Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Engineering (21760)
- Civil and Environmental Engineering (7867)
- Physical Sciences and Mathematics (7287)
- Electrical and Computer Engineering (5128)
- Geotechnical Engineering (3713)
-
- Physics (2388)
- Chemical Engineering (2339)
- Materials Science and Engineering (2228)
- Mechanical Engineering (2224)
- Structural Engineering (2016)
- Computer Sciences (1925)
- Chemistry (1552)
- Mining Engineering (1185)
- Aerospace Engineering (1156)
- Civil Engineering (1047)
- Operations Research, Systems Engineering and Industrial Engineering (845)
- Earth Sciences (775)
- Social and Behavioral Sciences (774)
- Architecture (761)
- Metallurgy (744)
- Architectural Engineering (737)
- Biochemical and Biomolecular Engineering (691)
- Geology (676)
- Ceramic Materials (639)
- Mathematics (631)
- Petroleum Engineering (604)
- Statistics and Probability (533)
- Life Sciences (491)
- Biology (393)
- Geological Engineering (368)
- Keyword
-
- Electromagnetic Interference (106)
- Machine learning (100)
- Electromagnetic Compatibility (97)
- Additive manufacturing (90)
- Neurocontrollers (89)
-
- Optimal Control (86)
- Optimization (82)
- Rheology (74)
- Neural Nets (69)
- Neural Networks (67)
- Simulation (66)
- Deep learning (65)
- Computer Simulation (64)
- Machine Learning (63)
- Mathematical Models (63)
- Ionization (60)
- Printed Circuit Boards (59)
- Printed Circuits (59)
- Stability (59)
- Additive Manufacturing (58)
- Finite Difference Time-Domain Analysis (58)
- Power System Control (58)
- Modeling (54)
- Hydrogen (53)
- Microstructure (52)
- EMI (51)
- Nonlinear Control Systems (51)
- Adaptive Control (49)
- Control System Synthesis (48)
- Power Electronics (47)
- Publication Year
- Publication
-
- Masters Theses (4182)
- Electrical and Computer Engineering Faculty Research & Creative Works (3501)
- The Missouri Miner Newspaper (3345)
- Doctoral Dissertations (2102)
- International Conference on Case Histories in Geotechnical Engineering (2057)
-
- Physics Faculty Research & Creative Works (1972)
- International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics (1566)
- Mechanical and Aerospace Engineering Faculty Research & Creative Works (1296)
- Civil, Architectural and Environmental Engineering Faculty Research & Creative Works (1275)
- CCFSS Proceedings of International Specialty Conference on Cold-Formed Steel Structures (1971 - 2018) (1036)
- Materials Science and Engineering Faculty Research & Creative Works (1028)
- Chemistry Faculty Research & Creative Works (950)
- Computer Science Faculty Research & Creative Works (911)
- Chemical and Biochemical Engineering Faculty Research & Creative Works (853)
- Geosciences and Geological and Petroleum Engineering Faculty Research & Creative Works (524)
- Engineering Management and Systems Engineering Faculty Research & Creative Works (492)
- Mathematics and Statistics Faculty Research & Creative Works (470)
- UMR-MEC Conference on Energy / UMR-DNR Conference on Energy (442)
- Missouri S&T Magazine (429)
- Plant Identification in a Combined-Imbalanced Leaf Dataset -- Images (374)
- Bachelors Theses (358)
- Professional Degree Theses (338)
- Mining Engineering Faculty Research & Creative Works (315)
- Undergraduate Research Conference at Missouri S&T (281)
- Biological Sciences Faculty Research & Creative Works (270)
- Opportunities for Undergraduate Research Experience Program (OURE) (255)
- American Iron and Steel Institute (AISI) Specifications, Standards, Manuals and Research Reports (1946 - present) (237)
- CCFSS Library (1939 - present) (234)
- Computer Science Technical Reports (197)
- Minutes & Agendas (159)
- Publication Type
- File Type
Articles 6601 - 6630 of 33648
Full-Text Articles in Entire DC Network
Preformed Partial Gel Injection Chased By Low-Salinity Waterflooding In Fractured Carbonate Cores, Ali K. Alhuraishawy, Baojun Bai, Mingzhen Wei, Abdullah Almansour
Preformed Partial Gel Injection Chased By Low-Salinity Waterflooding In Fractured Carbonate Cores, Ali K. Alhuraishawy, Baojun Bai, Mingzhen Wei, Abdullah Almansour
Geosciences and Geological and Petroleum Engineering Faculty Research & Creative Works
