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Apply circular economy principles to product design: Design for the Environment, Design for R strategies, recycling and Material Recovery Facilities, biological cycles, and material selection trade-offs.
Simulate flows in diffusors, nozzles, duct bends and around circular cylinders: choose grids, turbulence models (RANS, LES, DNS) and settings, and analyze conjugate heat transfer.
Learn how industrial robots work: robot types and kinematics, drive systems and end effectors, PTP/CP/CIRC motion, teach-in and offline programming, and safety under ISO 10218.
Apply circular economy principles, use tools to design and measure the environmental impact of products and services, and integrate sustainability into business strategy and reporting.
Examine climate change science, greenhouse gases and fossil-fuel power generation, then apply sustainability and Circular Economy principles to transportation, buildings, food and fashion.
Explore how technology becomes competitive advantage: survey computing, visual, connectivity and AI trends, digital tools across the product lifecycle, and their use in eight industries.
Build the business case for sustainability: sustainable supply chains, greenwashing and certifications, Triple Bottom Line accounting, ESG reporting with GRI and CSRD, and sustainability leadership.
Model parts and assemblies in Solid Edge: 2D sketches, extrude, revolve, rounds, blend and thin wall, drafting views, and editing imported CAD files.
Learn Siemens NX from the interface up: create constrained 2D sketches, build 3D parts with swept and remove features, blends, patterns, Boolean and synchronous modeling.
Learn the Model-Based Systems Engineering approach: compare MBD, MBE, and MBSE, explore SysML diagrams and its four pillars, and evaluate modeling tools like ARCADIA and Capella.
Assess environmental impact: compare renewable energy technologies, calculate personal carbon footprints, run life cycle assessments and eco-audits, and apply Cradle-to-Cradle and biomimicry design frameworks.
Create drawings and PMI from part models, build top-down and bottom-up assemblies, and design with freeform, convergent, and sheet metal modeling in Siemens NX.
Design circular products, build sustainable supply chain and procurement strategies, and reduce carbon footprints using digital twins, lifecycle assessment, GRI reporting, and the UN SDGs.
Design products and packaging for a circular economy: apply Design for R strategies, material selection, end-of-life recycling and composting planning, and third-party certification protocols.
Learn to run operations sustainably: apply ESG strategies, circular economy principles, digital twins, facility decarbonization and electrification, and additive manufacturing to products, facilities, and production.
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