Examples of using Nanometer in English and their translations into Chinese
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Nanometer(nm) is equal to one billionth of a metre.
Meaning that anything smaller than 200 nanometer we cannot.
Since a nanometer is one billionth of a meter, this form of engineering would involve the manipulation of separate atoms.
In theory: micro-machine and detection technology can reach the nanometer level.
A nanometer is a millionth of a millimeter and the measurement refers to the size of the smallest feature on a chip's surface.
To continue this progress very small circuits at the nanometer scale would need to be developed.
Size is more difficult to do fine(but now flow through the sieve can be very small,but not to nanometer).
Being able to image and control quantum phenomena at the nanometer scale like this opens up a new route towards quantum computing.".
This variation in size is 10 times smaller than the diameter of a hydrogen atom and100 times smaller than a nanometer.
Each nanometer represents one-thousandth of a micrometer, and is measured by the distance between two successive peaks(see Figure 1).
In the process, the tin particles are reduced to nanometer size, trapped inside the aluminium, stabilising them during charging cycles.
Smaller nanometer manufacturing processes have historically allowed semiconductor companies to create faster, more power-efficient chips.
And the distance separated by electric charge is determined by the size of the ionic in the electrolyte,which is less than one nanometer.
Nanometer design of the wafer starts and revenue will grow, 7-nanometer early adopters will complete the test chip design and order.
It proved effective at preserving an entire brain to the nanometer level, including the connectome- the web of synapses that connect neurons.
The sub-resolution microscopes used for these techniques are also referred to as nanoscopes,as they resolve images at the nanometer scale.
Nano'-sized materials(a nanometer is one millionth of a millimeter) could pose health and environmental hazards under specific conditions.
Note the relatively large degree of spectral overlap between the filters,especially in the 520 to 620 nanometer(green, yellow, and orange) region.
The semiconductor industry is now using nanometer as opposed to"microns" because the conversion is easier as it eliminates the need for decimals.
A matter's physical properties, including its chemical reactivity, electrical conductivity, and melting point,become relatively different at the nanometer scale.
Logic and storage chips have structures in the nanometer range and can only be produced using complex exposure processes with laser radiation.
Nanotechnology is an exciting field within science and technology related to materials anddevice structures with characteristic dimensions in the nanometer regime.
Once they are in the nanometer range they can really penetrate a cell and that means they can penetrate organs, and that would be worrying.
The MIPS32 24K core familyoffers performance of 660 MHz in a 90 nanometer G process, while minimizing design time and reducing product costs.
Moreover, on a nanometer scale, structures' properties are often different then on a macro scale because quantum mechanical effects become important.
The 24K core family offersperformance advantages of 660 MHz in a 90 nanometer G process, while minimizing design time and reducing product costs.
With the improvement of nanometer zinc oxide production process, nanometer oxide industry application will enter a stage of rapid development.
Being able to see little"memory proteins" move into place at the nanometer scale is critical for making progress on devastating diseases like Alzheimer's disease.
In the 500- 680 nanometer range, lens transmission measures over 85 percent and enables direct process monitoring through a simple combination of image sensor and filter.
With its advanced 1060 nanometer semiconductor lasers, Jenoptik facilitates reliable applications in the field of Healthcare& Life Sciences as well as for advanced manufacturing technologies.