Search, discover, and connect with over 1,800 researchers, faculty members, and scholars across all departments of KNUST.
Department of Horticulture
The researcher's work integrates advanced mathematical techniques with foundational principles of relativity and quantum theory, focusing on the interplay between geometry, wave dynamics in curved spacetimes, and theoretical models that unify physical forces. Their research spans geometric analysis, utilizing tools such as spinors and supersymmetry, while exploring the fundamental aspects of Einstein’s general theory of relativity through rigorous mathematical frameworks.
Department of Horticulture
His comprehensive research explores advancements in water management techniques, plant pathogens, tissue culture practices, disease control, agricultural innovations, and hybrid maize adoption within the field of life sciences.

Department of Horticulture
The researcher focuses on mitigating urban heat islands within the domain of physical sciences, employing innovative approaches such as green roof systems augmented with climbers to enhance thermal performance and plant health.
Department of Horticulture
The researcher investigates how human memory processes are influenced by both neurobiological and psychological factors using advanced techniques such as fMRI and MEG, examining the neural correlates of memory retrieval, attention, and decision-making across various brain scales.
Department of Horticulture
Research focuses primarily on global and comparative health equity, with a strong emphasis on reproductive health, maternal and child health, public health interventions, and innovative technologies such as blockchain for health monitoring. The studies address themes like cultural influences on sexual behavior, healthcare access, vaccination strategies, health policy frameworks, and advancements in agricultural practices. Research also delves into issues related to substance use, violence against women, social determinants of health, economic policies, technological innovations, and public health disparities across diverse contexts.
Department of Horticulture
This researcher has made significant contributions to the fields of computer science and theoretical physics through their extensive publication record, which spans over five years. Their work integrates insights from these disciplines, emphasizing interdisciplinary approaches that address foundational challenges in computational theory and physical modeling. Publications spanning conferences and books reflect a broad exploration of topics such as algorithmic efficiency, quantum systems, and network dynamics, with several notable collaborations highlighting expertise in theoretical physics.
Department of Horticulture
The researcher has focused on developing novel computational methods that integrate machine learning with biophysical modeling, particularly applying neural networks to study protein folding dynamics and brain function. Their work emphasizes the integration of theoretical physics approaches with advanced data analysis techniques to create accurate models of complex biological systems, aiming to advance our understanding of fundamental processes in biophysics through computational and interdisciplinary research.
Department of Horticulture
The researcher's work spans a wide range of topics in theoretical physics. Their current projects involve exploring the interplay between quantum mechanics and relativity within complex systems like biological networks and astrophysical phenomena. They employ advanced mathematical models, including differential equations and graph theory, to address these themes and uncover deep connections between fundamental principles and real-world applications.
Department of Horticulture
The researcher has made significant contributions across a wide range of disciplines, focusing on enhancing agricultural sustainability, productivity, and quality through innovative strategies. Their work extends from sustainable farming practices to traditional food applications, employing plant genetics, soil science, and eco-friendly practices to develop integrated systems that improve efficiency and resilience in diverse contexts like life sciences, plant biology, and urban development.
Department of Horticulture
This researcher has focused extensively on integrating Internet of Things (IoT) technology into smart home systems within the domain of Physical Sciences. Their work centers around designing and implementing innovative voice-controlled smart home automation systems, demonstrating a consistent exploration of seamless integration between IoT devices and human-centric applications.
Department of Horticulture
The researcher's work centers on advancing sustainable agricultural practices by integrating natural and bioregister-based techniques across various domains. This includes enhancing soil health through composting, Biochar usage, and root systems like Thuja occidentalis, improving soil fertility and reducing environmental impact, conserving resources while increasing crop yields, promoting socio-economic development, and mitigating urban heat islands with innovative solutions. The focus is on developing integrated farming methods in Africa to address challenges in soil health, resource management, biodiversity conservation, and sustainable agriculture.
Department of Horticulture
The researcher is deeply engaged in a comprehensive study of Moringa oleifera across multiple disciplines. Utilizing a variety of analytical methods, including phytochemistry studies and biosorption technologies, they explore its applications in food safety and climate change, as well as pollution removal. Their work integrates recent advancements in chemical sensing into plant science to enhance understanding of growth, stability, and health, with the ultimate goal of developing sustainable agricultural practices.