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We now propose to demonstrate the feasibility of this approach for airborne SAR data. Management Sciences MSI has developed fundamental technologies to improve situation awareness and agility in dynamic, uncertain environments. In a future Phase II program, we will finalize the sensor designs, fabricate prototype sensors, and demonstrate them in laboratory experiments. Mixed-Augmented Reality M-AR provides the Warfighter with a unique and realistic training experience that blends virtual objects into the live training environment. In order to improve situational awareness in high-density urban areas and complex terrains where threats can come from different elevations, three-dimensional mapping and visualization systems could prove to be very effective.
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After inspection for voids and flaws, the joined cylinders will be structurally tested to quantify boxa lap shear strength of the fusion bonded joint.

In the Phase I effort, evaluation of the existing Spytek system would be completed. Current inspection methods do not assure that every dome blank is worthy of further processing by the plt. By the end of the Phase I program, sample quantities lpy the proposed filter material will also be provided to the Army for evaluation.

An option for providing an initial safe room environment followed by expanded protection for operation up to six months will be considered. Keratins have intrinsic cell-binding properties that can be exploited to offer potential new solutions to wound healing and have been shown to be a viable platform for the controlled delivery of various drugs.

Among these Klebsiella pneumoniae and Pseudomonas aeruginosa have become important causes of concern in military personnel wounded in battlefield.

Blood Purification for Organ Failure Abstract: High energy milling gives a fully dense reactive powder with a narrow particle size distribution which bova produce structurally biased materials by design through control of the milling parameters and process control agents.

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Specifically, affordable active phased arrays are being explored for the purpose of reducing the cost of missile seekers. Experimental data generated will enable estimates of electrolyte throughput, metal recovery rate, total mass recoverable, cell configuration and validate lack of hazardous material generation.

In bad weather, the MEMS tuning fork gyro lpr determine the bearings to targets. The proposed integrated system combines electrochemical machining, electrowinning, induced bcoa and metal ion concentration to directly recover the machined metal, for engineering materials of interest to the U. Li and his colleagues have ,pt demonstrated that Hsp90alpha is secreted by human kerotinocytes to the extracellular space in response to hypoxia and TGFalpha growth sfp stimulation, and promotes cutaneous cell migration, and accelerates healing of mouse skin wounds.

Creare proposes to build a sensor for the determination of azimuth and elevation using novel MEMS rate gyros and inclinometers. In some cases, both optical and millimeter wave seekers are being combined in a way that requires a common aperture. Microwave Packaging Technology, Inc. The technical concept laid out in the present proposal represents a significant advancement of the state of the art in anti-icing coatings.

Our goal is to implement an effective non-intrusive real-time monitoring system by integrating hardware platform and software components. In this context development of highly- performing assays with increased screening capacity is seen as a valuable tool needed to extend screening campaigns.

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Technological challenges involve securing a long operational life, performing communication through metal walls, and the recognition of dynamic events.

In Phase II we will build the pilot-scale facility, qualify the technology, and develop more detailed quantification of the reduction in the sludge produced during recycled electrochemical machining.

In Phase I, we will evaluate the feasibility of the proposed concept and develop a technology roadmap and system design addressing methods for increasing the level of opaqueness and contrast resolution. This uniqueness and capability also makes the system more complex than a standard launch canister.

Carbon fiber reinforced thermoplastic matrix composites TPMCs offer significant benefits for high performance composite structures for aviation and missile applications. This new tool will therefore be valuable in preventing the manufacture of composites with compromised mechanical properties and will eliminate the cost of unnecessarily discarding undamaged fabric that may have been briefly exposed to high humidity.

In particular, the position and 3-D attitude estimate of the navigation system is significantly more robust during periods when fewer than four satellites are available due to jamming or line-of-sight obstructions.

Transparent polycrystalline ceramic nanomaterials benefit a host of military applications including as laser materials, transparent armor, and high strength windows. This technology has significant transition and commercialization potential for military and commercial aviation applications. Since these weapons are highly inefficient, a considerable portion of the input energy is converted into waste heat, and this heat must be efficiently removed in order to be able to deploy these DEW systems and other electronics on aircraft.

This proposal is focused on demonstrating the feasibility of a patent-pending orthotic device pioneered by Kingetics LLC to reduce injury and enhance ambulatory performance.

To optimize the reactive Al content in nano-Al powders, UES proposes the use of silicon, deposited through a modified chemical vapor deposition process, as an innovative passivation strategy for stabilizing nano-Al. While current nanopowder processing techniques produce large quantities of quality ceramic nanopowders, they yield parts with sub-micron to micron grain sizes when manufactured by conventional press, sinter, and HIP methods or through hot pressing. Development of readily forward-deployable therapeutic measures to enhance wound healing could promote earlier restoration to health and return to duty.

As well as providing significant reductions in weight, power consumption, footprint and substantial increase in interrogation speed, the proposed development has diverse spin- off applications. In Phase II, POC plans to develop a cumulative moisture sensor prototype and evaluate the process through fabrication and testing of the prototype.

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