Fractures and oil-wet conditions significantly limit oil recovery in carbonate reservoirs. Gel treatment has been applied in injector wells to modify the prevailing reservoir streamlines and significantly reduce fracture permeability, whereas low-salinity waterflooding has been applied experimentally to modify rock wettability toward water-wet for improved oil recovery. However, both processes have limitations that cannot be resolved using a single method. The objective of this study was to test whether low-salinity water could enable gel particles to move deeply into fractures to efficiently increase oil recovery and control water production. A semitransparent fracture model of carbonate cores and acrylic plates was …
Review Of Fiber Optic Sensors For Structural Fire Engineering, Yi Bao, Ying Huang, Matthew S. Hoehler, Genda Chen
Review Of Fiber Optic Sensors For Structural Fire Engineering, Yi Bao, Ying Huang, Matthew S. Hoehler, Genda Chen
Civil, Architectural and Environmental Engineering Faculty Research & Creative Works
Reliable and accurate measurements of temperature and strain in structures subjected to fire can be difficult to obtain using traditional sensing technologies based on electrical signals. Fiber optic sensors, which are based on light signals, solve many of the problems of monitoring structures in high temperature environments; however, they present their own challenges. This paper, which is intended for structural engineers new to fiber optic sensors, reviews various fiber optic sensors that have been used to make measurements in structure fires, including the sensing principles, fabrication, key characteristics, and recently-reported applications. Three categories of fiber optic sensors are reviewed: Grating-based …
Raman Spectroscopy As A Predictive Tool For Monitoring Osteoporosis Therapy In A Rat Model Of Postmenopausal Osteoporosis, J. Renwick Beattie, Antonia Sophocleous, M. Clare Caraher, Olive O'Driscoll, Niamh M. Cummins, Steven E.J. Bell, Mark R. Towler, Alireza Rahimnejad Yazdi, Stuart H. Ralston, Aymen I. Idris
Raman Spectroscopy As A Predictive Tool For Monitoring Osteoporosis Therapy In A Rat Model Of Postmenopausal Osteoporosis, J. Renwick Beattie, Antonia Sophocleous, M. Clare Caraher, Olive O'Driscoll, Niamh M. Cummins, Steven E.J. Bell, Mark R. Towler, Alireza Rahimnejad Yazdi, Stuart H. Ralston, Aymen I. Idris
Chemical and Biochemical Engineering Faculty Research & Creative Works
Pharmacological therapy of osteoporosis reduces bone loss and risk of fracture in patients. Modulation of bone mineral density cannot explain all effects. Other aspects of bone quality affecting fragility and ways to monitor them need to be better understood. Keratinous tissue acts as surrogate marker for bone protein deterioration caused by oestrogen deficiency in rats. Ovariectomised rats were treated with alendronate (ALN), parathyroid hormone (PTH) or estrogen (E2). MicroCT assessed macro structural changes. Raman spectroscopy assessed biochemical changes. Micro CT confirmed that all treatments prevented ovariectomy-induced macro structural bone loss in rats. PTH induced macro structural changes unrelated to ovariectomy. …
Optimization Of The Catalytic Performance Of Pd/Fe 3 O 4 Nanoparticles Prepared Via Microwave-Assisted Synthesis For Pharmaceutical And Catalysis Applications, Hany A. Elazab, Tamer T. El-Idreesy
Optimization Of The Catalytic Performance Of Pd/Fe 3 O 4 Nanoparticles Prepared Via Microwave-Assisted Synthesis For Pharmaceutical And Catalysis Applications, Hany A. Elazab, Tamer T. El-Idreesy
Chemical and Biochemical Engineering Faculty Research & Creative Works
Microwave assisted synthesis technique was used to prepare palladium supported on iron oxide nanoparticles. The advantage of using microwave irradiation as a synthetic tool is due to its unique features as a one step, simple, versatile, and rapid process. The reactants are added simply at room temperature without using high-temperature injection. Hydrazine hydrate was added by the following ratios (0.1, 0.2, 0.3, 0.4, 0.6, 0.8, 1, 1.6, and 3) ml to the different prepared samples at room temperature in order to investigate its effect on the catalytic performance of the prepared catalysts. The prepared catalyst could be used as an …
Exploring The Effects Of Electrospun Fiber Surface Nanotopography On Neurite Outgrowth And Branching In Neuron Cultures, Anthony R. D'Amato, Devan L. Puhl, Alexis M. Ziemba, Christopher D.L. Johnson, Janneke Doedee, Jonathan Bao, Ryan J. Gilbert
