sm, Eu, Gd, Tb, Dy, Ho, Y, Yb, and In] complex perovskites have been prepared by conventional solid state ceramic route. The dielectric properties (relative permittivity, Er; quality factor, Q; and resonant frequency, rr) of the ceramics have been measured in the frequency range 4-6 GHz using resonance methods. The resonators have relatively high dielectric constant in the range 36-45, high quality factor and small temperature variation of resonant frequency. The dielectric properties are found to depend on the tolerance factor (t), ionic radius (r), and lattice parameter (ap)

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The surface acidity and basicity of oxides of Sm and Zr and their mixed oxides have been determined using a set of Hammett indicators. The data have been correlated with the catalytic activity of these oxides towards the liquid phase reduction of cyclo-hexanone in 2-propanol.

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Fluorescence of BaS: Sm phosphor has been studied using a pulsed Nitrogen laser (337.1 nm) as the excitation source. The spectrum consists of a broad band in the region 540–660nm superposed by the characteristic Sm3+ lines. Energy level splitting pattern of Sm3+ due to crystal field effects has been calculated and relevent field parameters are evaluated. Analysis shows that Sm3+ takes up Ba2+ substitutional sites.