984 resultados para 1764-1842


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The mean duration of a lightning flash is observed to exhibit systematic variation with the growth and decay of the activity of a thundercloud and reaches a minimum value when the radio noise level and rate of flashing are at their maximum values.

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Commercialization efforts to diffuse sustainable energy technologies (SETs1) have so far remained as the biggest challenge in the field of renewable energy and energy efficiency. Limited success of diffusion through government driven pathways urges the need for market based approaches. This paper reviews the existing state of commercialization of SETs in the backdrop of the basic theory of technology diffusion. The different SETs in India are positioned in the technology diffusion map to reflect their slow state of commercialization. The dynamics of SET market is analysed to identify the issues, barriers and stakeholders in the process of SET commercialization. By upgrading the ‘potential adopters’ to ‘techno-entrepreneurs’, the study presents the mechanisms for adopting a private sector driven ‘business model’ approach for successful diffusion of SETs. This is expected to integrate the processes of market transformation and entrepreneurship development with innovative regulatory, marketing, financing, incentive and delivery mechanisms leading to SET commercialization.

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A molecular theory of collective orientational relaxation of dipolar molecules in a dense liquid is presented. Our work is based on a generalized, nonlinear, Smoluchowski equation (GSE) that includes the effects of intermolecular interactions through a mean‐field force term. The effects of translational motion of the liquid molecules on the orientational relaxation is also included self‐consistently in the GSE. Analytic expressions for the wave‐vector‐dependent orientational correlation functions are obtained for one component, pure liquid and also for binary mixtures. We find that for a dipolar liquid of spherical molecules, the correlation function ϕ(k,t) for l=1, where l is the rank of the spherical harmonics, is biexponential. At zero wave‐vector, one time constant becomes identical with the dielectric relaxation time of the polar liquid. The second time constant is the longitudinal relaxation time, but the contribution of this second component is small. We find that polar forces do not affect the higher order correlation functions (l>1) of spherical dipolar molecules in a linearized theory. The expression of ϕ(k,t) for a binary liquid is a sum of four exponential terms. We also find that the wave‐vector‐dependent relaxation times depend strongly on the microscopic structure of the dense liquid. At intermediate wave vectors, the translational diffusion greatly accelerates the rate of orientational relaxation. The present study indicates that one must pay proper attention to the microscopic structure of the liquid while treating the translational effects. An analysis of the nonlinear terms of the GSE is also presented. An interesting coupling between the number density fluctuation and the orientational fluctuation is uncovered.

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Symmetry?adapted linear combinations of valence?bond (VB) diagrams are constructed for arbitrary point groups and total spin S using diagrammatic VB methods. VB diagrams are related uniquely to invariant subspaces whose size reflects the number of group elements; their nonorthogonality leads to sparser matrices and is fully incorporated into a binary integer representation. Symmetry?adapated linear combinations of VB diagrams are constructed for the 1764 singlets of a half?filled cube of eight sites, the 2.8 million ??electron singlets of anthracene, and for illustrative S?0 systems.

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This paper presents a synthesis of assessment of sustainable biomass production potential in six Asian countries-China, India, Malaysia, Philippines, Sri Lanka and Thailand, and is based on the detailed studies carried out in these countries under the Asian Regional Research Programme in Energy, Environment and Climate (ARRPEEC). National level studies were undertaken to estimate land availability for biomass production, identify and evaluate the biomass production options in terms of yield per hectare and financial viability, estimate sustainable biomass production for energy, and estimate the energy potential of biomass production in the six Asian countries. Sustainable biomass production from plantation is estimated to be in the range of 182.5-210.5, 62-310, 0.4-1.7, 3.7-20.4, 2.0-9.9 and 11.6-106.6 Mt yr(-1) for China, India, Malaysia, Philippines, Sri Lanka and Thailand, respectively. The maximum annual electricity generation potential, using advanced technologies, from the sustainable biomass production is estimated to be about 27, 114, 4.5, 79, 254 and 195 percentage of the total electricity generation in year 2000 in China, India, Malaysia, Philippines, Sri Lanka and Thailand, respectively. Investment cost for bioenergy production varies from US$381 to 1842 ha(-1) in the countries considered in this study; investment cost for production of biomass varies from US$5.1 to 23 t(-1). (C) 2003 Elsevier Ltd. All rights reserved.