Exploring The Effects Of Electrospun Fiber Surface Nanotopography On Neurite Outgrowth And Branching In Neuron Cultures, Anthony R. D'Amato, Devan L. Puhl, Alexis M. Ziemba, Christopher D.L. Johnson, Janneke Doedee, Jonathan Bao, Ryan J. Gilbert
Chemical and Biochemical Engineering Faculty Research & Creative Works
Three aligned, electro spun fiber scaffolds with unique surface features were created from poly-L-lactic acid (PLLA). Fibers without surface nano topography (smooth fibers), fibers with surface divots (shallow pits), and fibers with surface pits (deeper pits) were fabricated, and fiber alignment, diameter, and density were characterized using scanning electron microscopy (SEM). Whole dorsal root ganglia (DRG) were isolated from rats and placed onto uncoated fibers or fibers coated with laminin. On uncoated fibers, neurite outgrowth was restricted by fibers displaying devoted or pitted nano topography when compared to neurite outgrowth on smooth fibers. However, neurites extending from whole DRG cultured …
Constraining The P-Mode-G-Mode Tidal Instability With Gw170817, B. P. Abbott, R. Abbott, T. D. Abbott, Marco Cavaglia, For Full List Of Authors, See Publisher's Website.
Constraining The P-Mode-G-Mode Tidal Instability With Gw170817, B. P. Abbott, R. Abbott, T. D. Abbott, Marco Cavaglia, For Full List Of Authors, See Publisher's Website.
Physics Faculty Research & Creative Works
We analyze the impact of a proposed tidal instability coupling p modes and g modes within neutron stars on GW170817. This nonresonant instability transfers energy from the orbit of the binary to internal modes of the stars, accelerating the gravitational-wave driven inspiral. We model the impact of this instability on the phasing of the gravitational wave signal using three parameters per star: An overall amplitude, a saturation frequency, and a spectral index. Incorporating these additional parameters, we compute the Bayes factor (ln Bpg!pg) comparing our p-g model to a standard one. We find that the observed signal …
Fractional Brownian Motion In A Finite Interval: Correlations Effect Depletion Or Accretion Zones Of Particles Near Boundaries, T. Guggenberger, G. Pagnini, Thomas Vojta, R. Metzler
Fractional Brownian Motion In A Finite Interval: Correlations Effect Depletion Or Accretion Zones Of Particles Near Boundaries, T. Guggenberger, G. Pagnini, Thomas Vojta, R. Metzler
Physics Faculty Research & Creative Works
Fractional Brownian motion (FBM) is a Gaussian stochastic process with stationary, long-time correlated increments and is frequently used to model anomalous diffusion processes. We study numerically FBM confined to a finite interval with reflecting boundary conditions. The probability density function of this reflected FBM at long times converges to a stationary distribution showing distinct deviations from the fully flat distribution of amplitude 1/L in an interval of length L found for reflected normal Brownian motion. While for superdiffusion, corresponding to a mean squared displacement (MSD) ⟨X2(t)⟩ ≃ tα with 1 < α < 2, the probability density function is lowered in the centre of the interval and rises towards the boundaries, for subdiffusion (0 < α < 1) this behaviour is reversed and the particle density is depleted close to the boundaries. The MSD in these cases at long times converges to a stationary value, which is, remarkably, monotonically increasing with the anomalous diffusion exponent α. Our a priori surprising results may have interesting …
Large-Strain Strength Of Polymer-Modified Kaolinite And Fly Ash-Kaolinite Mixtures, Xin Kang, Junnan Cao, Bate Bate
Large-Strain Strength Of Polymer-Modified Kaolinite And Fly Ash-Kaolinite Mixtures, Xin Kang, Junnan Cao, Bate Bate
Civil, Architectural and Environmental Engineering Faculty Research & Creative Works
Polymers have gained gradual attention in soil stabilization as a sustainable alternative to inorganic counterparts such as cement. However, the effects of polymers on the strength of soils and soil-waste mixtures are still unclear. Meanwhile, waste recycling has been important in fostering a sustainable environment in recent decades. To solve the deficiency in knowledge, large-strain strength of polymer-modified kaolinite (KA) and Class-F fly ash-kaolinite mixtures (FAKAs) was investigated with isotropically consolidated undrained triaxial compression tests. Both synthetic polymer (polyethylene oxide, PEO) and naturally occurring biopolymers (chitosan and xanthan gum) were used. An interface model was also proposed to account for …
