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During my work I have observed that many small and medium sized industries tend to over-optimize their projects without adding project simulation to the workflow. In such a scenario, an engineer will design a product with decisions based on applicable hand calculations, historical data, or even instinct, thus compensating for an alternative design that will be much more efficient and profitable. Over time I could see a pattern that there is a gap in terms of knowledge and exposure given to them about simulation. which could have provided them with a situation about how an existing system might perform if modified in terms of shape, size or material, or how a new system might perform before the prototype is even completed, thus saving on costs and lead times. Which took me back to the last year of my degree where I was designing the energy generating step prototype, depicting the system that generates a voltage using step force on the SolidWorks platform. The tests were conducted manually, which led to several futile attempts until one of the teachers introduced me to the concept and application of computer simulations. Through which I conducted load validations, design changes and optimization. Eventually the prototype could bear the load while standing. That experience gave me an in-depth insight into the background of computational engineering software packages and sufficient knowledge of the fundamentals to solve complicated real-life problems using the concept of design validation virtually in FEA application. Say no to plagiarism. Get a tailor-made essay on "Why Violent Video Games Shouldn't Be Banned"? Get an Original Essay The concept of testing and validating theoretical ideas while keeping the costs of such processes feasible intrigued me. I was so fascinated by the power of "FEA" and its myriads of practical applications that I started watching videos, reading journals, little did I expect how much I would love working on FEA and CAD. Over time I developed expertise in the FEA field and therefore decided to conduct motion simulations, design optimization and load validations with SolidWorks FEA application in my main project "4 Wheel Steering and 90 Degree Car Parking System degrees", which aimed to address the problem encountered in large warehouses which resulted in limited movement of goods due to limited space. The project proposed a unique solution by building a prototype of a battery-powered car whose wheels can rotate ninety degrees around its axis. My passion for design began during my school days, which led me to choose technical drawing as one of my projects. of optional subject and further led me to choose the mechanical engineering path to undergraduate which not only gave me a certain set of skills but also allowed me to further explore my field of interest and hone my academic strengths . During my university studies I learned more about finite element analysis, computer aided design, materials science and machine design, I always spent long hours in laboratories to correlate theory with practical observation. Additionally, working on projects throughout my academic career gave me a solid technical foundation and helped me get a job at an engineering consultancy firm where I was given responsibility for helping manufacturing organizations.