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Conductivity measurements as a function of temperature and partial pressures of SOs, SO2, and O2, and transference experiments indicate that the transport number of Na + ions is unity in Na2SO4-I. A concentration cell based on this electrolyte Pt, O2' + SO2' + SOs'/Na2SO4-I/SOa" + SO~" + O~", Pt produces emf's that are in agreement with those calculated from the Nernst equation when equilibrium is assumed between the gas species at the electrodes. The cell can be used for monitoring the SO#SOs pollution in air, and in combination with an oxygen probe can be used for the determination of SO=/SOs concentrations in coal combustion reactors, for the evaluation of the partial pressure of $2 in coal gasification systems, and for emission control in nonferrous smelters using sulfide ores. The probe is similar to that developed recently by Gauthier et aL (4, 5) using K=SO4 as the electrolyte, but can operate at higher pressures of SO3. Because of the greater polarizing power of the Na+ ion compared to the K + ion, Na2S207 is less stable and can be formed only at a considerably higher pressure of S03 than that required for K~20~.

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This paper investigates a new approach for point matching in multi-sensor satellite images. The feature points are matched using multi-objective optimization (angle criterion and distance condition) based on Genetic Algorithm (GA). This optimization process is more efficient as it considers both the angle criterion and distance condition to incorporate multi-objective switching in the fitness function. This optimization process helps in matching three corresponding corner points detected in the reference and sensed image and thereby using the affine transformation, the sensed image is aligned with the reference image. From the results obtained, the performance of the image registration is evaluated and it is concluded that the proposed approach is efficient.

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Given the significant gains that relay-based cooperation promises, the practical problems of acquisition of channel state information (CSI) and the characterization and optimization of performance with imperfect CSI are receiving increasing attention. We develop novel and accurate expressions for the symbol error probability (SEP) for fixed-gain amplify-and-forward relaying when the destination acquires CSI using the time-efficient cascaded channel estimation (CCE) protocol. The CCE protocol saves time by making the destination directly estimate the product of the source-relay and relay-destination channel gains. For a single relay system, we first develop a novel SEP expression and a tight SEP upper bound. We then similarly analyze an opportunistic multi-relay system, in which both selection and coherent demodulation use imperfect estimates. A distinctive aspect of our approach is the use of as few simplifying approximations as possible, which results in new results that are accurate at signal-to-noise-ratios as low as 1 dB for single and multi-relay systems. Using insights gleaned from an asymptotic analysis, we also present a simple, closed-form, nearly-optimal solution for allocation of energy between pilot and data symbols at the source and relay(s).

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Neutral and niche theories give contrasting explanations for the maintenance of tropical tree species diversity. Both have some empirical support, but methods to disentangle their effects have not yet been developed. We applied a statistical measure of spatial structure to data from 14 large tropical forest plots to test a prediction of niche theory that is incompatible with neutral theory: that species in heterogeneous environments should separate out in space according to their niche preferences. We chose plots across a range of topographic heterogeneity, and tested whether pairwise spatial associations among species were more variable in more heterogeneous sites. We found strong support for this prediction, based on a strong positive relationship between variance in the spatial structure of species pairs and topographic heterogeneity across sites. We interpret this pattern as evidence of pervasive niche differentiation, which increases in importance with increasing environmental heterogeneity.

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The objective of this paper was to develop the seismic hazard maps of Patna district considering the region-specific maximum magnitude and ground motion prediction equation (GMPEs) by worst-case deterministic and classical probabilistic approaches. Patna, located near Himalayan active seismic region has been subjected to destructive earthquakes such as 1803 and 1934 Bihar-Nepal earthquakes. Based on the past seismicity and earthquake damage distribution, linear sources and seismic events have been considered at radius of about 500 km around Patna district center. Maximum magnitude (M (max)) has been estimated based on the conventional approaches such as maximum observed magnitude (M (max) (obs) ) and/or increment of 0.5, Kijko method and regional rupture characteristics. Maximum of these three is taken as maximum probable magnitude for each source. Twenty-seven ground motion prediction equations (GMPEs) are found applicable for Patna region. Of these, suitable region-specific GMPEs are selected by performing the `efficacy test,' which makes use of log-likelihood. Maximum magnitude and selected GMPEs are used to estimate PGA and spectral acceleration at 0.2 and 1 s and mapped for worst-case deterministic approach and 2 and 10 % period of exceedance in 50 years. Furthermore, seismic hazard results are used to develop the deaggregation plot to quantify the contribution of seismic sources in terms of magnitude and distance. In this study, normalized site-specific design spectrum has been developed by dividing the hazard map into four zones based on the peak ground acceleration values. This site-specific response spectrum has been compared with recent Sikkim 2011 earthquake and Indian seismic code IS1893.

