Publications by authors named "G Kishore Kumar"

Long-term electrocardiogram (ECG) monitoring is crucial for detecting and diagnosing cardiovascular diseases (CVDs). Monitoring cardiac health and activities using efficient, noninvasive, and cost-effective techniques such as ECG can be vital for the early detection of different CVDs. Wet electrode-based traditional ECG techniques come with unavoidable limitations of the altered quality of ECG signals caused by gel volatilization and unwanted noise followed by dermatitis.

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Spiritual lifestyles positively impact physical and mental health, which can be addressed by effective spiritual tools. This review systematically evaluates general spirituality instruments retrieved from various databases. Among the top four validated tools with strong psychometric properties, each exhibited a limitation-such as contamination, absence of subscales, or lack of confirmatory factor analysis-which impacts their broader applicability.

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Background: Highways represent the most significant capital asset that any country's public sector holds. A system of national highways with easy access to ambulance and trauma centers is termed emergency rescue ready and helps reduce the mortality due to road accidents. Given the rich impetus for road infrastructure development by the government of India, there is a need to consider emergency rescue readiness on highways.

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Both the global and European energy sectors have been undergoing a deep transition for several years, associated with a reduction in the overall share of conventional coal-based energy in favor of new technologies, especially energy from renewable sources (RES). This transition is moving from centralized production towards distributed technologies and from providing only energy to end users towards combining innovative products and services with it. Electricity consumers are becoming prosumers connected to the grid and generating an increasing amount of energy.

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Single-atom-based Metal-Organic Frameworks (MOFs) hold great promising candidates for heterogeneous catalysis, demonstrating outstanding catalytic activity and exceptional product selectivity. This is attributed to their optimal atom utilization, high surface energy, and the presence of unsaturated coordination environments. Here in, we have developed a nickel single-atom catalyst (UiO-66/Ni) featuring Ni single atoms covalently attached to defect-engineered Zr-oxide clusters within the stable UiO-66 framework, synthesized via a straightforward solution impregnation method.

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