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- 541 Anderson Ave Xxxxxx, XXXXXX xxxxxx ( (xxx-xxx-xxxx * firstname.lastname@example.org
Self-assured, dynamic, and results-driven mechanical engineer with a growing experience in providing high-performance technical support and research in the academe and acoustical engineering business.
- Strong dedication to process efficiencies in product development, engineering and re-engineering consumer and industrial products, and conducting research/surveys in aid of developing practical engineering solutions.
- Detail-oriented, analytical and methodical with critical thinking to resolve engineering and professional relationship issues that enable the business to thrive in demanding markets.
Well-organized and resourceful with multitasking skills that optimize limited resources to achieve outstanding results.
Strong people management and interpersonal communication skills that inspire client and stakeholder confidence across diverse ethnicities in attaining shared engineering and business commitments.
Strategic Planning & Execution
Fiscal & Budget Management
Product & Process Development
Continuous Quality Improvement
Policies & Regulatory Compliance
Relationship Management (Clients, Stakeholders, & Suppliers)
Statistics Research & Process Engineering
Internal Combustion Engines
Apps: MATLAB, Pro/Engineer, LabVIEW, PSPICE
Productivity Tools: MS Office (Word, Excel, PowerPoint, Access, & Outlook), Acrobat, & Lotus Notes
Internet: Email/Webmail, Web Research, & Social Networking
Henning Associates, Inc. Xxxxxx, XXXXXX
Provide management with engineering support in driving a solid reputation for an acoustical engineering firm delighting clients with high-impact technical solutions to acoustic issues.
Analyze duct borne and airborne sound paths for HVAC equipment, calculating room reverberation times, NCB ratings and sound attenuation in plenums, STC and NIC ratings for sound partitions, and analyzing sound attenuation of custom generator enclosures.
Conduct acoustic research and surveys in managing road/train noise for property development in locations with close proximity to railroad tracks.
University of Xxxxxx College Park, XXXXXX
Served in the design and development of the Terps Racing 2012 racecar for the University of Xxxxxx, leveraging skills and understanding in automotive engineering and mechanical components of a race car.
Machined jig pieces for the frame, A-arms, monocoque, uprights, pedals, steering rack, and wings using the vertical mill, including the gear plate for steering rack.
Post-machined wing ribs, pedals, engine mounts, shifter, and jackshaft supports.
Used lathe machines to fabricate spacers and rod ends.
Academic Projects Completed)
Re-engineered a DeWALT reciprocating saw for easier use, completely redesigning the blade clamp and reducing blade change time from a mean of 6.712 seconds to 2.356 seconds.
Engineered a theoretical cleaning method for the BP oil spill using a long pipe to siphon the oil spilling into the bottom of the ocean, calculating the proper pipe dimensions, and defining the conceptual procedures using scaling analysis and MATLAB.
UNIVERSITY OF XXXXXX College Park, XXXXXX (May 2012)
B.S. in Mechanical Engineering | B.S. in Astronomy
GPA: 3.747, Dean s List: 2009 2011
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