Recent Advances On Carrier And Exciton Self-Trapping In Strontium Titanate: Understanding The Luminescence Emissions, Miguel L. Crespillo, Joseph T. Graham, Fernando Agullo-Lopez, Yanwen Zhang, William J. Weber
Recent Advances On Carrier And Exciton Self-Trapping In Strontium Titanate: Understanding The Luminescence Emissions, Miguel L. Crespillo, Joseph T. Graham, Fernando Agullo-Lopez, Yanwen Zhang, William J. Weber
Nuclear Engineering and Radiation Science Faculty Research & Creative Works
An up-to-date review on recent results for self-trapping of free electrons and holes, as well as excitons, in strontium titanate (STO), which gives rise to small polarons and self-trapped excitons (STEs) is presented. Special attention is paid to the role of carrier and exciton self-trapping on the luminescence emissions under a variety of excitation sources with special emphasis on experiments with laser pulses and energetic ion-beams. In spite of the extensive research effort, a definitive identification of such localized states, as well as a suitable understanding of their operative light emission mechanisms, has remained lacking or controversial. However, promising advances …
A Framework For Process Inspection Of Metal Additive Manufacturing, Chih-Kun Cheng, Frank W. Liou, Yi-Chien Cheng, Sheng-Chih Shen
A Framework For Process Inspection Of Metal Additive Manufacturing, Chih-Kun Cheng, Frank W. Liou, Yi-Chien Cheng, Sheng-Chih Shen
Mechanical and Aerospace Engineering Faculty Research & Creative Works
In this paper, we propose a process inspection framework for metal additive manufacturing (AM) processes. AM, also known as 3D printing, is the process of joining materials to make objects on the basis of 3D model data and is envisioned to play a strategic role in maintaining economic and scientific dominance. Different from conventional manufacturing methods, the AM process is a point-by-point and layer-by-layer manufacturing. Thus, there are many opportunities to generate a process error that can cause quality issues in an AM part. A systematic AM process inspection is needed to yield acceptable performance of the part. The critical …
Low Energy Electron And Positron Impact Differential Cross Sections For The Ionization Of Water Molecules In The Coplanar And Perpendicular Kinematics, P. Singh, G. Purohit, C. Champion, D. Sebilleau, Don H. Madison
Low Energy Electron And Positron Impact Differential Cross Sections For The Ionization Of Water Molecules In The Coplanar And Perpendicular Kinematics, P. Singh, G. Purohit, C. Champion, D. Sebilleau, Don H. Madison
Physics Faculty Research & Creative Works
We report here triply differential cross sections (TDCSs) for 81 eV electron and positron-impact ionization of the combined (1b1 + 3a1 ) orbitals of the water molecule by using the second-order distorted wave Born approximation (DWBA2) for ejection electron and positron energies of 5 eV and 10 eV and different momentum transfer conditions. The electron-impact TDCS will be compared with the experimental data measured by Ren et al. [Phys. Rev. A 95, 022701 (2017)] and with the molecular 3-body distorted wave (M3DW) approximation results in the scattering plane as well as the perpendicular plane. The DWBA2 results are …
Graphene Based Functional Devices: A Short Review, Rong Wang, Xin Gang Ren, Ze Yan, Li (Lijun) Jun Jiang, Wei E.I. Sha, Guang Cun Shan
Graphene Based Functional Devices: A Short Review, Rong Wang, Xin Gang Ren, Ze Yan, Li (Lijun) Jun Jiang, Wei E.I. Sha, Guang Cun Shan
Electrical and Computer Engineering Faculty Research & Creative Works
Graphene is an ideal 2D material system bridging electronic and photonic devices. It also breaks the fundamental speed and size limits by electronics and photonics, respectively. Graphene offers multiple functions of signal transmission, emission, modulation, and detection in a broad band, high speed, compact size, and low loss. Here, we have a brief view of graphene based functional devices at microwave, terahertz, and optical frequencies. Their fundamental physics and computational models were discussed as well.
