525 Works

32-digit values of the first 100 recurrence coefficients relative to the Fermi-Dirac weight function w(x)=1/(e^x+1) computed by the SOPQ routine sr_fermidirac(100,1,32)

Walter Gautschi
32-digit values of the first 100 recurrence coefficients relative to the Fermi-Dirac weight function w(x)=1/(e^x+1) computed by the SOPQ routine sr_fermidirac(100,1,32)

VEDA: Virtual Environment for Dynamic AFM

Daniel Kiracofe, John Melcher, Arvind Raman, Sudharsan Balasubramaniam, Steven Johnson & Shuiqing Hu
A suite of dynamic AFM simulators for air/liquid/vacuum on soft or hard samples.

DDSCAT Convert: A Target Generation Tool

John Feser & AbderRahman Sobh
Convert .obj files to DDSCAT shape files

Indiana Traffic Signal Hi Resolution Data Logger Enumerations

James R. Sturdevant, Timothy Overman, Eric Raamot, Ray Deer, Dave Miller, Darcy M. Bullock, Christopher M. Day, Thomas M. Brennan, Howell Li, Alex Hainen & Steve M. Remias
This document defines the enumerations used to encode events that occur on a traffic signal controllers with high resolution data loggers. The time resolution is to the nearest 100 milliseconds. Background information on the development of high resolution controller data in Indiana can be found at: Smaglik E.J., A. Sharma, D.M. Bullock, J.R. Sturdevant, and G. Duncan, “Event-Based Data Collection for Generating Actuated Controller Performance Measures," Transportation Research Record, #2035, TRB, National Research Council, Washington,...

Simulation and Admittance Analysis for Advanced Metal-Insulator-Semiconductor Characterization

Alex Grede
Non-parabolic DOS simulation of III-V MISCAPs with impurity ionization effects and ability to view components of channel capacitance.

PC1D

Xingshu Sun, Xufeng Wang & Weichuan Yao
PC1D solves the fully coupled nonlinear equations for one-dimensional transport of electrons and holes in crystalline semiconductor devices, with emphasis on photovoltaic devices.

DDSCAT Convert: A Target Generation Tool

John Feser & AbderRahman Sobh
Convert .obj files to DDSCAT shape files

DDSCAT Discrete Dipole Approximation

AbderRahman Sobh, John Feser, Neerav Goswami, Prashant Jain, Nahil Sobh, Jacob Faucheaux & Obaid Sarvana
Calculate scattering and absorption of light by targets with arbitrary geometries and complex refractive index.

nanoDDSCAT

Jeremy Smith, Jacob Faucheaux, Sarah White, AbderRahman Sobh, John Feser, Prashant Jain & Nahil Sobh
Calculate scattering and absorption of light by targets with arbitrary geometries and complex refractive index.

Process Lab: Defect-coupled diffusion

Shuqing Cao, Yang Liu & Peter Griffin
This tool simulates dopant diffusion coupled with point defects.

Potential Transcription Factor Binding Sites in the Human Genome (hg19)

Minou Bina & Phillip Wyss
Supplementary material for the article entitled “Discovering sequences with potential regulatory characteristics”. Bina M., Wyss P., et al. Genomics 93:314-22 (2009).

nanoMATERIALS nanoscale heat transport

Keng-Hua Lin, Sean Sullivan, Mathew Cherukara, Alejandro Strachan, Tianli Feng, Xiulin Ruan & Bo Qiu
Non-equilibrium MD simulations of heat transport in nano-materials

INERFC: Evaluation of the Repeated Integrals of the Coerror Function by Half-Range Gauss-Hermite Quadrature

Walter Gautschi
INERFC: Evaluation of the Repeated Integrals of the Coerror Function by Half-Range Gauss-Hermite Quadrature

32-digit values of the first 100 recurrence coefficients relative to the Bose-Einstein weight function w(x)=[x/(e^x-1)]^2 computed by the SOPQ routine sr_boseeinstein(100,2,32)

Walter Gautschi
32-digit values of the first 100 recurrence coefficients for orthogonal polynomials relative to the Bose-Einstein weight function w(x)=[x/(e^x-1)]^2 computed by the SOPQ routine sr_boseeinstein(100,2,32)

RP1D (Clustering Method Using 1D Random Projections)

Sangchun Han & Mireille Boutin
The source code of RP1D (Clustering Method Using 1D Random Projections).

Meep

Jing Ouyang, Xufeng Wang & Minghao Qi
Finite-Difference Time-Domain Simulations

Ambipolar Virtual Source Compact Model for Graphene FETs

Shaloo Rakheja & Dimitri Antoniadis
This is a compact physics-based ambipolar-virtual-source (AVS) model that describes carrier transport in both unipolar and ambipolar regimes in quasi-ballistic graphene field-effect transistors (GFETs).

Intro to MOS-Capacitor Tool

Emmanuel Ochoa & Stella Quinones
Understanding the effect of silicon doping, oxide (SiO2) thickness, gate type (n+poly/p+poly), and semiconductor type (n-type/p-type) on the flatband voltage, threshold voltage, surface potential and oxide voltage of a MOS-Capacitor.

nanoDDSCAT

Jeremy Smith, Jacob Faucheaux, Sarah White, AbderRahman Sobh, John Feser, Prashant Jain & Nahil Sobh
Calculate scattering and absorption of light by targets with arbitrary geometries and complex refractive index.

32-digit values of the first 100 beta coefficients relative to the Freud weight function w(x)=exp(-x^4) computed on R by the SOPQ routine sr_freud(100,0,4,32)

Walter Gautschi
32-digit values of the first 100 beta coefficients relative to the Freud weight function w(x)=exp(-x^4) computed on R by the SOPQ routine sr_freud(100,0,4,32)

Band Structure Lab

Samik Mukherjee, Abhijeet Paul, Neophytos Neophytou, Raseong Kim, Junzhe Geng, Michael Povolotskyi, Tillmann Kubis, Arvind Ajoy, Bozidar Novakovic, James Fonseca, Sebastian Steiger, Michael McLennan, Mark Lundstrom & Gerhard Klimeck
Computes the electronic and phonon structure of various materials in the spatial configuration of bulk , quantum wells, and wires

Biological, chemical and flow characteristics of five river sampling sites in the Wabash River watershed near Lafayette, Indiana – 2012.

Megan Haas, Sara Peel & Ronald Turco
Water quality data collected from the Lafayette area watershed in 2012. There are three samples sites located on Little Pine Creek, Elliot Ditch, Little Wea Creek and two sites on the Wabash River.

Spice3f4

Michael McLennan
General-purpose circuit simulation program for nonlinear dc, nonlinear transient, and linear ac analysis

Registration Year

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    525

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    404
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