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It is during my work that I have observed that many small and medium industries tend to over-optimize their designs without adding design simulation to the flow of work. In such a scenario, an engineer will design a product with decisions based on applicable manual calculations, historical data, or even instinct, thereby compensating for an alternative design that will be much more efficient and cost-effective. Over time, I have seen a trend that there is a gap in terms of knowledge and exposure given to them when it comes to simulation. which might have given them an idea of how an existing system might perform if changed in terms of shape, size or material, or how a new system might behave before the prototype was even completed, thus saving on costs and delays. Which brought me back to the final year of my undergraduate degree where I was designing the power-generating step prototype, describing the system generating tension using step force on the SolidWorks platform. The tests were conducted manually, which led to several failed attempts until one of the professors introduced me to the concept and application of computer simulations. Through which I performed load validations, design changes and optimizations. Finally, the prototype could withstand the permanent load. This experience gave me an insight into the background of computer engineering software packages and sufficient understanding of the fundamentals of solving complex real-world problems using the concept of design validations virtually in FEA application. Say no to plagiarism. Get a tailor-made essay on “Why Violent Video Games Should Not Be Banned”? Get an original essayThe concept of verifying 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 myriad practical applications that I started watching videos, reading reviews. I didn't expect how much I would enjoy working on FEA and CAD. Over time, I developed the skill in the field of FEA and therefore decided to carry out motion simulations, design optimizations and load validations with the SolidWorks FEA application in my major project "Motion System". 4-wheel steering and 90 degree car parking" which aimed to solve the problem faced in large warehouses. which led to restrictions in the movement of goods due to limited space. In the project, a unique solution was proposed by the construction of a prototype battery-powered car whose wheels can rotate ninety degrees around their own axis. My fascination with design began during my school years, which led me to choose technical drawing as an elective subject and further led me to choose mechanical engineering as an undergraduate, which not only gave me a certain skill set but also led me to further explore my area of interest and hone my academic strengths. During my undergraduate studies, I learned more about finite element analysis, computer-aided design, materials science, and machine design. I have always enjoyed long hours in the laboratory to correlate theory with practical observation. Additionally, working on projects throughout my studies gave me a solid technical foundation and helped me get a job at an engineering consultancy where I got the.