The UNCC-Lehigh team aims to improve dry cooling systems in coal power plants, reducing water consumption and increasing efficiency without adding water. They will develop an integrated heat exchanger and thermal energy storage unit to achieve this goal.
A study by Lehigh University researchers found that firms with female directors announced high-severity product recalls 28 days sooner than all-male boards. This reduction in time translates to a 35% decrease in the overall recall period.
A team of Lehigh University optimization experts, led by Tamás Terlaky, will work on optimizing algorithms for quantum computing with a $2.1M DARPA grant. They aim to demonstrate that quantum computers can surpass classical computers on certain problems.
Researchers developed a model that can predict the propulsive efficiency of cetacean fins based on shape and kinematics, revealing fundamental interplay between circulatory forces and added mass forces. The findings could influence the design of fast, efficient, and highly maneuverable underwater robots.
A physics professor and first-year physics major demonstrate how the center-of-mass of a nearly empty shampoo bottle affects its stability when placed on a tilted surface. The study reveals that the altitude of the center of mass is a nonlinear function of the liquid level, with lower levels resulting in higher altitudes.
Researchers at Lehigh University found that the 'Monday effect' negatively impacts supply chain performance, resulting in longer times between ordering and shipping, and more errors in order fulfillment. Technology solutions such as automated order processing systems can improve Monday performance by up to 90%.
Lehigh University MechE professor Hannah Dailey has received a prestigious grant from the National Science Foundation's Faculty Early Career Development (CAREER) Program. Her virtual mechanical test approach holds promise for identifying nonunions, which can lead to depression and opioid abuse, and may enable earlier surgical intervent...
Ethan Yang, a Lehigh University professor, receives a NSF CAREER award to study the effectiveness of rain gardens and rain barrels in reducing urban flooding. He plans to use smart sensors and AI-powered modeling to monitor and analyze the impact of green infrastructure on flood mitigation.
Xiaoji Xu named a 2020 Sloan Research Fellow, recognized for his innovative nanoscale imaging methods that empower researchers to study previously inaccessible objects. He plans to investigate the formation and transformation of aerosols and chemical properties of organic/inorganic photovoltaics.
Lehigh University's Ganesh Balasubramanian has received an NSF CAREER award to create a predictive framework for manufacturing complex alloys. The project aims to accelerate the manufacturing process by 50% and reduce costs, while also pushing the industry towards smart manufacturing.
A team of scientists has created a new class of 3D-printed biomaterials that can direct the regeneration of functional tissue in damaged cartilage. The materials are designed to provide cells with the exact cues they need to form tissue organized in the same way as natural cartilage.
A 100-plus page report presents a vision for the strategic path to unleashing AI's full potential, with applications in healthcare, education, business innovation, and more. The roadmap aims to address the tremendous social change that will result from AI research.
Research from Lehigh University finds that experiencing police brutality increases mistrust in medical institutions, affecting health. People from all racial minority groups exhibit higher levels of medical mistrust compared to Whites, regardless of the perceived necessity of police actions.
New research suggests that cleaning up ozone precursors in energy, industrial, and transportation sectors can mitigate climate change by increasing the land's ability to remove carbon dioxide through photosynthesis. This could result in a 15% increase in the size of the current land sink for carbon.
Researchers led by Lehigh's Anand Jagota will explore bio-inspired design of near-surface structures to improve friction in soft materials. The project aims to create safer tires, improve robotics and biomaterials, and advance mobility with the support of a $2M NSF grant.
James Gilchrist's project uses microrheology to study paint drying processes and develop a testing method to predict performance. The goal is to improve paint formulations, reduce energy consumption and costs in the automotive industry.
Arup K. SenGupta, a renowned expert in water technology, has received the second Fulbright research fellowship to collaborate with Indian Institute of Technology in Guwahati. His work focuses on implementing Hybrid Ion Exchange Nanotechnology (HIX-Nano) to transform wastewater into usable water.
Lehigh University professor Brian Chen is developing software that can predict protein interactions, reducing the need for human interpretation. The software has already successfully demonstrated the ability to predict something completely unknown in a collaboration with Rutgers University.
Acclaimed author Gloria Naylor's unpublished manuscript 'Sapphira Wade' provides insight into her prequel to Mama Day, exploring Bascombe Wade's life and cultural connections. The 131-page draft covers nearly two decades of his life, revealing unexpected character developments.
Nader Motee is investigating real-time perception and planning for networks of robots, aiming to improve efficiency and resiliency. His research also focuses on risk-aware planning and control to mitigate effects of local failures in nonlinear dynamical networks.
Rickman was recognized for his contributions to computational materials science, including the development of computer simulation methodologies and material informatics. He is a pioneer in understanding high-entropy alloys and their unique thermal and mechanical properties.
Engineers at Lehigh University have mapped the energy transport mechanism of chalcogenide perovskite, a promising material for solar energy generation. The research demonstrates tunability, essential for its potential applications.
Eugenio Schuster's research teams work on existing tokamaks to advance ITER efforts, focusing on plasma control and confinement. The European Union, China, and other countries have committed resources to build ITER, the largest fusion reactor in history.
A collaboration between Lehigh University and 15 Philadelphia-area libraries has made over 160,000 pages of medieval manuscripts available online. The project, funded by a $499,086 grant, features high-resolution images and searchable metadata, enabling researchers to study and compare manuscripts in detail.
A team of Lehigh researchers will use a $2 million DOE grant to develop a novel thermal energy storage concept, called THERMOSIPHON TECHNOLOGY. The goal is to create a more efficient and cost-effective approach to power plant applications.
