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  • +AFOSR Funded Projects
  • -Research Areas
    • Aerodynamic Sciences
    • Aerospace Composite Materials
    • Aerospace Materials for Extreme Environments
    • Agile Science for Test and Evaluation (T&E)
    • Astrodynamics
    • Atomic & Molecular Physics
    • Biophysics
    • Cognitive and Computational Neuroscience
    • Complex Networks
    • +Computational Cognition and Machine Intelligence
    • Computational Mathematics
    • Condensed Matter Physics
    • Dynamic Data and Information Processing
    • Dynamic Materials and Interactions
    • Dynamical Systems and Control Theory
    • Electromagnetics
    • Energy, Combustion, and Non-Equilibrium Thermodynamics
    • GHz-THz Electronics
    • High Energy Radiation Matter Systems
    • High-Speed Aerodynamics
    • Human Performance and Biosystems
    • Information Assurance and Cybersecurity
    • Mathematical Optimization
    • Mechanics of Multifunctional Materials and Microsystems
    • Molecular Dynamics and Theoretical Chemistry
    • Multiscale Structural Mechanics and Prognosis
    • Natural Materials and Systems
    • Optoelectronics and Photonics
    • Organic Materials Chemistry
    • Physics of Remote Sensing
    • Quantum Information Sciences
    • Science of Information, Computation, Learning, and Fusion
    • Space Biosciences
    • Space Physics
    • +Space Propulsion and Power
    • Trust and Influence
    • Ultrashort Pulse Laser-Matter Interactions
  • +AFOSR Workshops & Reviews
  • +Educational and Special Programs
  • +International Division (Research Areas - International Office)
  • 2018 Joint AFOSR High-Speed Aerodynamics and ONR Hypersonics Programs Annual Review
  • +Special Events and Lectures

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Molecular Dynamics and Theoretical Chemistry

Objective
The objectives of the molecular dynamics program are to understand, predict, and control the reactivity and flow of energy in molecules.   A current focus is to understand and exploit chemical reactivity and catalysis for imporved storage and utilization of energy.  This program seeks experimental and joint theory-experiment studies that address key, fundamental questions in these areas that can lead to important advances in these fields.

The major objective of the theoretical chemistry program is to develop new methods that can be utilized as predictive tools for designing new materials and improving processes important to the Air Force.

Click on the link for a list of current grants in the AFOSR Molecular Dynamics and Theoretical Chemistry program.

Solicitation
BAA-AFRL-AFOSR-2015-0001

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Program Reviews & Meetings

Name Date Materials
Program Review 2014 19-21 May 2014 General Info |
Spring Review 2014 4-7 Mar 2014 General Info | Presentation
Spring Review 2013 4-8 Mar 2013 General Info | Presentation
Program Review 2012 22-24 May 2012

General Info | Presentations
Ageneda | Abstracts


Program Overview
AFOSR Spring Review 2014 Presentation by Dr. Michael Berman
 

Contact Information
Dr. Michael Berman
AFOSR/RT
(703) 696-7781
DSN 426-7781
FAX (703) 696-7320
E-mail: MDTC@afosr.af.mil

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