Search, discover, and connect with over 1,800 researchers, faculty members, and scholars across all departments of KNUST.
Department of Meteorology and Climate Science
The researcher has developed an equation to model real-world phenomena, focusing on variables and employing diverse methodologies from biology, physics, and computer science. Their work emphasizes theory-driven research, collaboration with experts, and integrating knowledge across disciplines to create comprehensive models for practical applications.
Department of Meteorology and Climate Science
The researcher has developed comprehensive modeling frameworks that integrate computational methods across various scientific disciplines to address complex real-world problems, particularly in medical, climate, genetic, materials science, and geophysical systems. Their work emphasizes the development of integrated data-driven discovery approaches using advanced algorithms and interdisciplinary methodologies.
Department of Meteorology and Climate Science
The researcher's work focuses on understanding and addressing the impacts of climate variability across multiple interconnected domains, including its applications in agriculture, hydrology, public health, and other fields. This interdisciplinary approach involves examining mechanisms like rainfall variability, urban heat island effects, agricultural systems, hydrological processes, and the role of mosquitoes in disease transmission. The researcher employs a holistic methodology using data from satellites, climate models, observational studies, and public health records to develop comprehensive frameworks for assessing environmental risks, optimizing water management, and improving community resilience.
Department of Meteorology and Climate Science
The researcher’s work focuses on exploring the computational limits and capabilities within quantum computing, theoretical computer science, and distributed systems, with a particular emphasis on understanding how these fields intersect to drive future advancements in technology.
Department of Meteorology and Climate Science
This researcher's work is a comprehensive exploration spanning multiple scientific domains, reflecting their integrated research approach. Their studies are deeply rooted in themes such as climate change impacts on agriculture, hydrological dynamics across various zones, atmospheric processes, solar energy applications, agricultural practices, and digital transformation initiatives. By integrating across these diverse areas—plant water relations and carbon dynamics, climate change impacts on agriculture, hydrology and drought analysis, atmospheric chemistry and aerosols, solar radiation and photovoltaics, precipitation measurement and analysis, mathematical and theoretical epidemiology/ecosystems models, fire effects on ecosystems, climate variability and models, hydrology and Watershed Management Studies, soil Moisture and remote sensing, atmospheric aerosols and clouds, evolution and Genetic Dynamics, Air Quality Monitoring and Forecasting, Rangeland Management and Livestock Ecology, Building Energy and Comfort Optimization, Supply Chain and Inventory Management, Entrepreneurship Studies and Influences, Animal Ecology and Behavior Studies, Nanoparticles nucleation surface interactions, Urban and Freight Transport Logistics, Ecosystem dynamics and resilience, Geophysics and Gravity Measurements, Flood Risk Assessment and Management, Quality and Supply Management, Digital Transformation in Industry—all these areas are interconnected through the researcher's overarching focus on advancing understanding across various scientific domains.
Department of Meteorology and Climate Science
The researcher has focused on developing numerical methods for solving partial differential equations (PDEs) within the context of applied mathematics, collaborating with scientists and engineers to validate these methods across diverse applications such as material science, environmental engineering, quantum mechanics, and biology. Their work emphasizes both practical implementation and theoretical exploration, highlighting the importance of computational techniques in addressing real-world problems.
Department of Meteorology and Climate Science
The researcher’s work centers on advancing understanding of water balance dynamics, particularly in hydrological systems like watersheds, using a blend of historical and future simulations of rainfall patterns. Their studies span themes such as land-use changes affecting water balance (Pra Basin, Ghana), climate variability influencing streamflow (Ghana, West Africa), precipitation measurements, extreme events ( severe floods, 2018), and hydrological drought analysis under various global warming scenarios. The integration of climate models with observational data provides a comprehensive approach to understanding the role of water resources in ecosystems and their resilience to environmental changes.
Department of Meteorology and Climate Science
This researcher's work is centered on the study of Earth processes, particularly focusing on precipitation patterns and their implications across various domains. Their research encompasses a broad range of topics, including atmospheric phenomena, hydrological dynamics, land-use changes, and agricultural resilience, all within the context of climate change and its impacts. Key areas of focus include extreme rainfall events, the effects of climate change on water cycles, and the development of methodologies for improving flood management in Ghana. Their work reflects a commitment to advancing understanding of Earth systems and enhancing the ability to predict and mitigate environmental hazards.
Department of Meteorology and Climate Science
The researcher has conducted extensive work across various themes in Ghana and West Africa, focusing on themes such as climate variability and models, land use changes, precipitation patterns, mosquito-borne diseases, hydrological systems, and sustainable development efforts. Through a combination of satellite data, General Circulation Models (GCMs), and in situ measurements, the researcher has explored key aspects of these areas. Work in climate variability and models has highlighted the impacts of climate change on agricultural productivity and粮食 security. Land use and land cover changes have been studied extensively, particularly regarding their effects on water balance and habitat alteration. The researcher's hydrological studies have focused on rainfall patterns, soil erosion, and groundwater management. Their research on mosquito-borne diseases, particularly malaria transmission seasonality and vector-borne disease modeling, has contributed significantly to understanding ecological dynamics in the region. Work in hydrological forecasting and remote sensing techniques has enhanced drought analysis and water resource management. The researcher's integrated approach to water resources, energy load studies, and solar radiation contributions underscores their commitment to sustainable development and renewable energy solutions. Their findings on solar radiation impacts and agricultural practices have emphasized the importance of adopting climate-resilient strategies for food security in Ghana and West Africa.

Department of Meteorology and Climate Science
This researcher integrates artificial intelligence with human-centered design, focusing on developing integrated systems for enhancing human experience across diverse domains like education and healthcare, emphasizing collaboration between technology and human interaction to achieve optimal outcomes.
Department of Meteorology and Climate Science
The researcher's work integrates cutting-edge plasma physics and atmospheric science to address critical environmental challenges, focusing on applications in air quality management, pollution degrading using strong ionization discharges, solar energy assessment, cloud dynamics research, plant water relations, and soil moisture studies. Their overarching goal is to enhance environmental impact analysis, develop efficient renewable energy solutions, and improve our understanding of ecosystem dynamics across West Africa.
Department of Meteorology and Climate Science
A researcher has made significant contributions to advancing hydrological understanding by integrating satellite data with land use/land cover changes, particularly in mining areas. Through a series of papers spanning themes such as Hydrology and Watershed Management Studies (e.g., water balance responses and precipitation projections), the study explores the impacts of mining on water systems across West Africa. The research highlights how satellite imagery enhances our ability to monitor land-use changes and their effects on hydrological processes, particularly in resource-constrained environments like the Pra River Basin. By analyzing historical data and projecting future trends, the work provides critical insights into climate change impacts, agricultural resilience, and sustainable practices. Through its comprehensive approach, the research synthesizes knowledge across physics, environment, and policy to inform decisions for optimizing water resources and promoting eco-innovation in West Africa.