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Nonlinear Mechanical Dynamics Modeling & Simulation

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Federal

Contract Overview

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The contract involves the development of computational models and simulations focused on nonlinear mechanical systems used for inertial sensing applications. Key areas of emphasis include the analysis of chaotic dynamics and vibrational modes within these systems. The work aims to enhance understanding and predictive capabilities related to complex mechanical behaviors, which are critical for advanced inertial sensing technologies. Issued by the Defense Advanced Research Projects Agency under the Department of Defense, this subcontract opportunity seeks specialized expertise in mechanical dynamics modeling. The solicitation was posted at the end of May 2026, with a response deadline set for mid-July 2026. The contract falls under the NAICS code 541715, indicating a focus on research and development in the physical engineering sciences. Although specific location and point of contact details are not provided, the contractor is expected to deliver technical solutions aligned with the strategic goals of defense research and innovation.

General Info

Develop computational models analyzing nonlinear mechanical systems, chaotic dynamics, and vibrations for inertial sensing.

Agency

Department Of Defense → Defense Advanced Research Projects Agcy

NAICS

541715 - Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology) View NAICS

Place of Performance

VA

Set-Aside

NONE

Documents

(0)

No documents available

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Timeline

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Organization & Contact Information

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AgencyDepartment Of Defense → Defense Advanced Research Projects Agcy
ContactsNo contacts available
OfficeN/A
Organization / Agency
Department Of Defense → Defense Advanced Research Projects Agcy
Office AddressN/A
ContactsNo contact information available

Full Description

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Develop computational models and simulations of nonlinear mechanical systems for inertial sensing, including chaotic dynamics and vibrational mode analysis.

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in almost 3 years

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