Showing posts with label graphene. Show all posts
Showing posts with label graphene. Show all posts

Wednesday, May 4, 2022

The new quantum processors are more and more powerful.



Quantum entanglement and photon clouds can be the heart of next-generation quantum microchips. The idea is that there are two graphene layers and between them is the photon cloud. The quantum entanglement will form through that photon cloud in which photons are superpositioned and entangled. That energy bridge transfer energy to the photon cloud. 

That kind of system is making it possible to create more and more powerful computers. The worst problem with the photonic superposition is that it's quite a short-term system. That thing means that the quantum computers must be re-adjust after a short time. 

Quantum memristors are making it possible that the re-adjustment of the quantum computer can be automatized. The system will take the positions that are used in operations from memristors. That allows the quantum computer can continue its operation after re-adjustment. And the superconductors that can let electricity travel in only one direction are making it possible to create the diodes for superconducting microprocessors. 

But if the system makers can create stable superpositions. That thing can make dreams true. Making a stable quantum computer is possible in the case that the superpositions and entanglements are made between extremely high-energy particles. And the most suitable for that purpose is the quantum-size black holes. 

The idea is that electrons are turned into quantum black holes by pumping them with energy. And then the wave-movement is pulled between those black holes. That wave movement is acting as the belt in gear. And it can transfer energy to the photon cloud around it. But the problem is how to make those quantum-size black holes? The stable quantum computer that can operate even for years without breaks is the greatest dream of mankind. 

The problem with solid-state quantum microprocessors is that they require superconducting. The superconducting makes it possible that information keeps its form while it travels through the quantum system. There is lots of work to do before we will replace our laptops by using quantum processors. 

But maybe someday we would equip ourselves by using the quantum computers that are so easy to use as modern binary computers are. The problem is that the systems require very much energy, and they must be re-adjust after a while. 


https://networkedinternet.blogspot.com/

Saturday, April 16, 2022

The quantum entanglement can also make it possible to create the ultimate engines and ultimate stealth technology.



When we are thinking about the quantum entanglement it can use to make the most powerful engines in the world. The engine itself can be the two- or tri-layer graphene structure. The energy flows in quantum entanglement to the lower energy areas. 

And that thing makes it possible to make the engine where quantum entanglement is driving energy in the opposite direction where the craft will travel. That kind of graphene structure-based engine makes it possible to create a craft. That can change its flight direction very fast and that thing can make the UFOs:s possible. 

Another thing that quantum entanglement can use to make things invisible. The quantum entanglement makes the quantum hair around the structure. And that denies the reflection to the observer's direction. So quantum hair acts like an owl's soft feather suit. It denies the reflection of the sound

That thing can be the key element to the next-generation stealth. One thing that can make the craft invisible to the radar infrared and the human eye could be the quantum rotor. 

The quantum rotor is the quantum entanglement or other quantum structure that rotates like a rotor. The rotating quantum structure will push photons to the direction that can be the back of the craft.  So that thing can be the thing that makes objects invisible. 

The size of the quantum rotors is far smaller than the nanomachines. And that thing allows them to operate also at the high-speed flight. The quantum rotors can also be the tools for getting closer to the speed of light. When the structure is moving at a very high speed. The quantum rotors can put to push the quantum fields backward. And that thing makes the craft invisible to the human eye. 


In the "Bermuda system," the ion cloud can cause the object loses its electrons. And the ion flow or loss of electrons can cause the object is vanishing. 


The thing is that the ion or especially the proton flow will make the object invisible to radars. That thing can explain the vanishing of some aircraft. The proton flow will pull electrons out of the material.

In some theories, the ion field that is forming around the aircraft or ship can create the effect called the "Bermuda triangle". If a proton cloud surrounds the object. That thing removes electrons from the object. And that destroys the object. 

In some more or less exciting visions, the loss of some propeller aircraft causes by the tests where the air will ionize in the propeller. And then, magnets will pull those ions to the aircraft's wings causing an airflow that is creating the buoyancy. If that system is not made the right way the ion flow destroys the aircraft immediately.

So was the fate of Flight 19  famous  5 TBM-3 Avenger torpedo bombers which vanish near Bermuda on December 6 1945 the ion flowed around the aircraft. If the propeller would ionize the nitrogen and oxygen in the air. That thing can destroy the aircraft immediately. That kind of ion cloud can cause the vanishing of almost all objects because they are pulling electrons away from an object or they can impact an object causing that material to vaporize. 


https://www.nasflmuseum.com/flight-19.html


Saturday, April 9, 2022

The new tunable graphene systems can lead the way beyond 5G.



The new multi-channel oscillation circuits can base the use on graphene. 


