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FEA position available in Schlumberger, Sugar Land, TX

Schlumberger is the leading supplier of technology, project management, and information solutions, trusted to deliver superior results and improved E&P performance for oil and gas companies around the world. Through our well site operations and in our research and engineering facilities, we are working to develop products, services and solutions that optimize customer performance in a safe and environmentally sound manner. Reflecting our belief that diversity spurs creativity, collaboration, and understanding of customer's needs, we employ over 87,000 people of more than 140 nationalities working in 80 countries. With 25 research and engineering facilities worldwide, we place strong emphasis on developing innovative technology that adds value for our customers. In 2008, we invested $818 million in R&D. For more information about Schlumberger, please refer to our web site http://www.slb.com . Schlumberger is an Equal Opportunity Employer.

We are looking for extremely high-energy, self-motivated Ph.D. candidates with exceptional problem-solving, communication, leadership and interpersonal skills who are seeking challenges to solve real technical problems. The candidate will closely collaborate with Schlumberger design engineers in US and Europe. The candidate will be performing FEA studies, from definition phase to results presentation to internal or external customers, in technically challenging areas such as shock & vibration, metal plasticity, hyperelastic and viscoelastic material response, and heat transfer.

If you have any of the academic qualifications listed below, submit an application to join our team of international experts in the Simulation & Modeling Group located in Sugar Land, TX. Please send your cover letter and resume via email to Dr. Sepand Ossia at SOssia@slb.com

1. Ph.D. degree in Mechanical Engineering, Aerospace Engineering, Civil Engineering, or Engineering Mechanics  with 5+ year industrial experience.

2. In-depth understanding of continuum mechanics, nonlinear dynamics, finite element method, failure analysis, engineering design concepts, and materials engineering.

3. Extensive experience in modeling and simulation of large-scale structures subjected to dynamic loads

4. Solid knowledge of ABAQUS and ANSYS Workbench is essential.

5. Excellent oral and written communication skills in English.

6. Autonomous and creative approach towards challenging problems.

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