In the seismic design of super high-rise buildings, a variety of challenges exist, including convergence calculation for setting design seismic force and evaluating cross-section, performance design against growing ea...
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This article employs a hybrid approach encompassing both theoretical and empirical research. Initially, a comprehensive review of literature and case studies is conducted to map out the current applications and future...
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This study uses an artificial neural network (ANN) to forecast Finland's economic growth from 1990–2020. Environmental protection expenditure (EPE), capital accumulation (CAPITAL), labor force (LABOR), renewable ...
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This paper examines whether the physical properties of materials can be useful predictors of material sensory properties. In this study, sensory methods were used to investigate the relationship between measured surfa...
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It is known that when lead rubber bearings (LRB) are subjected to cyclic and large deformation under long period earthquake input,the temperature of lead plug rises up, resulting in deterioration of yield stress of L...
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The China Meteorological Assimilation Driving Dataset for the SWAT model (CMADS) has gained widespread use for its accuracy. This study focuses on the Baihe River Basin in Nanyang, using the SWAT tool and CMADS datase...
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作者:
Gudadhe, Amit AnilReddy, K.T.V.
Faculty of Engineering and Technology Computer Science and Design Department Wardha India
Faculty of Engineering and Technology Wardha India
For social and economic development of any region, groundwater plays a very vital role. Surface water infiltration depends on various parameters of the earth. The parameters includes Slope, Geology, Soil Type, Land Us...
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Libraries have been pinpointed as a possible hub for information and safety during a crisis. We present a workshop design to contribute to the education of librarians with the goal to make them more able to provide in...
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This paper investigates the fundamental sensing mechanism of electrostatic MEMS gas *** compares among the responsivities of a set of MEMS isopropanol sensors before and after functionalization,and in the presence and...
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This paper investigates the fundamental sensing mechanism of electrostatic MEMS gas *** compares among the responsivities of a set of MEMS isopropanol sensors before and after functionalization,and in the presence and absence of electrostatic fields when operated in static and dynamic detection *** the static mode,we found that the sensors do not exhibit a measurable change in displacement due to added *** the other hand,bare sensors showed a clear change in displacement in response to isopropanol *** the dynamic mode,functionalized sensors showed a measurable frequency shift due to the added mass of isopropanol *** the presence of strong electrostatic fields,the measured frequency shift was found to be threefold larger than that in their absence in response to the same concentration of isopropanol *** enhanced responsivity of dynamic detection allows the sensors to measure the vapor mass captured by the functional material,which is not the case for static *** detection of isopropanol by bare sensors in static mode shows that change in the medium permittivity is the primary sensing *** enhanced responsivity of dynamic mode sensors when operated in strong electrostatic fields shows that their sensing mechanism is a combination of a weaker added mass effect and a stronger permittivity *** findings show that electrostatic MEMS gas sensors are independent of the direction of the gravitational field and are,thus,robust to changes in *** is erroneous to refer to them as‘gravimetric’sensors.
Lightweight technology has emerged as a crucial focus within transportation machinery manufacturing, driving the pursuit for materials with exceptional strength-to-weight ratios. To address this need, ultra-fine grain...
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