DCN-461: minChemBio: Expanding chemical synthesis…
Dataset citation “minChemBio: Expanding chemical synthesis with chemo-enzymatic pathways using minimal transitions” available from Penn State ScholarSphere at https://doi.org/10.26207/tbg0-gr88.
Dataset citation “minChemBio: Expanding chemical synthesis with chemo-enzymatic pathways using minimal transitions” available from Penn State ScholarSphere at https://doi.org/10.26207/tbg0-gr88.
Dataset citation “DATA: Development, characterization, and curve fitting of rate dependent models of calcified cerebral embolus analogs for acute ischemic stroke” available from Penn State ScholarSphere at https://doi.org/10.13012/B2IDB-0160590_V3.
Dataset citation “2D Acoustic Numerical Breast Phantoms for Ultrasound Computed Tomography” available from the Illinois Data Bank at https://doi.org/10.13012/B2IDB-5648161_V1.
Dataset citation “Experiments for “On the Techniques We Create, the Tools We Build, and Their Misalignments”” available from the University of Nebraska’s Research Data Repository at https://doi.org/10.13014/K2154F00.
Dataset citation “Data for Non-Local Spin Transport in the Light Intermetallic Alloy Al2Cu” available from the Data Repository for the University of Minnesota (DRUM) at https://doi.org/10.13020/6k4e-mn25.
Dataset citation “Supporting Data for “Mesoscopic Morphologies in Frustrated ABC Bottlebrush Block Terpolymers”” available from the Data Repository for the University of Minnesota (DRUM) at https://doi.org/10.13020/s6pf-4e24.
Dataset citation “Streamwise Wavenumber-Frequency Pressure Spectra for Smooth Wall Boundary Layers in Reynolds Number and Pressure Gradient Flow Conditions” available from the Virginia Tech Data Repository at https://doi.org/10.7294/28395098.
Dataset citation “novoStoic2.0: An integrated framework for pathway synthesis, thermodynamic evaluation, and enzyme selection.” available from Penn State ScholarSphere at https://doi.org/10.26207/fxd2-se27.
Dataset citation “Dataset for ‘Artificial neural network for brain-machine interface consistently produces more naturalistic finger movements than linear methods’ by Temmar et al. 2024,” landing page available from Deep Blue Data at https://doi.org/10.7302/erkg-sh98.