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Trojan Detection Software Challenge - object-detection-jul2022-train
Data provided by National Institute of Standards and Technology
Round 10 Train Dataset
Modified:
Source: https://drive.google.com/drive/folders/11khneOUXZPSMHPPObNSyl1ObLsO6ohoV?usp=drive_link
Trojan Detection Software Challenge - object-detection-aug2022-test
Data provided by National Institute of Standards and Technology
Round 10 Test Dataset
Modified:
Source: https://drive.google.com/drive/folders/1FW8HBQKUQUJVUBL0OfI21m-ZGcRH_XNf?usp=drive_link
Trojan Detection Software Challenge - object-detection-aug2022-holdout
Data provided by National Institute of Standards and Technology
Round 10 Holdout Dataset
Modified:
Source: https://drive.google.com/drive/folders/1Is12scQHelEq_SwiHWvxO9XWg3vR7bAJ?usp=drive_link
KLA stylus profilometry of Parylene C devices
Data provided by National Institute of Standards and Technology
We obtained stylus profilometry measurements of Parylene C devices after soaking in different fluid conditions in a microfluidic environment. The Parylene C devices consist of platinum coplanar waveguides (400 nm Pt, 50 um center conductor, 5 um gaps, 200 um ground planes) with 6.5 um of Parylene C deposited on top. A PDMS microfluidic layer was aligned on top of the 10.00 mm CPW such that the 4.00 mm channel was centered on the CPW.
Modified:
OSCAL-deep-diff
Data provided by National Institute of Standards and Technology
OSCAL Deep Diff is a CLI application and library that can produce schema-agnostic comparisons of JSON artifacts. The purpose of this tool is to compare OSCAL artifacts.
Modified:
Source: https://github.com/usnistgov/oscal-deep-diff
NMR Interlaboratory Study of NISTmAb
Data provided by National Institute of Standards and Technology
The NISTmAb Interlaboratory NMR Study is a joint effort between 25 organizations to evaluate the performance of two-dimensional (2D) heteronuclear NMR as used to characterize the high order structure (HOS) of proteins, with the aim of harmonizing 2D-NMR methods to support industrial use of NMR as applied to mAb therapeutics. This study features nearly equal representation between laboratories from academia, government, and industry, including 4 laboratories from regulatory agencies.
Modified:
AM Bench 2022 Microstructure Measurements for IN718 3D builds
Data provided by National Institute of Standards and Technology
The following data files include microstructure measurement results associated with the 2022 Additive Manufacturing Benchmark test series (AM-Bench 2022) AMB2022-01 benchmark on laser powder bed fusion (LPBF) 3D builds of nickel-based superalloy IN718 test objects.
Modified:
Pharmaceutical polymorph identification and multicomponent particle mapping with non-negative matrix factorization
Data provided by National Institute of Standards and Technology
This data publication contains the code and demonstration data from a study using non-negative matrix factorization to learn, characterize, and chemically map crystal polymorphs at the single particle scale from high spatial resolution time-of-flight secondary ion mass spectrometry (ToF-SIMS) images. The data from this study includes the ToF-SIMS chemical imaging of three inkjet printed arrays of acetaminophen deposits, corresponding THz Raman spectra, and ToF-SIMS chemical images of a pure acetaminophen powder and a migraine medicine.
Modified:
Quasi-continuous voltage standard using sinusoidal and pulse-driven Josephson junction arrays
Data provided by National Institute of Standards and Technology
Dataset for multiple publishable figures in the paper entitled "Quasi-continuous voltage standard using sinusoidal and pulse-driven Josephson junction arrays" submitted to Meas. Sci. and Tech. journal.
Figure 3. (a) Pattern of pulses used to generate a dc voltage of 0.2 V, (b) difference from the nominal of the voltage measured using the K3458A versus dc bias current for different RF power biases.
Figure 4. PD JJA voltage difference from nominal, measured with a K3458A, versus dc bias current for different pulse patterns and repetition frequencies.
Modified:
RGTM 10169
Data provided by National Institute of Standards and Technology
NIST developed a reference material consisting of synthetic fragments of the SARS-CoV-2 virus RNA, which is the target of molecular diagnostic tests. These RNA fragments can assist in the development and validation of RT-qPCR assays for the detection SARS-CoV-2. The RNA fragments are characterized for concentration using digital PCR methods, may be used to assess limits of detection for SARS-CoV-2 assays, and may calibrate other in-house or commercial SARS-CoV-2 controls.
This dataset includes data used for RTGM 10169 SARs-Cov-2 Research Grade Test Material validation.
Modified: