Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Atomic, Molecular and Optical Physics (16)
- Engineering Physics (13)
- Condensed Matter Physics (12)
- Engineering (6)
- Fluid Dynamics (6)
-
- Optics (6)
- Medicine and Health Sciences (4)
- Astrophysics and Astronomy (3)
- Statistics and Probability (3)
- Applied Mathematics (2)
- Applied Statistics (2)
- Arts and Humanities (2)
- Education (2)
- Electrical and Computer Engineering (2)
- Electromagnetics and Photonics (2)
- Environmental Sciences (2)
- Mechanical Engineering (2)
- Ordinary Differential Equations and Applied Dynamics (2)
- Other Astrophysics and Astronomy (2)
- Quantum Physics (2)
- Science and Mathematics Education (2)
- Air and Space Law (1)
- Analysis (1)
- Analytical, Diagnostic and Therapeutic Techniques and Equipment (1)
- Applied Mechanics (1)
- Art and Design (1)
- Biology (1)
- Institution
-
- University of Nebraska - Lincoln (17)
- Prairie View A&M University (12)
- New Jersey Institute of Technology (5)
- The Texas Medical Center Library (5)
- University of Dayton (4)
-
- University of Alabama in Huntsville (3)
- California Polytechnic State University, San Luis Obispo (2)
- City University of New York (CUNY) (2)
- Georgia Academy of Science (2)
- LSU New Orleans (2)
- University of Arkansas, Fayetteville (2)
- Chapman University (1)
- Claremont Colleges (1)
- DePaul University (1)
- Embry-Riddle Aeronautical University (1)
- Gettysburg College (1)
- Louisiana Tech University (1)
- Merrimack College (1)
- Purdue University (1)
- Rollins College (1)
- University of South Florida (1)
- Virginia Commonwealth University (1)
- Washington University in St. Louis (1)
- Keyword
-
- Cosmology (3)
- Geometry (2)
- Graphene (2)
- Hyperbolic geometric (2)
- Isotropize (2)
-
- Porous medium (2)
- Pure sciences (2)
- 3D dosimetry (1)
- Acoustic absorption (1)
- Acoustic transmission (1)
- Acoustical effects (1)
- Art (1)
- Art-science (1)
- Atmospheric turbulence (1)
- Atoms & subatomic particle (1)
- Back-to-back Schottky barrier (1)
- Battery Materials (1)
- Beaufort (1)
- Bianchi type VI0 space-time (1)
- Bianchi type-I (1)
- Bianchi type-II (1)
- Bimetric gravitational theory (1)
- Biological effects (1)
- Boundedness (1)
- Brownian motion (1)
- Chemical reaction (1)
- Chemistry of electrolysis (1)
- Collective structures (1)
- Community detection (1)
- Computational physics (1)
- Publication
-
- Applications and Applied Mathematics: An International Journal (AAM) (12)
- Nebraska Center for Materials and Nanoscience: Faculty Publications (6)
- Dissertations and Theses (Open Access) (5)
- Dissertations (3)
- Physics Faculty Publications (3)
-
- Timothy J. Gay Publications (3)
- Dissertations, Theses, and Capstone Projects (2)
- Electro-Optics and Photonics Faculty Publications (2)
- Georgia Journal of Science (2)
- LSU New Orleans Theses and Dissertations (2)
- Peter Dowben Publications (2)
- Robert Streubel Papers (2)
- STAR Program Research Presentations (2)
- Theses (2)
- Von Braun Symposium Student Posters (2)
- 2017 Academic High Altitude Conference (1)
- Alexei Gruverman Publications (1)
- Doctoral Dissertations (1)
- Graduate Theses and Dissertations (1)
- Mechanical Engineering Undergraduate Honors Theses (1)
- Open Access Dissertations (1)
- Philosophy Faculty Articles and Research (1)
- Physics and Astronomy Faculty Publications (1)
- Ralph Skomski Publications (1)
- Space Traffic Management Conference (1)
- Student-Faculty Collaborative Research Publications (1)
- Summer Community of Scholars Posters (RCEU and HCR Combined Programs) (1)
- Sy-Hwang Liou Publications (1)
- The Transdisciplinary STEAM+ Journal (1)
- Theses and Dissertations (1)
- Publication Type
Articles 61 - 68 of 68
Full-Text Articles in Other Physics
Calculating The Observable Properties Of Mass Accreting Black Holes, Heather Lee
Calculating The Observable Properties Of Mass Accreting Black Holes, Heather Lee
Undergraduate Research Symposium Posters
My goal is to generalize Chandrasekhar’s formulas to include partial Rayleigh Scattering. In my summer research, I successfully recalculated key tables and solutions from his book and I am working in generalizing his results for use in an infinitely deep electron atmosphere. Here, I will summarize how Chandrasekhar derived his formulas and how to potentially generalize them to include absorption.
Characterizing Crop Photomultiplier Tube Behavior At 1000 Volts, Zachary T. Smith
Characterizing Crop Photomultiplier Tube Behavior At 1000 Volts, Zachary T. Smith
UCARE: Research Products
In an effort to prolong the lifetime of their Photomultiplier tubes (PMTs), the Cosmic Ray Observatory Project (CROP) made the decision to begin operating the PMTs at an operating voltage of 1000 Volts. The aim of this project was to characterize the fundamental behavior of the PMTs at this operating voltage using several tests. These tests include determining the optimal threshold level of the PMTs, the PMT efficiency, and the time stability of the PMT's output.
