Rachel Xie
Mechanical Engineer at Penn Electric Racing- Claim this Profile
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Experience
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Penn Electric Racing
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United States
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Automotive
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1 - 100 Employee
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Mechanical Engineer
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Sep 2022 - Present
- Designing push bar for FSAE race car - Designed suspension tabs for the front wheels to connect control rods and chassis. - Designed tabs for aerodynamics components mounting, such as the diffuser - Manufactured aero layups in-house and at Leading Edge Composites for aerodynamic components including the airfoils for the rear wing and hood for the body panel - Designing push bar for FSAE race car - Designed suspension tabs for the front wheels to connect control rods and chassis. - Designed tabs for aerodynamics components mounting, such as the diffuser - Manufactured aero layups in-house and at Leading Edge Composites for aerodynamic components including the airfoils for the rear wing and hood for the body panel
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Boston Consulting Group (BCG)
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United States
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Business Consulting and Services
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700 & Above Employee
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Part Time Assistant
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Jun 2023 - Present
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Penn Fashion Collective
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United States
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Retail Apparel and Fashion
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Production Team Member
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Oct 2022 - Present
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GreenPower Motor Company Inc.
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United States
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Motor Vehicle Manufacturing
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1 - 100 Employee
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Intern
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May 2023 - Jun 2023
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National Academy of Engineering
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United States
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Public Policy
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1 - 100 Employee
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EngineerGirl Ambassador
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Aug 2021 - Aug 2022
- Promoted engineering to children with special needs - Taught a self-designed introductory engineering course at Friends of Children with Special Needs in Fremont - Promoted engineering to children with special needs - Taught a self-designed introductory engineering course at Friends of Children with Special Needs in Fremont
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Lemelson-MIT Program
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United States
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Non-profit Organizations
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1 - 100 Employee
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Mechanical Designer, Team Coordinator, Electrical Engineer
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Jun 2020 - Jun 2021
- Received $9,600 to develop a system that mitigates the communication barriers between referees and deaf basketball athletes. - Developed a prototype that uses NRF radio to transmit signals between the trigger module and the haptic wearable device - Reduced reaction time delay to whistle sounds from 2.06s to 0.34s through user testing - Designed seven iterations of trigger device housing using Solidworks - Received $9,600 to develop a system that mitigates the communication barriers between referees and deaf basketball athletes. - Developed a prototype that uses NRF radio to transmit signals between the trigger module and the haptic wearable device - Reduced reaction time delay to whistle sounds from 2.06s to 0.34s through user testing - Designed seven iterations of trigger device housing using Solidworks
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Education
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University of Pennsylvania
Bachelor of Science - BS, Mechanical Engineering and Applied Mechanics -
Quarry Lane School
High School, IB diploma