Graphene is one of the most interesting materials. There is the possibility that graphene can be used in the new type of sensors. In those sensors, the superpositioned and entangled particles can sense electromagnetic radiation. When radiation hits the quantum entanglement it increases its energy level. Those changes can be seen by using electromagnetic sensors. 

And that thing makes it possible to sense distant objects. So, the similar technology that is used in quantum computers. Can use in quantum sensors. The difference between a quantum computer and a quantum sensor is that the quantum computer uses natural radiation or information that it takes from its environment. And quantum computers use controlled, synthetically produced information. 

When we are thinking the graphene antennas there is the possibility to make a very fast-multichannel radio transmitter by using graphene. In those antennas, there are different types of ions or atoms. That is anchored in the graphene structure. And that thing makes it possible to send data transmission by using the multichannel radios. There are multiple frequencies. 


The graphene and atoms or ions that are trapped in graphene. Can use as crystals in the new type of oscillation circuits. 


In that kind of system, the idea is that each element is sending electromagnetic radiation with its frequency. That frequency depends on the size of those atoms or ions. And the radiation can make by stressing those atoms or ions by using electromagnetic radiation. So if there are 12 different elementary atoms that system can use 12 frequencies at the same time. That kind of system can use in multi-channel data communication. 

There is the possibility to make the extremely safe communication with this kind of antenna by using synthetic extremely heavy-weight, highly radioactive isotopes. The particle accelerator can create those isotopes and they can be shot into the graphene. Then those ions or atoms are stressed with radiowaves. Then those atoms will vanish. 

Of course, the receiver must have the same elements in its antenna. But that thing makes it impossible that the outsider can receive that message. The thing is that the oscillation requires that there are similar atoms or molecules in the graphene crystal. Without that resonance. Is impossible to brake the message because it is impossible to receive. 


Sources: https://scitechdaily.com/breakthrough-in-electrically-tunable-graphene-devices-could-lead-to-the-development-of-beyond-5g-wireless-technology/

Periodic table of elements. 

https://miraclesofthequantumworld.blogspot.com/

Saturday, March 26, 2022

Superconductivity and collapsible power plant satellites can be the systems that can slow climate change.




Image 1) "Experimental data from trilayer graphene (bottom) shows two circular Fermi surfaces, creating a ring-like shape, in which the occupied electronic states lie (top). In unconventional superconductivity, the electrons are assumed to be “glued” together by interaction, not to be confused with their usual interaction of electrical repulsion. (Courtesy: IST Austria)" (Physicsworld/New explanation emerges for robust superconductivity in three-layer graphene). 

In that image, you can see that the outer electron is traveling the outer layer in the quantum field. And the inner electron is traveling near the structure. So the energy travels between those electrons from the outer quantum field to the inner quantum field. The idea is that the size of the outer quantum field is larger and its energy level is higher than the inner quantum field if the inner quantum field is lower energetic. 

When electrons prowl the outer quantum field it travels a longer journey than the electron, which travels in the inner quantum field. More energy is transmitted in it than to electron that travels in the inner quantum field. So the structure inside the inner quantum field can turn lower energy by cooling it with the Bose-Einstein condensate. 

The superconductivity with three-layer graphene can be more fascinating than we ever imagine. The reason for that phenomenon could be that the up and below the middle graphene layer would make the pressure effect that denies the oscillation of the middle layer. 

The resistance is extremely low in 2D materials. Because the wires are so thin, oscillation in that kind of material has no similar effect with the oscillation in regular wires. That thing makes that three-layer graphene structure superconducting. The superconducting materials are interesting. 

They can use in quantum computers but those superconducting materials are suitable to use in the systems that are synthesizing energy from the radio waves. The superconductivity can be very interesting if that thing is connected with Lorentz Butterfly. The Lorentz butterfly would be the superconducting antenna, that pumps energy to the system. The idea of that thing is that the energy level will rise in the system until it can transfer somewhere. 

The 2D graphene and the systems that can transform radio waves can use as an energy source in long-term space missions. Those systems don't need nuclear fuel. But the problem is how high voltage those systems might have the ability to create. 


https://physicsworld.com/a/new-explanation-emerges-for-robust-superconductivity-in-three-layer-graphene/


https://en.wikipedia.org/wiki/Fermi_surface


Image:https://physicsworld.com/a/new-explanation-emerges-for-robust-superconductivity-in-three-layer-graphene/





Collapsible power plant satellites can be in use sooner than we expect. 


