Lindsey Gloe Hughes

Lindsey Gloe Hughes

System Engineer @ Sandia National Labs

About Lindsey Gloe Hughes

Lindsey Gloe Hughes is a System Engineer at Sandia National Laboratories, specializing in thermomechanical analysis of organic materials.

Current Role at Sandia National Laboratories

Lindsey Gloe Hughes currently holds the position of System Engineer at Sandia National Laboratories. In this role, she applies her extensive knowledge and expertise in system engineering to advance the organization's projects and initiatives.

Principal Research and Development Role

Since 2012, Lindsey Gloe Hughes has been serving as a Principal Research and Development professional focusing on Organic Materials at Sandia National Laboratories. Her specialization includes thermomechanical analysis of organic materials, contributing to significant advancements in this field.

Previous Experience at Sandia National Laboratories

Prior to her current positions, Lindsey Gloe Hughes worked in the Thermal Experimental Fluids department at Sandia National Laboratories from 2010 to 2012. During this period, she gained valuable experience in handling experimental fluids and conducting relevant research.

Experience at Halliburton

From 2008 to 2010, Lindsey Gloe Hughes was with Halliburton as a Scientist in Production Enhancement M&M. She was involved in critical projects related to bacteria control in fracturing fluids using both chemical and mechanical methods. Her contributions also extended to the development and commercialization of a new high-temperature fracturing fluid.

Educational Background

Lindsey Gloe Hughes earned a Bachelor of Science degree from Texas Tech University, where she studied Biology and Chemistry. Additionally, she attended Texas Christian University, further enhancing her academic foundation in the sciences.

Specializations and Expertise

Lindsey Gloe Hughes specializes in theremchanical analysis of organic materials at Sandia National Laboratories. She has significant experience in rheological testing and thermometry studies of MEMS, showcasing her expertise in these technical areas.

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