Fluorine-Containing Oxidizers For Metal Fuels In Energetic Formulations, Siva Kumar Valluri, Mirko Schoenitz, Edward Dreizin
Fluorine-Containing Oxidizers For Metal Fuels In Energetic Formulations, Siva Kumar Valluri, Mirko Schoenitz, Edward Dreizin
Mechanical and Aerospace Engineering Faculty Research & Creative Works
Fluorine containing oxidizers, primarily polymers, are extensively used in pyrotechnic compositions. Fluorinated oxidizers are less explored for metalized propellants and explosives despite a potential advantage of substantial heat release combined with gaseous combustion products. This review summarizes different types of fluorinated oxidizers used in energetic formulations or of potential interest for such systems, including gases, polymers, and inorganic compounds. Types of energetic formulations employing metals and fluoropolymers are discussed in more detail, including methods used to prepare composites and resulting salient features of the obtained materials. Laboratory experiments characterizing such materials, in particular, electron microscopy and thermal analysis, are discussed, …
Control Upstream Austenite Grain Coarsening During Thin Slab Casting Direct Rolling (Tscdr) Process, Tihe Zhou, Ronald J. O'Malley, Hatem S. Zurob, Mani Subramanian, San-Hyun Cho, Peng Zhang
Control Upstream Austenite Grain Coarsening During Thin Slab Casting Direct Rolling (Tscdr) Process, Tihe Zhou, Ronald J. O'Malley, Hatem S. Zurob, Mani Subramanian, San-Hyun Cho, Peng Zhang
Materials Science and Engineering Faculty Research & Creative Works
Thin-slab cast direct-rolling (TSCDR) has become a major process for flat-rolled production. However, the elimination of slab reheating and limited number of thermomechanical deformation passes leave fewer opportunities for austenite grain refinement, resulting in some large grains persisting in the final microstructure. In order to achieve excellent ductile to brittle transition temperature (DBTT) and drop weight tear test (DWTT) properties in thicker gauge high-strength low-alloy products, it is necessary to control austenite grain coarsening prior to the onset of thermomechanical processing. This contribution proposes a suite of methods to refine the austenite grain from both theoretical and practical perspectives, including: …
Infinite-Randomness Fixed Point Of The Quantum Superconductor-Metal Transitions In Amorphous Thin Films, Nicholas A. Lewellyn, Ilana M. Percher, J. J. Nelson, Javier Garcia-Barriocanal, Irina Volotsenko, Aviad Frydman, Thomas Vojta, Allen M. Goldman
Infinite-Randomness Fixed Point Of The Quantum Superconductor-Metal Transitions In Amorphous Thin Films, Nicholas A. Lewellyn, Ilana M. Percher, J. J. Nelson, Javier Garcia-Barriocanal, Irina Volotsenko, Aviad Frydman, Thomas Vojta, Allen M. Goldman
Physics Faculty Research & Creative Works
The magnetic-field-tuned quantum superconductor-insulator transitions of disordered amorphous indium oxide films are a paradigm in the study of quantum phase transitions and exhibit power-law scaling behavior. For superconducting indium oxide films with low disorder, such as the ones reported on here, the high-field state appears to be a quantum-corrected metal. Resistance data across the superconductor-metal transition in these films are shown here to obey an activated scaling form appropriate to a quantum phase transition controlled by an infinite-randomness fixed point in the universality class of the random transverse-field Ising model. Collapse of the field-dependent resistance vs temperature data is obtained …
