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Community Scoop » Report On Improving Technology Learning And Career Pathways Released


Press Release – The Royal Society of New Zealand
A report that provides advice on improving teaching, learning and assessment of technology and hangarau within NCEA and the secondarytertiary education system has been released today. It has been prepared by an expert advisory panel convened …
A report that provides advice on improving teaching, learning and assessment of technology and hangarau within NCEA and the secondary tertiary education system has been released today. It has been prepared by an expert advisory panel convened by Royal Society Te Apārangi.
It affirms that broad-based technology education aligns with the goals of Aotearoa New Zealand to be a nation of world-leading innovators and recommends changes to emphasise technological literacy rather than technical education. ....

New Zealand , New Zealand General , New Zealanders , Tiritio Waitangi , Andrew Cleland , Alister Jones , Angela Christie United Fire Brigades Association , Astrid Visser Massey University , Mary Claire Proctor Wellington Institute Of Technology , Royal Society Te Ap , Development In Technology , Cheryl Pym University Of Otago , Expert Advisory Panel , Nature Of Technology , Ministry Of Education , Dr Cliff Harwood Nz Defence , Dr Cathy Buntting University Of Waikato , Digital Technology , Design In Technology , Royal Society Of New Zealand , Whitireia Community Polytechnic , University Of Waikato , Press Release , Royal Society , Aotearoa New Zealand , Senior Deputy Vice Chancellor ,

Breakthrough lays groundwork for future quantum networks


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IMAGE: Army-funded research sends entangled qubit states through a communication cable linking one quantum network node to a second node. This research could help lay new groundwork for future quantum communication.
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Credit: Nancy Wong, University of Chicago
RESEARCH TRIANGLE PARK, N.C. New Army-funded research could help lay the groundwork for future quantum communication networks and large-scale quantum computers.
Researchers sent entangled qubit states through a communication cable linking one quantum network node to a second node.
Scientists at the Pritzker School of Molecular Engineering at the University of Chicago, funded and managed by the U.S. Army Combat Capability Development, known as DEVCOM, Army Research Laboratory s Center for Distributed Quantum Information, also amplified an entangled state via the same cable first by using the cable to entangle two qubits in each of two nodes, then entangling these qubits furt ....

Johna Maclean , Fredrik Fatemi , Andrew Cleland , Us Army Combat Capability Development , Army Research Office , University Of Chicago , Pritzker School Of Molecular Engineering , Army Research Laboratory Center , Pritzker School , Molecular Engineering , Combat Capability Development , Army Research Laboratory , Distributed Quantum Information , Sara Gamble , Molecular Engineering Innovation , Chemistry Physics Materials Sciences , Technology Engineering Computer Science , Computer Science , ஜொன்னா மக்லேந் , ஆண்ட்ரூ சிலேலாண்ட் , எங்களுக்கு இராணுவம் போர் திறன் வளர்ச்சி , இராணுவம் ஆராய்ச்சி அலுவலகம் , பல்கலைக்கழகம் ஆஃப் சிகாகோ , பிரீதிஜ்கேர் பள்ளி ஆஃப் மூலக்கூறு பொறியியல் , இராணுவம் ஆராய்ச்சி ஆய்வகம் மையம் , பிரீதிஜ்கேர் பள்ளி ,

Qubit breakthrough is a big step towards networked quantum computers say researchers


Qubits, or quantum bits, are the basic unit of quantum information, and their properties can be exploited to create next-generation quantum technologies; one of those properties is entanglement. Entanglement happens when two qubits are made to interact in a certain way, and they become inexplicably linked. Once entangled, they start sharing the same properties, no matter how distant they are from each other.  
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(TechRepublic)
This means that by looking at one half of an entangled pair, scientists can know the properties of the other particle, even if they are thousands of kilometers away. Using entanglement, scientists could create webs of linked qubits, which could in turn help make quantum computing more powerful, as well as lay the groundwork for future quantum communication networks.  ....

Andrew Cleland , Cleland Lab , University Of Chicago Cleland Lab , University Of Chicago , ஆண்ட்ரூ சிலேலாண்ட் , சிலேலாண்ட் ஆய்வகம் , பல்கலைக்கழகம் ஆஃப் சிகாகோ சிலேலாண்ட் ஆய்வகம் , பல்கலைக்கழகம் ஆஃப் சிகாகோ ,