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Titanium carbide particle (TiCp) reinforced Ni alloy composite coatings were synthesized by laser cladding using a cw 3 kW CO2 laser. Two kinds of coatings were present in terms of TiCp origins, i.e. undissolved and in situ reacted TiCp, respectively. The former came from the TiCp pre-coated on the sample, whereas the latter from in situ reaction between titanium and graphite in the molten pool during laser irradiation. Conventional and high-resolution transmission electron microscope observations showed the epitaxial growth of TiC, the precipitation of CrB, and the chemical reaction between Ti and B elements around phase interfaces of undissolved TiCp. The hardness, H, and elastic modulus, E, were measured by nanoindentation of the matrix near the TiCp interface. For undissolved TiCp, the loading curve revealed pop-in phenomena caused by the plastic deformation of the crack formation or debounding of TiCp from the matrix. As for in situ generated TiCp, no pop-in mark appears. On the other hand, in situ reacted TiCp led to much higher hardness and modulus than that in the case of undissolved TiCp. The coating reinforced by in situ generated TiCp displayed the highest impact wear resistance at both low and high impact conditions, as compared with coatings with undissolved TiCp and without TiCp. The impact wear resistance of the coating reinforced by undissolved TiCp increases at a low impact work but decreases at a high impact work, as compared with the single Ni alloy coating. The degree of wear for the composite coating depends primarily on the debonding removal of TiCp.

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It has been reported recently that single carbon nanotubes were attached to AFM tips to act as nanotweezers. In order to investigate its stability, a vertical single-walled carbon nanotube (SWCNT) under its own weight is studied in this paper. The lower end of the carbon nanotube is clamped. Firstly the governing dimensionless numbers are derived by dimensional analysis. Then the theoretical analysis based on an elastic column model is carried out. Two ratios, I.e., the ratio of half wall thickness to radius (t=R) and the ratio of gravity to elastic resilience ($\rho$gR=E), and their influences on the ratio of critical length to radius are discussed. It is found that the relationship between the critical ratio of altitude to radius and ratio of half thickness to radius is approximately linear. As the dimensionless number $\rho$gR=E increases, the compressive force per unit length (weight) becomes larger, thus critical ratio of altitude to radius must become smaller to maintain stability. At last the critical length of SWCNT is calculated. The results of this paper will be helpful for the stability design of nanotweezers-like nanostructures.

