Examples of 'nanotubes can' in a sentence
Meaning of "nanotubes can"
Nanotubes can: This phrase implies that nanotubes have the capability to perform certain actions or functions
How to use "nanotubes can" in a sentence
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nanotubes can
Carbon nanotubes can offer a real solution.
The size distribution of the carbon nanotubes can be determined by counting.
Nanotubes can change the shape of water.
Why modified carbon nanotubes can help the reproducibility problem.
Nanotubes can be manufactured at low cost.
Spinach embedded with nanotubes can detect explosives and much more.
Nanotubes can grow vertically on the collector substrate, such as a silicon wafer.
Certain types of carbon nanotubes can carry far more electricity than copper.
Nanotubes can be either conductors or semiconductors, depending on how the tube is rolled up.
This carbon yarn made from nanotubes can create energy when pulled.
Carbon nanotubes can be metallic or semiconducting depending on their structure.
Next articleScientists show carbon nanotubes can be broken down by MPO.
Carbon nanotubes can be used as electrochemical devices.
As an example, the synthesis of nanofibres or nanotubes can be carried out as follows,.
Carbon nanotubes can be good conductors of electricity.
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Alternatively or in addition, fibers containing nanotubes can be wrapped around the first coating.
Carbon nanotubes can be of several types.
With such a highly branched oligomer as dispersion aid, very finely dispersed nanotubes can be obtained.
Individual nanotubes can be seen in the image.
According to the present invention the carbon nanotubes can be purified in a non-destructive method.
These nanotubes can be manufactured using two methods.
Large, transparent sheets of carbon nanotubes can now be produced at lightning speed.
Carbon nanotubes can be viewed as formed of rolled graphene layers.
These two elements, sunlight and titanium oxide nanotubes can transform carbon dioxide into methane.
The nanotubes can also be used to reinforce continuous fibers.
A distance between adjacent two carbon nanotubes can be larger than a diameter of the carbon nanotubes.
The nanotubes can induce an increase in conductivity to provide this protection.
According to this process, carbon nanotubes can be mixed with a solvent, such as xylene.
Nanotubes can include structures up to 1 centimeter long, alternatively with a particle size from 2 to 50 nanometers.
This elastic behavior of the nanotubes can be utilized in micro / nano-robotic designs.
The nanotubes can be either single-wall carbon nanotubes ( SWNT ) or multiple-wall carbon nanotubes ( MWNT ).
More than one type of nanotubes can be included in mixture 37.
Certain nanotubes can span the thickness of the balloon wall.
Typically the aspect ratio of carbon nanotubes can be as high as 500 or larger.
Carbon nanotubes can be produced by any method known in the art.
In a further embodiment, doped carbon nanotubes can comprise less than about 1 percent, by weight nitrogen.
The carbon nanotubes can be dispersed in a matrix for forming a composite material.
Large structures of carbon nanotubes can be used for thermal management of electronic circuits.
Carbon nanotubes can have either a single-wall construction ( SWNT ) or a multi-wall construction ( MWNT ).
A microchip made with carbon nanotubes can outperform modern chips when it comes to energy efficiency.
The carbon nanotubes can be prepared using a variety of conventional methods known in the art.
For example, carbon nanotubes can be used to reinforce vehicle bodies.
The carbon nanotubes can be of the single wall, double wall or multi-wall type.
With this treatment, the nanotubes can be activated by part of the visible sun spectrum.
The carbon nanotubes can be either single -, double - or multi-walled.
The carbon nanotubes can be multi-walled.
Carbon nanotubes can be of the single-walled, double-walled or multi-walled type.
Single wall nanotubes can have a diameter of approximately 1 nm.
The carbon nanotubes can be used as raw nanotubes, i . e.
The length of the nanotubes can sometimes reach 100 um on a minority of the fibers.
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These networks of carbon nanotubes are extremely flimsy
Carbon nanotubes have a number of interesting properties
They insert copper into these nanotubes