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Transcribing a theoretical or conceptual paper allows readers to quickly read and reference the spoken material. Transcriptions further benefit deaf and hard-of-hearing people and others who need written translations. Transcribing the content makes it more accessible and valuable for theoretical and conceptual paper writers.

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Although surface coating is commonly utilized in many industries for improving the aesthetics and functionality of the end product, our tactile perception of coated surfaces has not been investigated in depth yet. In fact, there are only a few studies investigating the effect of coating material on our tactile perception of extremely smooth surfaces having roughness amplitudes in the order of a few nanometers.

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The data set was collected from a flotation plant in China and was mainly used to identify the fault conditions in the flotation process.

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The data of experiment analysis related to  ''tracking and position mechanism''

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In this study, BT-CFO based multiferroic composite were synthesized using solid state method by adding different compositions (i.e. 5%, 10% & 15%) of Cobalt Ferrite (CFO) in Barium Titanate (BT). XRD pattern showed sharp peaks of BT and CFO exhibiting crystalline nature of composite. The morphological structure was determined using FESEM, which also confirmed a uniform grain size distribution. Dielectric study was done by varying the temperature at a certain frequency value.

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资源受限的多项目反应式调度问题与新项目到达

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High-performance single-photon sources (SPSs) are essential components for quantum information technology and have been realized by strong coupling between a single quantum emitter and an optical cavity. However, the configurations of conventional SPSs are not ideal for long-distance quantum communication as they are intrinsically incompatible with optical fibers. Here we propose and design a strong-coupling system based on a single quantum emitter directly coupled with an in-fiber microcavity.

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High-performance single-photon sources (SPSs) are essential components for quantum information technology and have been realized by strong coupling between a single quantum emitter and an optical cavity. However, the configurations of conventional SPSs are not ideal for long-distance quantum communication as they are intrinsically incompatible with optical fibers. Here we propose and design a strong-coupling system based on a single quantum emitter directly coupled with an in-fiber microcavity.

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This dataset contains data and code for the paper "Focused vibrotactile stimuli from a wearable sparse array of actuators" published in IEEE Transactions on Haptics.

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