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Esta investigación fue realizado en dos localidades, la cría masiva de tres parasitoides larvales (Diadegma insulare. Cotesio plutellae y Microplitis plutellae) de Plutella xylostella L. se realizó en la Universidad Nacional Agraria donde se evalúo la metodología de cría masiva de tres parasitoides y P. xylostella plaga de gran importancia en crucíferos, bajo condiciones de laboratorio y una etapa de campo fue realizado en el Departamento de Estelí. En el cultivo de repollo donde se evaluó el uso de Bacillus thuringiensis, para el manejo de P. xylostella. en combinación con liberaciones de parasitoides C. plutellae y M. plutellae, siendo estos introducidos desde Taiwan. Para la cría masiva de los parasitoides y P. xylostella. se sembró plantas de repollo en maceteras de arcilla dentro de un invernadero, las plantas fueron utilizados cuando tenían entre 10 y 12 hojas verdaderas, Luego se ubicaron adultos de P. xylostella en cámaras de oviposición, donde adultos ovipositan en láminas de aluminio impregnados de jugo de repollo, luego se colocaron aproximadamente entre 300-500 huevos en estas plantas, los que eclosionaron aproximadamente en dos o tres días después de inoculada la planta. Las larvas de P. xylostella fueron expuestos a los parasitoides cuando se encuentran en estado óptimo para ser parasitadas (instar 2 e instar 3). se introducen en una jaula con aproximadamente de 200 adultos parasitoides, en donde permanecieron 48 horas las larvas en estado óptimo, después se retiraron y puestos en otro jaulas hasta que se presenta el estado de pupa. El manejo de P. xylostella en épocas de primera. Postrera y riego. en el cultivo de repollo. fue realizado con el insecticida Microbiológico Dipel (a thuringiensis). el criterio de aplicación fue lo utilización de umbrales económicos en base a recuentos. En condiciones de laboratorio donde fue conducido lo cría masivo de los parasitoides. se alcanzaron porcentajes promedio de parasitismo de O. insulare. M. plutelloe y C plutelloe. de 62.55'X.. 927?fo y 88.()()% respectivamente. estos resultados muestran lo efectividad de la metodología utilizada para lo crío de los porositoides y su hospedero. la cría de estos parasitoides puede ser utilizado en un programa de Manejo Integrado de Plagas poro el control de P. xylostella. El ciclo de vida de P. xylostella en condiciones de laboratorio o temperatura promedio de 23.60 OC es de 19.75 días sin incluir lo duración de su vida adulto. El ciclo de vida promedio de los porosifoides. O. insulore. M. plutellae y C plutellae. fueron 31.35. 31.02 y 31.45. en días, o temperoh.xos promedio de 20-21. 21 -22 y 24-26 OC. Lo utiización de B. thuringiensis poro el control de P. xytostella. fue efectivo y no afecto lo actividad de los enemigos naturales y se registro 'X. parasitismo promedios por D. insulare de 38.24. 47.70% y 44.86con máximos de 64.70%. 64 y 72.33% para las épocas de Primera, Postrera y Riego respectivamente, no se registro el establecimiento de los parasitoides.

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En el Centro de Investigación y Reproducción de Controladores Biológicos (CIRCB) de la UNAN, León, se determinó el ciclo biológico de Sitotroga cerealella Olivier , con el objetivo de validar el protocolo de producción de Sitotroga en las nuevas condiciones de laboratorio. La producción masiva de Trichogramma comprende dos fases generales: obtención de huevos de Sitotroga cerealella Olivier, hospedero utilizado para la reproducción masiva; y, la parasitación de esos huevos por Trichogramma . Se han realizado estudios sobre la biología de Sitotroga para mejorar la producción y optimizar la cría de Trichogramma . Se colocaron huevos blancos recién ovipositados y granos de trigo (como sustrato), provenientes de la cría masiva. Estos fueron pu estos en 25 platos petri, a razón de 3:6 (granos: huevos) por plato, diariamente se observaron y anotaron todos los cambios desde huevo hasta pupa. Cuando los adultos emergieron se aislaron en parejas para determinar la postura de huevos, hasta su muerte. A una temperatura y humedad promedio de 29 ºC y 76%, respectivamente, el ciclo biológico de Sitotroga se cumplió en 35.34 días en promedio. La fase de huevo duró 6.2 ± 0.46, larva 16.06 ± 2.62, pupa 5.78 ± 1.29 y adulto 7.3 ± 3.42 días en promedio. La larva pasó por 4 instares larvales: el primero duró 3.57 ± 0.72 días, el segundo 3.43 ± 0.86 días, el tercero 3.28 ± 1.17días y, el cuarto instar y la prepupa duró 5.78 ± 1.57 días. Paralelamente se montó otro ensayo utilizando un marco de incubación de la cría masiva de Sitotroga. Se colocó un termómetro en su interior para medir el comportamiento de la temperatura interna en relación con la temperatura y humedad de la Sala de Incubación donde fue ubicado, manteniendo una relación directamente proporcional durante el ensayo. A los 22 días se traslado al interior de un gabinete de producción para extraer diariamente la producción de huevos y adultos de Sitotroga. Se extrajo un total de 24.22 g de huevos con un promedio de 0.64 g por día; se recolectaron 211g de adultos y 5.7g por día durante 38 días, el 80% de la producción de huevos se obtuvo en los primeros 22 días. Los adultos extraídos pasaron a marcos de oviposición para seguir recolectando huevos hasta su muerte. La temperatura y humedad de las salas de producción del insecto (Sala de Incubación, Sala de Emergencia de adultos y Sala de Oviposición) influyen sobre su desarrollo biológico, manteniendo una óptima producción en un rango entre 70 - 80% y 26 - 30ºC de humedad y temperatura respectivamente.