Each Learning Studio combines design tools, 3D web apps, technical articles, and downloadable references for one engineering discipline — all in one place.
Core discipline studios — electrical, mechanical, civil, structural, HVAC, fire protection, and more.
NFPA 72 design tools, 3D building viewer, voltage drop calculations, NICET certification prep, and fire alarm reference guides.
Manual J/D/S load calculations, duct sizing, equipment selection, ASHRAE references, 3D building viewer, and building management system guides.
NEC load calculations, panel scheduling, voltage drop, AFCI/GFCI requirements, conduit fill, and PE/FE exam prep.
Plumbing systems, pipe sizing, hydronic heating, sprinkler design, mechanical PE exam prep, and construction drawing standards.
Site civil, structural, and geotechnical engineering in one studio — stormwater and grading, beam/column design (AISC 360 / ACI 318), wind and seismic loads (ASCE 7-22), foundation bearing capacity, and slope stability.
Solar PV system design (NEC 690), battery storage sizing, EV charging infrastructure (NEC 625), microgrid architecture, IEEE 1547 interconnection, and project financial modeling.
Domestic water design, DWV sanitary drainage and venting, fixture unit calculations, backflow prevention, grease interceptors, and UPC/IPC plumbing code references.
NFPA 13 sprinkler hydraulic calculations, clean agent systems (FM-200, Novec 1230), kitchen hood suppression (UL 300 / NFPA 96), and fire suppression code references.
Process and systems optimization — lean manufacturing, Six Sigma, OEE, operations research, inventory and supply chain, line balancing, and FE/PE Industrial & Systems exam prep.
Core process engineering — fluid mechanics, heat and mass transfer, reaction engineering, thermodynamics, separations, process control, and FE/PE Chemical exam prep.
Hydrology, open-channel and pipe hydraulics, stormwater, water and wastewater treatment, groundwater, and FE/PE Environmental exam prep.
Mechanical properties, crystal structures, phase diagrams, heat treatment, fatigue and fracture, corrosion, composites, and materials selection.
Aerodynamics, compressible flow, aircraft and rocket propulsion, orbital mechanics, flight performance, and aerospace structures.
Software engineering, cloud, AI, cybersecurity, networking, and industrial automation.
In-building wireless, DAS design, radio frequency planning, public safety communications, and RF propagation references.
Campus and data-center network design, SD-WAN, VLAN/IP planning, structured cabling (TIA-568), access control, CCTV, and BMS integration.
Camera coverage design, video storage sizing, access control layout, intrusion zone planning, and PoE power budgeting — from UL 294 to ONVIF.
PLC I/O sizing, control panel thermal design, motor starter and VFD selection, industrial network architecture, and IEC 61131-3 programming references.
BACnet network design, DDC controller sizing, HVAC control sequences (ASHRAE Guideline 36), EUI benchmarking, fault detection and diagnostics, and digital twin visualization.
Practical AI engineering for engineers — transformer architecture, LLM fine-tuning and inference, multi-agent system design, prompt engineering, AI hardware, and applying AI copilots to real engineering work.
Machine learning, data engineering, MLOps, and executive AI strategy — Python for data analysis, ML fundamentals, RAG and vector databases, model deployment, applied ML for predictive maintenance and forecasting, plus an executive AI leadership reader.
Full-stack SaaS development, AWS/Azure/GCP cloud computing, systems and enterprise languages (C++/Rust/Go/Java/C#), mobile development, API design, system architecture, and DevOps workflows — interactive tools that generate real, production-ready code and blueprints.
IT and OT/ICS cybersecurity: the NIST CSF and IEC 62443, zones & conduits, zero trust and IAM, incident response and the SOC, network segmentation tools, and certification prep (Security+, CISSP).
Industrial robot architectures and kinematics (articulated, SCARA, Delta, Cartesian), ROS, machine vision, collaborative robot (cobot) safety standards, Arduino & Raspberry Pi prototyping, servo/stepper motion control, and automation sensors.
Chip-level electronics engineering — FPGA architecture, Verilog vs VHDL, the ASIC RTL-to-silicon design flow, semiconductor manufacturing, digital logic fundamentals, signal integrity, and embedded systems architecture (MCU/MPU/SoC).
The mechanical + electrical + embedded-software design discipline — actuator selection and sizing, gear trains and mechanical power transmission, microcontroller-to-actuator interfacing, and the multidisciplinary design process and sensor fusion that tie it all together.
CAD, BIM, simulation, and the professional software toolchains engineers use every day.
Autodesk Revit modeling across Architecture, Structure, and MEP — BIM Execution Plans, LOD 100–500 frameworks, worksharing, clash detection with Navisworks and BIM 360, Dynamo automation, and full AEC project lifecycle workflows.
The multi-vendor professional software landscape engineers use daily — SolidWorks, CATIA, Creo, Fusion 360, Inventor, Siemens NX, ANSYS, Abaqus, COMSOL, MATLAB & Simulink, KiCad, Altium, LTspice, PSpice, AutoCAD, ArcGIS, and QGIS, honestly compared.
The math, physics, and chemistry fundamentals behind every engineering discipline, plus FE exam prep.