A new study reveals that integrating students' experiences of social oppression into the classroom strengthens entrepreneurial and STEM skills among underrepresented groups. Community college students who participated in a five-week social entrepreneurship program reported large gains in confidence and technology readiness.
Researchers at Lehigh University's P.C. Rossin College of Engineering and Applied Science are designing a more efficient tidal turbine using a $250,000 NSF grant. They will test different fairing shapes in a water tunnel facility equipped with an active grid turbulence generator to reduce energy loss and increase renewable energy power.
Lehigh University Art Galleries has received a prestigious federal grant from the Institute of Museum and Library Services (IMLS) to create and implement a strategic plan. The 'Museums Empowered' grant will support staff training in outcomes-based, visitor-centered practices and collaboration with peer institutions.
Researchers at Lehigh University have discovered the mechanism behind a crucial catalyst that reduces harmful industrial emissions. The study found that tungsten oxide changes the structure of vanadium oxide, increasing its activity and reducing undesirable reaction products.
Researchers found that trademark portfolios are an important predictor of firm success, leading to better product market performance and higher valuations. Obtaining a trademark signals quality and attracts financing on favorable terms.
Researchers have developed an artificial intelligence technique that uses deep neural networks to analyze data from experiments on nanoscale ferroelectrics. This method has identified geometrically-driven differences in ferroelectric domain switching, providing new insights into the mechanisms of ferroelectric switching.
Lehigh University is presenting various research projects, including 3D printing for tissue regeneration and biomechanics of Ebola adhesion. The university also launched a new B.S. program in Biocomputational Engineering, emphasizing innovation in bioengineering and healthcare.
Masashi Watanabe, a Lehigh University professor, is recognized by the Microanalysis Society for his research on materials characterization using various electron microscopy approaches. He has developed innovative techniques such as the zeta-factor method and multivariate statistical analysis.
A novel approach developed by Lehigh University researchers combines four steps: climatology, hydrology, structural engineering, and risk assessment to predict the impact of climate change on bridges. The model reveals that a 20-year flood may become a 13-year flood at the end of the century, nearly doubling the frequency of flooding.
Researchers at Lehigh University have created a new biofabrication method that allows for the regeneration of multiple tissues, such as cartilage and bone, within a single scaffold. This breakthrough could potentially treat debilitating conditions like osteoarthritis, which affects approximately 27 million Americans.
Researchers at Lehigh University found that surface thermodynamics plays a critical role in driving structural transformations between crystal structures, challenging kinetic effects as the primary explanation. This discovery has implications for controlling and predicting the structure produced in crystallization processes.
Researchers at Lehigh University have developed a novel approach to determine when patients with tibial fractures can bear weight. The study used low-dose computed tomography scans and finite element analysis software to create 3D mechanical structural models that identified the regions of bone and new bone, or callus.
A comic book by Ann E. Fink examines the bioethics of treating a torturer's PTSD, highlighting the importance of considering social dimensions of traumatic stress. The comic raises critical questions about the responsibilities of clinicians and researchers, as well as individual rights and collective social responsibilities.
The Residential Experience for Aspiring Leaders (REAL) program will provide clinical experiences and prepare aspiring school leaders to manage daily workloads and long-range initiatives. Participants will be paired with Lehigh educators, mentors, and a clinical supervisor to develop their skills.
Researchers from Lehigh University have found that songbirds prefer the scent of their own species over others, which could impact hybridization. The study, led by Amber Rice and Alex Van Huynh, used gas-chromatography mass-spectrometry to analyze natural oils produced by birds' uropygial glands.
A team of engineers at Lehigh University has successfully created a catalyst that uses sunlight to split water molecules, producing hydrogen. This process is performed at room temperature and under ambient pressure, making it a promising route towards a renewable energy-based economy.
Artificial intelligence is being incorporated into a first-year mass communications class at Lehigh University, equipping students with skills to adapt and shape AI. The new approach aims to prepare students to report on AI's impact on journalism and help shape its future.
Researchers found that female leaders with strong interpersonal skills, particularly in emotional management, can build and restore trust more effectively than male leaders in crises with predictable outcomes. This 'female leadership trust advantage' leads to better crisis resolution and increased investment from employees.
Researcher's groundbreaking contributions to structural health monitoring and life-cycle assessment have transformed policies and practices in building infrastructure components. His work has saved time, money, and likely lives, while advancing sustainable development and resilience.
Scientists at Lehigh University and Korea Institute of Science and Technology have created a reversible super-glue-like material that can easily come unglued. The new hydrogel-based adhesive combines benefits of both liquid and dry adhesives, allowing for strong adhesion on flat and rough surfaces.
Researchers from Lehigh University used materials informatics to predict a class of high-entropy alloys with superior mechanical properties. The new method, combined with experimental tools like electron microscopy, revealed alloys with hardness values exceeding initial expectations by a factor of 2.
Lehigh University engineers Sydney Yang, Michelle Kent, Shira Morosohk, and Daniella Fodera have been awarded the National Science Foundation's Graduate Research Fellowship. The award recognizes their research potential in STEM fields and provides financial stability during graduate studies.
A team of researchers aims to create a free-to-use website that calculates intervention effects for single-case designs, enabling teachers and practitioners to monitor individual student improvement. The project seeks to develop a quantitatively rigorous measure of treatment effects without burdening applied researchers.
A team of Lehigh University researchers characterized the shear-induced extensional response of vWF, revealing new insights into the protein's biomechanical behavior. They also developed a coarse-grained model to explain the protein's flow-induced properties, shedding light on its role in blood clotting and platelet function.
Experiments using Hellman's Real Mayonnaise and accelerated conditions confirm the instability of elastic-plastic material is a function of initial conditions. The study provides new insights into the dynamics of materials in extreme environments, relevant to inertial confinement fusion.