The posting, in Rocket Lab's own words
archived Sep 9, 2026ABOUT ROCKET LAB Rocket Lab is the end-to-end space company building rockets, spacecraft, and critical subsystems that keep the world connected, protected, expand humanity’s reach to the Moon, Mars, and beyond. We move fast, build real hardware for meaningful missions, and make the impossible routine. Come shape the future with us. While other companies talk about it, we do it! NEUTRON Rocket Lab’s Neutron team is responsible for bringing our new large rocket Neutron and its launch and test sites to life. From designing and testing Neutron’s structures and components, to firing up its new Archimedes engines, to setting up Neutron’s launch pads and test sites across the United States, joining the Neutron team is your opportunity to help launch a new large rocket for the very first time. SENIOR DYNAMICS ANALYST - NEUTRON Rocket Lab seeks a Senior Dynamics Analyst to build Neutron: Rocket Lab’s medium lift, reusable launch vehicle. As a Senior Dynamics Analyst , you will contribute to the analysis, design validation, and future improvements of the Neutron launch vehicle. Day to day, you will be expected to predict and define loads and environments for different vehicle components, support testing and qualification campaigns, and specify vehicle instrumentation (accelerometers, strain gauges, thermocouples, etc..). You will also perform detailed simulations, and establish technical methodologies used across the engineering team. Successful candidates in this role will thrive in ambiguity, and are excited to work in a small, high performing team focused on continued learning and growth. This position is ideal for an experienced engineer keen to support a complex project from conceptual design through to integration and launch. This role is based in Auckland, New Zealand.
WHAT YOU'LL GET TO DO:
Perform prediction of launch vehicle vibration environments based on finite element analysis and analytical methods Contribute the test plan definition, support test activities, and post process test results for dynamic testing (random vibration, acoustics, shock) Define suitable sensors (type and location) to monitor the in-flight environments and post process data to verify correlation with numerical predictions Working closely with avionics, mechanical, fluids, and propulsion team members to determine suitable mounting strategies for vehicle and ground system components Collect documentation of test environments and qualification status for vehicle components