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Quantum Gravity or Gradiometer Sensors for maritime navigation, through wall imaging, detecting deeply buried structures and Stealth aircraft and Submarines

We are in midst of the second quantum revolution moving from merely computing quantum properties of systems to exploiting them. Quantum technology (QT) applies quantum mechanical properties such as quantum entanglement, quantum superposition, and No-cloning theorem to quantum systems such as atoms, ions, electrons, photons, or molecules.   Quantum bit is …

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Cyberbiosecurity threats, vulnerabilites and cyberbiosecurity technologies

The life sciences now interface broadly with information technology (IT) through its industrial applications in health care, agriculture, manufacturing, automation, artificial intelligence, and synthetic biology. The information moves between living and cyber systems in a two-way flow.   Global public health crises create conditions of extreme fragility where dual-use technologies …

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Missile Structures and Materials

In military terminology,  a missile is a guided airborne ranged weapon capable of self-propelled flight usually by a jet engine or rocket motor. Missiles have five system components: targeting, guidance system, flight system, engine, and warhead. Missiles come in types adapted for different purposes: surface-to-surface and air-to-surface missiles (ballistic, cruise, …

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Military optronics surveillance & sighting systems

Optronics, surveillance and sighting systems allow defence forces to effectively locate, track, observe and engage a range of targets in land, airborne and maritime warfare domains both during daylight and after dark. These military-grade systems play a vital role in border security, base protection, patrol and intelligence, surveillance and reconnaissance (ISR) missions.    Unmanned systems have become an integral part of military forces worldwide, …

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DARPA RCM building Resilience into Chemical Manufacturing from supply chain disruptions.

The United States relies on chemical manufacturing to provide products ranging from everyday consumer goods (plastics, fabrics, adhesives, paints) to cutting edge technologies (medicines, electronic materials), industrial goods (dyes, pesticides) and military supplies (fuels, explosives). While many high-volume, petroleum-derived chemical feedstocks are produced domestically, much of the fine chemical manufacturing …

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Artificial Intelligence (AI) for Additive Manufacturing (AM)

Artificial intelligence (AI) and additive manufacturing (AM) are both disruptive new technologies. AI has entered many aspects of our lives, but has not been fully realized in the world of AM. Because of the vast amount of data and the digital nature of the technology, AM offers tremendous opportunities in …

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Ultra-Wideband Underwater Backscatter via Piezoelectric Metamaterials

Researchers are developing the Internet of Underwater Things (IoUT), a worldwide network of smart interconnected underwater objects that would transmit data from existing and planned roaming, autonomous vehicles, and underwater sensor networks to networks above the surface in real-time.   DARPA launched the “Ocean of Things” program in 2017 to …

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DARPA SCEPTER

Militaries are facing complex operational and tactical environments such as the increasing challenge of non-state/lone actors; persistent rapid technological development along with its broad availability via the internet; and the advent and expansion of new domains of possible threat such as information systems, space, cyberspace, electronic warfare, and autonomous weapons. …

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DARPA RTRA developing array processors reconfigurable with missions

All modern personal computers including desktops, notebooks, smartphones, and tablets, are examples of general-purpose computers. General-purpose computing incorporates ‘Von Neumann’ approach, which states that an instruction fetch and a data operation cannot occur simultaneously. Therefore, being sequential machines, their performance is also limited.   On the other hand, we have …

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Emerging Quantum data centers

Quantum computing has the potential to create new machines that can vastly exceed the capabilities of today’s most powerful supercomputers. A quantum computer harnesses quantum mechanics to deliver huge leaps forward in processing power. Instead of the binary bits used by digital computers, quantum computers use qubits – subatomic particles …

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