The Bridge Newsletter Spring 2019, Missouri University Of Science And Technology
The Bridge Newsletter Spring 2019, Missouri University Of Science And Technology
The Bridge Newsletter
-Building better aerogels
-Bridge repair needs
-Incoming ASCE President speaks
Radical Scavenging Of Poly(Methyl Methacrylate) Bone Cement By Rifampin And Clinically Relevant Properties Of The Rifampin-Loaded Cement, G. A. Funk, E. M. Menuey, K. A. Cole, Thomas P. Schuman, K. V. Kilway, T. E. Mciff
Radical Scavenging Of Poly(Methyl Methacrylate) Bone Cement By Rifampin And Clinically Relevant Properties Of The Rifampin-Loaded Cement, G. A. Funk, E. M. Menuey, K. A. Cole, Thomas P. Schuman, K. V. Kilway, T. E. Mciff
Chemistry Faculty Research & Creative Works
Objectives: The objective of this study was to characterize the effect of rifampin incorporation into poly(methyl methacrylate) (pMMA) bone cement. While incompatibilities between the two materials have been previously noted, we sought to identify and quantify the cause of rifampin's effects, including alterations in curing properties, mechanical strength, and residual monomer content.
Methods: Four cement groups were prepared using commercial pMMA bone cement: a control; one with 1 g of rifampin; and one each with equimolar amounts of ascorbic acid or hydroquinone relative to the amount of rifampin added. The handling properties, setting time, exothermic output, and monomer loss were …
Micron-Sized Spinel Crystals In High Level Waste Glass Compositions: Determination Of Crystal Size And Crystal Fraction, C. (Charmayne) E. Lonergan, K. Akinloye-Brown, J. Rice, V. Gervasio, N. Canfield, M. J. Schweiger, J. D. Vienna
Micron-Sized Spinel Crystals In High Level Waste Glass Compositions: Determination Of Crystal Size And Crystal Fraction, C. (Charmayne) E. Lonergan, K. Akinloye-Brown, J. Rice, V. Gervasio, N. Canfield, M. J. Schweiger, J. D. Vienna
Materials Science and Engineering Faculty Research & Creative Works
The compositions utilized for immobilization of high-level nuclear wastes (HLW) are controlled using glass property models to avoid the deleterious effects of crystallization in the high-level waste (HLW) vitrification melters. The type and size of the crystals that precipitate during melter operations (typically at 1150 °C) and idling (∼1000 °C) are significantly impacted by glass composition and thermal history. This study was conducted to measure the impact of melt composition and heat treatment temperature on crystal size and fraction. A matrix of 31 multi-component glasses canvasing the expected Hanford HLW compositional space was developed and the glasses fabricated, and heat …
Scholars' Mine Quick Facts January 2019, Nancy S. Krost
Scholars' Mine Quick Facts January 2019, Nancy S. Krost
Scholars’ Mine Statistics
Scholars' Mine Quick Facts are monthly reports of downloads, page hits, and other information about works in the institutional repository of Missouri S&T. A map with downloads by region is also included.
The Missouri Miner, January 30, 2019
The Missouri Miner, January 30, 2019
The Missouri Miner Newspaper
No abstract provided.
Huebner Named Cafe Chair, Missouri University Of Science And Technology
Huebner Named Cafe Chair, Missouri University Of Science And Technology
CAFE Announcements
No abstract provided.
Faculty Senate Minutes January 24, 2019, Missouri University Of Science And Technology Faculty Senate
Faculty Senate Minutes January 24, 2019, Missouri University Of Science And Technology Faculty Senate
Minutes & Agendas
No abstract provided.