The Power Of Electrostatics-Van De Graaff Generator, Juan G. Alonso Guzman
The Power Of Electrostatics-Van De Graaff Generator, Juan G. Alonso Guzman
Summer Community of Scholars Posters (RCEU and HCR Combined Programs)
No abstract provided.
Rewriting Magnetic Phase Change Memory By Laser Heating, John Timmerwilke, Sy-Hwang Liou, Shu Fan Cheng, Alan S. Edelstein
Rewriting Magnetic Phase Change Memory By Laser Heating, John Timmerwilke, Sy-Hwang Liou, Shu Fan Cheng, Alan S. Edelstein
Sy-Hwang Liou Publications
Magnetic phase change memory (MAG PCM) consists of bits with different magnetic permeability values. The bits are read by measuring their effect on a magnetic probe field. Previously low permeability crystalline bits had been written in high permeability amorphous films of Metglas via laser heating. Here data is presented showing that by applying short laser pulses with the appropriate power to previously crystallized regions they can first be vitrified and then again crystallized. Thus, MAG PCM is rewriteable. Technical issues in processing the bits are discussed and results on thermal modeling are presented.
Anomalously Large Chiral Sensitivity In The Dissociative Electron Attachment Of 10-Iodocamphor, J. M. Dreiling, F. W. Lewis, J. D. Mills, Timothy J. Gay
Anomalously Large Chiral Sensitivity In The Dissociative Electron Attachment Of 10-Iodocamphor, J. M. Dreiling, F. W. Lewis, J. D. Mills, Timothy J. Gay
Timothy J. Gay Publications
We have studied dissociative electron attachment (DEA) between low energy (≤ 0.6 eV) longitudinally polarized electrons and gas-phase chiral targets of 3-bromocamphor (C10H15BrO), 3-iodocamphor (C10H15IO), and 10-iodocamphor. The DEA rate depends on the sign of the incident electron helicity for a given target handedness, and it varies with both the atomic number (Z) and location of the heaviest atom in the molecule. While simple dynamic mechanisms can account for the asymmetry dependence on Z, they fail to explain the large asymmetry variation with the heavy atom location.
Domain Wall Conductivity In Semiconducting Hexagonal Ferroelectric Tbmno3 Thin Films, D. J. Kim, J. G. Connell, S. S. A. Seo, Alexei Gruverman
Domain Wall Conductivity In Semiconducting Hexagonal Ferroelectric Tbmno3 Thin Films, D. J. Kim, J. G. Connell, S. S. A. Seo, Alexei Gruverman
Alexei Gruverman Publications
Although enhanced conductivity of ferroelectric domain boundaries has been found in BiFeO3 and Pb(Zr,Ti)O3 films as well as hexagonal rare-earth manganite single crystals, the mechanism of the domain wall conductivity is still under debate. Using conductive atomic force microscopy, we observe enhanced conductance at the electrically-neutral domain walls in semiconducting hexagonal ferroelectric TbMnO3 thin films where the structure and polarization direction are strongly constrained along the c-axis. This result indicates that domain wall conductivity in ferroelectric rare-earth manganites is not limited to charged domain walls. We show that the observed conductivity in the TbMnO3 films is …
Structure And Magnetism Of New Rare- Earth-Free Intermetallic Compounds: Fe3+Xco3−Xti2 (0 ≤ X ≤ 3), Balamurugan Balamurugan, Bhaskar Das, Manh Cuong Ngyuen, Xiaoshan Xu, Jie Zhang, Xiaozhe Zhang, Yaohua Liu, Ashfia Huq, Shah R. Valloppilly, Yunlong Jin, Cai-Zhuang Wang, Kai-Ming Ho, David J. Sellmyer
Structure And Magnetism Of New Rare- Earth-Free Intermetallic Compounds: Fe3+Xco3−Xti2 (0 ≤ X ≤ 3), Balamurugan Balamurugan, Bhaskar Das, Manh Cuong Ngyuen, Xiaoshan Xu, Jie Zhang, Xiaozhe Zhang, Yaohua Liu, Ashfia Huq, Shah R. Valloppilly, Yunlong Jin, Cai-Zhuang Wang, Kai-Ming Ho, David J. Sellmyer
Nebraska Center for Materials and Nanoscience: Faculty Publications
We report the fabrication of a set of new rare-earth-free magnetic compounds, which form the Fe3Co3Ti2-type hexagonal structure with P-6m2 symmetry. Neutron powder diffraction shows a significant Fe/Co anti-site mixing in the Fe3Co3Ti2 structure, which has a strong effect on the magnetocrystalline anisotropy as revealed by first-principle calculations. Increasing substitution of Fe atoms for Co in the Fe3Co3Ti2 lattice leads to the formation of Fe4Co2Ti2 , Fe5CoTi, and Fe6Ti2 with significantly improved …
Understanding And Design Of An Arduino-Based Pid Controller, Dinesh Bista
Understanding And Design Of An Arduino-Based Pid Controller, Dinesh Bista
Theses and Dissertations
This thesis presents research and design of a Proportional, Integral, and Derivative (PID) controller that uses a microcontroller (Arduino) platform. The research part discusses the structure of a PID algorithm with some motivating work already performed with the Arduino-based PID controller from various fields. An inexpensive Arduino-based PID controller designed in the laboratory to control the temperature, consists of hardware parts: Arduino UNO, thermoelectric cooler, and electronic components while the software portion includes C/C++ programming. The PID parameters for a particular controller are found manually. The role of different PID parameters is discussed with the subsequent comparison between different modes …