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The device can also amplify its flow, another important function of transistors, allowing them to power other components in the circuit.
Transistor-like devices have been made out of DNA, making biological gadgets with built-in circuitry possible ...
Researchers at Stanford University and the University of Pennsylvania reported in Science online (early content) on March 28 that they had engineered a genetic circuit that performs like a ...
Researchers at the Technion-Israel Institute of Technology have used the self-assembly of DNA molecules to build electronic devices from carbon nanotubes. The DNA acts as a scaffold for positioning a ...
Two teams of scientists have managed to create cellular transistors, meaning that the groundwork is now firmly in place for a biological computer.
Scientists use DNA to assemble a transistor from graphene Date: September 6, 2013 Source: Stanford School of Engineering Summary: Graphene is a sheet of carbon atoms arrayed in a honeycomb pattern ...
Researchers at IBM have found a way to meld biology and computing to create a new chip that could become the basis for a fast, inexpensive, personal genetic analyzer. The DNA sequencer involves ...
The thing gets done faster.” The DNA transistor is on track to supply a complete genome sequence within the next few years for less than $1,000.
Traditional transistors are designed to perform predetermined logical functions, while RFETs are used to build circuits with functions that can be programmed on the go.
Transistor makes a great first impression. Its combat dances between familiar isometric action and turn-based tactics without missing a beat. The story radiates mystery and political intrigue ...
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