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AVEVA INPLANT Fluid Flow Design 2023-Engsofts

AVEVA INPLANT Fluid Flow Design 2023

INPLANT Fluid Flow Design is a rigorous, steady-state simulator for designing, rating, and analyzing plant piping systems. Engineers can quickly rate and analyze the safety of plant piping systems through INPLANT’s updated Graphical User Interface (GUI). INPLANT also enables the design of new piping systems or the revamp of a wide variety of existing systems. Applications range from simple, single pipe sizing and rating calculations to large, multiphase fluid piping networks with complex, nested-loop topology. Relief system problems involving networks with single or multiphase fluids at high velocities or in critical flow can also be solved using INPLANT. AVEVA INPLANT Fluid Flow Design 2023 Tested Picture The following enhancements have been made to INPLANT Fluid Flow Design 2023: Infrastructure Updates...

NextNano NEGF 2023

The nextnano.NEGF package is a cutting-edge package specifically designed for modelling quantum transport in planar structures. This package is the best choice for precise simulations of Quantum Cascade Lasers (QCLs) and Quantum Cascade Detectors (QCDs), Superlattices, and Resonant Tunnelling Diodes (RTDs). With the nextnano.NEGF package, you gain access to advanced computational capabilities, which includes calculation of band structures, energy-resolved carrier densities and the density of states, optical gain, output power and L-I-V characteristics, wall-plug efficiency, and much more. We are proud to say that nextnano.NEGF is truly the best commercially available tool for modeling quantum transport in QCLs. nextnano.NEGF is an advanced computational tool and the core engine of the nextnano.NEGF package. It utilizes the cutting-edge Non-Equilibrium Green Functions (NEGF)...

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NextNano++ 2023-Engsofts

NextNano++ 2023

The nextnano++ package provides you with tools for designing, optimizing, and analyzing optoelectronic nanodevices of arbitrary geometries in 1D, 2D and 3D. This package is the best choice for modelling properties of a vast number of semiconductor structures. It allows you to design optoelectronic devices made of quantum wells, wires, and dots. With the nextnano++ package, you gain access to advanced computational capabilities, which includes calculation of band structures, densities of states, charge distributions, wave functions, strain, piezo effects, optical spectra, quantized conductance, and much more. This package includes: nextnano++ nextnano3 nextnano.MSB nextnanomat nextnanopy With a comprehensive suite of advanced features including a user-friendly graphical workflow manager, seamless integration with Python libraries, and a rich repository of practical examples, nextnano...

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