The M.Sc. (Engg) in Automotive Product Design Course aims to: 1. Define the need for CAE tools and Product Data Management, in design, prototype build and other stages of an automobile development ...
The M.Sc. (Engg) in Automotive Product Design Course aims to: 1. Define the need for CAE tools and Product Data Management, in design, prototype build and other stages of an automobile development program and apply it. 2. Recognise the need for finite element method in assessing designs of components/assemblies/systems subjected to different types of operational conditions and apply it. →
The M.Sc. (Engg) in Automotive Product Design Course aims to: 1. Define the need for CAE tools and Product Data Management, in design, prototype build and other stages of an automobile development ...
The M.Sc. (Engg) in Automotive Product Design Course aims to: 1. Define the need for CAE tools and Product Data Management, in design, prototype build and other stages of an automobile development program and apply it. 2. Recognise the need for finite element method in assessing designs of components/assemblies/systems subjected to different types of operational conditions and apply it. →
The M.Sc. [Engg] in Electronic Systems Design Engineering Course aims to: 1. Highlight the need for Systems Engineering approach to engineering electronic systems. 2. Design, model, simulate and ...
The M.Sc. [Engg] in Electronic Systems Design Engineering Course aims to: 1. Highlight the need for Systems Engineering approach to engineering electronic systems. 2. Design, model, simulate and verify electronic subsystems. 3. Develop subsystems, integrate, test and validate complex electronic systems. 4. Appreciate the challenges involved in converting an electronic system into a product. →
The M.Sc. [Engg] in Electronic Systems Design Engineering Course aims to: 1. Highlight the need for Systems Engineering approach to engineering electronic systems. 2. Design, model, simulate and ...
The M.Sc. [Engg] in Electronic Systems Design Engineering Course aims to: 1. Highlight the need for Systems Engineering approach to engineering electronic systems. 2. Design, model, simulate and verify electronic subsystems. 3. Develop subsystems, integrate, test and validate complex electronic systems. 4. Appreciate the challenges involved in converting an electronic system into a product. →