The Effect Of Electrospun Fiber Diameter On Astrocyte-Mediated Neurite Guidance And Protection, Christopher D.L. Johnson, Jonathan M. Zuidema, Kathryn R. Kearns, Alianna B. Maguire, Gregory P. Desmond, Deanna M. Thompson, Ryan J. Gilbert
The Effect Of Electrospun Fiber Diameter On Astrocyte-Mediated Neurite Guidance And Protection, Christopher D.L. Johnson, Jonathan M. Zuidema, Kathryn R. Kearns, Alianna B. Maguire, Gregory P. Desmond, Deanna M. Thompson, Ryan J. Gilbert
Chemical and Biochemical Engineering Faculty Research & Creative Works
The topography of electro spun fiber scaffolds modifies astrocytes toward in vivo-like morphologies and behaviors. However, little is known about how electro spun fiber diameter influences astrocyte behavior. In this work, aligned fibers with two distinct nanoscale fiber diameters (808 and 386 nm) were prepared, and the astrocyte response was measured over time. Astrocytes on the large diameter fibers showed significantly increased elongation as early as 2 h after seeding and remained significantly more elongated for up to 4 days compared to those on small diameter fibers. Astrocytes extending along larger diameter fibers were better equipped to support long neurite …
Parlech: Parallel Long-Read Error Correction With Hadoop, Arghya Kusum Das, Kisung Lee, Seung Jong Park
Parlech: Parallel Long-Read Error Correction With Hadoop, Arghya Kusum Das, Kisung Lee, Seung Jong Park
Computer Science Faculty Research & Creative Works
Long-read sequencing is emerging as a promising sequencing technology because it can tackle the short length limitation of second-generation sequencing, which has dominated the sequencing market in past years. However, it has substantially higher error rates compared to short-read sequencing (e.g., 13% vs. 0.1%), and its sequencing cost per base is typically more expensive than that of short-read sequencing. To address these limitations, we present a distributed hybrid error correction framework, called ParLECH, that is scalable and cost-efficient for PacBio long reads. For correcting the errors in the long reads, ParLECH utilizes the Illumina short reads that have the low …
Random Subspace Projection For Predicting Biogeographical Ancestry, Tanjin Toma, Tayo Olufemi-Ajayi, Jeremy Dawson, Donald Adjeroh
Random Subspace Projection For Predicting Biogeographical Ancestry, Tanjin Toma, Tayo Olufemi-Ajayi, Jeremy Dawson, Donald Adjeroh
Electrical and Computer Engineering Faculty Research & Creative Works
Human biogeographical ancestry estimation using genomic information is an important problem with applications in population stratification, admixture mapping, forensic ancestry inference, and in healthcare. Various studies have proposed panels of ancestry informative single nucleotide polymorphisms (SNPs) for distinguishing between widely separated continental populations. There has been limited investigation on identifying SNP panels for sub-continental ancestry prediction, especially given the difficult challenge of identifying SNP markers to distinguish closely associated sub-populations, for instance, within a continent. In this study, we propose an ancestry informative SNP selection algorithm exploiting the concept of random subspace projection using supervised learning. The proposed approach identifies …
Influence Of Process-Induced Shrinkage And Annealing On The Thermomechanical Behavior Of Glass Fiber-Reinforced Polypropylene, M. Mulle, H. Wafai, A. Yudhanto, G. Lubineau, R. Yaldiz, W. Schijve, N. Verghese
Influence Of Process-Induced Shrinkage And Annealing On The Thermomechanical Behavior Of Glass Fiber-Reinforced Polypropylene, M. Mulle, H. Wafai, A. Yudhanto, G. Lubineau, R. Yaldiz, W. Schijve, N. Verghese
Mechanical and Aerospace Engineering Faculty Research & Creative Works
We investigate the influence of process-induced shrinkage and subsequent annealing on the thermomechanical behavior of unidirectional laminates made of continuous glass fiber-reinforced polypropylene (GFPP). We use two different industrial lamination processes: static hot-presses (SHP), and double-belt press (DBP) that are characterized by different cooling rates and pressure levels and most importantly, by the use of a closed mold in the case of SHP manufacturing. We measure the longitudinal and transverse shrinkage during the manufacturing and annealing processes using embedded fiber Bragg gratings (FBGs). The SHP molding reveals much lower induced shrinkage in GFPP as compared to the DBP process, although …
Sea Level Rise And Land Subsidence In Coastal Louisiana: Forecasting, Mapping And Identification Of At-Risk Transportation Infrastructure, Sanjay Tewari, Francis Manning, Wesley Palmer
Sea Level Rise And Land Subsidence In Coastal Louisiana: Forecasting, Mapping And Identification Of At-Risk Transportation Infrastructure, Sanjay Tewari, Francis Manning, Wesley Palmer
Civil, Architectural and Environmental Engineering Faculty Research & Creative Works
The coast of Louisiana is under threat because of sea level rise and land subsidence. Sea water is encroaching deeper inland and as a result Louisiana is losing land at an alarming rate. The combined effect of sea level rise and land subsidence is variable spatially. This paper focuses on this combined effect in identifying the transportation infrastructure that is at risk of getting affected by the seawater inundation of the land.