The thing is that the kilometer-size structure that is launched in one shot for testing the artificial gravitation can work as a pioneer for creating large-size space structures. Artificial gravitation doesn't mean that its strength is the same as the gravitation on Earth. The purpose of gravitation is to anchor objects to their positions. And the benefit of artificial gravitation is that it anchors also non-magnetic objects like flowerpots to layer. 

The kilometer-size space structure can also be the pioneer for power plant satellite structures. The idea is that the large-size solar panels can be like small scaly silicon cells that are on the large mylar layer. That structure can make the power-plant satellites possible. 

The mylar structure can connect to the power delivery unit. And the system can transmit energy to Earth by using lasers or radio masers. The energy transmission would happen by targeting that radiation to antennas. That kind of system is more flexible than the systems that are planned in the 1970s. The power plant satellites are introduced for the choice for use of fossil fuel. And maybe they are real sooner than we expect. 

Some people resist that technology. Because those satellites can also use as killer satellites. And they can create megawatt-scale electromagnetic radiation that can affect ICBM swarms and those systems can also be dangerous for cities. Even if that satellite cannot destroy the houses or melt stone on the ground. It can form powerful EMP-pulses. 


https://scitechdaily.com/kilometer-scale-space-structures-from-a-single-launch-for-generating-artificial-gravity/


Image)https://scitechdaily.com/kilometer-scale-space-structures-from-a-single-launch-for-generating-artificial-gravity/


https://miraclesofthequantumworld.blogspot.com/

Friday, February 25, 2022

The new materials are pathfinders in photonic circuits and stealth technology.



The new graphene-based material reflects light backward. And it is a big step for the next-generation photonic circuits. But the new nano-materials are also possible to use in the next-generation stealth technology. There is introduced an idea to conduct the radar impulses to the accumulator. That means that the radiation's reflection is denied by conducting that radiation to energy storage. 

The thing is that if the energy and wave movement travels only to the object without reflection. There is no way to see that object. But the problem is that the system must sometimes remove the extra energy by conducting it to the ground. 

And there are suspicions. That some UFO:s that are hovering above the water is removing their energy storage. In that case, those aviation systems use technology that absorbs all radiation in the craft. So when the energy level rises too high the craft must remove extra energy to somewhere. 

Graphene-based materials have an abnormally strong absorption ability. The problem is that if the object would not reflect. It will turn very hot if it cannot remove that heat somewhere. The new graphene based-material allows conducting the light to the point where the researchers want. And that ability is useful in photon circuits. But it can also turn the aircraft or ship into shadow. The light can conduct to a laser that sends it in the wanted direction. 



Image 2)


And the problem with this type of material is that they must remove their energy somewhere. The overload of energy causes the problem. The answer to that problem could be to load the extra energy to capacitors or the energy can conduct to air by using saltwater where the extra energy is loaded. 

And that thing can make it possible to make the objects that are not giving a reflection at all. There is the possibility that the graphene-based materials are conducting light and all other electromagnetic wave movements to the middle of the object like aircraft. And then that light and wave movement can conduct in the wanted direction by using laser technology. 

One version of how to deny reflection is simple. The system must just make the object that has as low an energy level as possible. That thing makes it possible that the energy travels only to the object. And that makes the object invisible for radar, infrared, and even for the human eye.


https://phys.org/news/2022-02-abnormally-strong-absorption-graphene.html


https://scitechdaily.com/nano-architected-material-refracts-light-backward-an-important-step-toward-photonic-circuits/


Image 2) https://scitechdaily.com/nano-architected-material-refracts-light-backward-an-important-step-toward-photonic-circuits/


https://interestandinnovation.blogspot.com/

Saturday, February 19, 2022

Researchers plan to send a probe to Mars by using a powerful laser system.




The lasers are allowing to send spacecraft to orbiter without pollution. That thing makes them a very powerful tools. In the most futuristic plans, the extremely powerful nuclear-powered lasers can send the spacecraft even to other solar systems. And the same lasers that send spacecraft to orbiters and other planets can use as ASAT (Anti Satellite-systems). Those lasers could destroy satellites from the orbiter. 

There is planned to use giant laser systems for lifting satellites to the orbiter of the Earth. And also those lasers could use to send probes to outer solar systems. The problem with those giant lasers is that the systems are heating the spacecraft. That heat effect can minimize by cooling the satellite as cold as possible. The use of lasers for sending spacecraft to orbiters is not new.

In those systems, the laser ray makes hot air under the craft. And that effect lifts the craft from the ground. In some other plans, the laser ray that is inside the craft would use to vaporize liquid hydrogen. That thing can use to thrust spacecraft. The lasers can also use for vaporizing the metals that are driven to particle accelerators. Those particle accelerators can be used as ion motors. 


Graphene-based high-power particle accelerators can be used as ion engines. 




