Webinar Recording

Julia for Engineers Part 2: Modeling Steady State and Dynamic Systems

Webinar Recording

Julia for Engineers Part 2: Modeling Steady State and Dynamic Systems

Date Published

Speakers

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Date Published

Speakers

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In this second session of the Julia for Engineers series, we explore how to model, simulate, and analyze both steady-state and dynamic systems using Dyad. We will demonstrate how to build models that capture both equilibrium conditions and time-dependent behavior, providing insight into system performance under varying conditions.

Speakers

Dr. Ranjan Anantharaman is a Sales Engineer at JuliaHub Inc., where he helps engineering firms leverage Dyad, the company’s system simulation product. His background is in modeling and simulation and scientific machine learning, and he holds a PhD in Mathematics and Computational Science from MIT. He is an active member of the Julia community and has organized JuliaCon since 2020, chairing the conference from 2023 to 2025. He is also a member of AIAA and ASHRAE.

Speakers

Dr. Ranjan Anantharaman is a Sales Engineer at JuliaHub Inc., where he helps engineering firms leverage Dyad, the company’s system simulation product. His background is in modeling and simulation and scientific machine learning, and he holds a PhD in Mathematics and Computational Science from MIT. He is an active member of the Julia community and has organized JuliaCon since 2020, chairing the conference from 2023 to 2025. He is also a member of AIAA and ASHRAE.

Speakers

Dr. Ranjan Anantharaman is a Sales Engineer at JuliaHub Inc., where he helps engineering firms leverage Dyad, the company’s system simulation product. His background is in modeling and simulation and scientific machine learning, and he holds a PhD in Mathematics and Computational Science from MIT. He is an active member of the Julia community and has organized JuliaCon since 2020, chairing the conference from 2023 to 2025. He is also a member of AIAA and ASHRAE.

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Julia for Engineers Part 2: Modeling Steady State and Dynamic Systems