This paper attempts to account for land elevation data monitored continuously at various locations along the coast of Louisiana and combining it with local sea level rise to …
Templated Macroporous Polyethylene Glycol Hydrogels For Spheroid And Aggregate Cell Culture, Mozhdeh Imaninezhad, Lindsay Hill, Grant Kolar, Kyle Vogt, Silviya Petrova Zustiak
Templated Macroporous Polyethylene Glycol Hydrogels For Spheroid And Aggregate Cell Culture, Mozhdeh Imaninezhad, Lindsay Hill, Grant Kolar, Kyle Vogt, Silviya Petrova Zustiak
Biological Sciences Faculty Research & Creative Works
Macroporous cell-laden hydrogels have recently gained recognition for a wide range of biomedical and bioengineering applications. There are various approaches to create porosity in hydrogels, including lyophilization or foam formation. However, many do not allow a precise control over pore size or are not compatible with in situ cell encapsulation. Here, we developed novel templated macroporous hydrogels by encapsulating uniform degradable hydrogel microspheres produced via microfluidics into a hydrogel slab. The microspheres degraded completely leaving macropores behind. Microsphere degradation was dependent on the incubation medium, microsphere size, microsphere confinement in the hydrogel as well as cell encapsulation. Uniquely, the degradable …
Electrical/Chemical Thruster Using The Same Monopropellant And Method, Steven P. Berg, Joshua L. Rovey
Electrical/Chemical Thruster Using The Same Monopropellant And Method, Steven P. Berg, Joshua L. Rovey
Mechanical and Aerospace Engineering Faculty Research & Creative Works
A thruster operable in a chemical mode or in an electrospray mode using the same liquid monopropellant for operation in both modes is described having a multiplicity of a microthrusters made of a catalytic material having a bore therethrough, where, when operated in the chemical mode, the microthrusters are heated to decompose the monopropellant the monopropellant flows therethrough to generate relatively high thrust. An extractor is positioned downstream of the outlet ends of the microthrusters, such that when the system is operated in its electrospray mode the flowrate of the monopropellant through the microthrusters is substantially lower than in the …
Near-Field Mean Flow Dynamics Of A Cylindrical Canopy Patch Suspended In Deep Water, Jian Zhou, Subhas K. Venayagamoorthy
Near-Field Mean Flow Dynamics Of A Cylindrical Canopy Patch Suspended In Deep Water, Jian Zhou, Subhas K. Venayagamoorthy
Civil, Architectural and Environmental Engineering Faculty Research & Creative Works
The time-averaged flow dynamics of a suspended cylindrical canopy patch with a bulk diameter of D is investigated using large-eddy simulations (LES). The patch consists of Nc constituent solid circular cylinders of height h and diameter d, mimicking patchy vegetation suspended in deep water (H/h ≫ 1, where H is the total flow depth). After validation against published data, LES of a uniform incident flow impinging on the canopy patch was conducted to study the effects of canopy density (0.16 ≤ φ = Nc(d/D)2 ≤ 1, by varying Nc) and bulk aspect ratio (0.25 ≤ AR = h/D ≤ …