System Safety and Reliability Engineer - LibertyWorks
Rolls-Royce — Indianapolis
Job Description Job Title: System Safety and Reliability Engineer - LibertyWorks Working Pattern: Full time Working location: Indianapolis, IN/Hybrid - 3 Office Days/Week To ensure, at all phases of the product lifecycle, that the Safety & Reliability attributes of the product are understood and that the risks arising from it are managed to an acceptable level. Contribute to the capability acquisition / improvement as well as to the technical and process governance of the S&R capability. Why Rolls-Royce? Rolls-Royce is one of the most enduring and iconic brands in the world and has been at the forefront of innovation for over a century. We design, build and service systems that provide critical power to customers where safety and reliability are paramount. We are proud to be a force for progress, powering, protecting and connecting people everywhere. We want to ensure that the excellence and ingenuity that has shaped our history continues into our future, and we need people like you to come and join us on this journey. Rolls-Royce has been recognized as the top employer in the Engineering & Manufacturing category on the prestigious Forbes Top Employers for Engineers list for 2025. This ranking highlights our commitment to innovation, employee development, and fostering a collaborative environment where engineers can thrive. Be part of a team that sets the industry standard and drives groundbreaking solutions. At Rolls-Royce, we are committed to creating a workplace where all employees feel respected, supported, and empowered to do their best work. We foster a welcoming and innovative work environment that invests in you, giving you access to an incredible breadth and depth of opportunities where you can grow your career and make a difference. Rolls-Royce is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to any protected characteristics. What you will be doing Understand the product's degradation and f
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