Image 1:) "(a) Schematics of the experiment. By irradiating a large-area suspended graphene target (LSG)with the ultra-intense J-KAREN laser, energetic ions are generated. (b) and (c) show the Raman spectrum and microscope image of graphene, respectively. (d) and (e) show the schematic drawing of stack detector using solid-state path trackers and Thomson parabola spectrometer (TPS), respectively. (g) and (f) show the typical data from TPS and stack, respectively. Credit: 2022 Y. Kuramitsu et al. Robustness of large-area suspended graphene under interaction with intense laser. Scientific Reports" (ScitechDaily/Graphene and an Intense Laser Open the Door to Extreme Energetic Ion Acceleration

As lasers, the ion cannons can use to push the craft upward. The craft can be equipped with the opposite polar electric load than the ion flow. That allows to rise it to the orbiter. 

The graphene and lasers are making it possible to create intense powerful ion accelerators. Those systems can use as an engine in spacecraft. The ion engines are particle accelerators. The graphene-ion accelerator can use for creating thrust for spacecraft. The thing is that the high-energy accelerators can also use as space weapons for the killer satellites whose primary objective is to destroy enemy satellites. The killer satellites can also deliver ions to the atmosphere for disturbing enemy communication. 


https://futurism.com/the-byte/mars-giant-laser-earth


https://scitechdaily.com/graphene-and-an-intense-laser-open-the-door-to-extreme-energetic-ion-acceleration/


Image:) https://scitechdaily.com/graphene-and-an-intense-laser-open-the-door-to-extreme-energetic-ion-acceleration/

Wednesday, October 6, 2021

The "Tokamak" fusion test reactor can use as the base of the new and very effective quantum computers.



The "Tokamak" fusion test reactor can use as the base of the new and very effective quantum computers. Those are basing the low-energetic particle accelerators. 

The image above The electron-photon interaction while the electron is traveling in the tube. The power of the light quantum is determining the state of the electron-based qubit. 

Along with the internal kinetic energy of an electron, that is another determinator for the state of the qubit. That thing allows creating the new type of qubits that are more powerful than ever before. There was different text in the original image. And you might see it in the link below this part. 


Image:(https://phys.org/news/2021-09-unveils-quantum-nature-interaction-photons.html)


The idea is that the electron or qubits are traveling the circular trajectory. And the system can load data and reuse the electron very fast. That means. When the electron-qubit has traveled through a circuit it releases its data and then takes the new data load. That means it can use smoothly and fast. 

One of the versions of the solution that can release the energy or data from traveling qubits is the graphene net. There are positioned ions or electrons in the middle of those graphene carbon frames. Then the traveling data-carrier qubits hit those particles and the energy level that is released determines the qubits state. 


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The photon-based qubit can be the light-cable that is in a circular position. 


The photon-based qubit can be the light-cable that is in a circular position. In that system, every class fiber is acting as the individual state of the qubit. That system can operate at room temperature. 

And the same thing that is used in the electron-based qubits can use in the photon-based qubits. The photon-based qubit can be the optic cable that is put in the circular position. 

The lasers will pump photons into the structure where they are annealed. And when those photons reach the sensor they release the data. In light cable every each light fiber can form its state of the qubit. And the light cable entirety is acting as the qubit. 


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The "Tokamak" reactor can act as a model for quantum computers that can operate in higher temperatures.


The "Tokamak" reactor can act as a model for quantum computers that can operate in higher temperatures. The idea of the qubits that are basing the circular accelerators is that the energy of those systems can rise so high that the changes of the energy level are easy to notice. Pumping the data to the electrons can happen by using the photons that are loading to the traveling electrons in the particle accelerator. 

The high energetic system would cover the errors from outside radiation by using so high energy load that weak outcoming interactions cannot affect that qubit. In some other ideas, different particles like protons, neutrons, and electrons can use to qubits. In that idea, every each of those particles is the one layer of the qubit. 

And the timing of the release of that energy is the difficult thing. The system can be an opposite version of the free-electron laser. While electrons are traveling in the tube they would stress by using photon emission. And then the system would release that data from the photons by changing its direction where it realizes its data as the light quantum. So this type of accelerator-based quantum computer can recycle those electrons. There is an idea that the transversely set fullerene tube can use to delete the qubit. 

And then they would start the new round in the quantum system. 

The electron-photon quantum interaction can make it possible to create new and easier-to-use quantum computers. What if researchers could use a donut-shaped structure, where electrons are traveling in the circular track for making the more powerful quantum computers. The idea is that the electrons are orbiting in the particle accelerator and that system would load the data to the electrons and remove them. The process in that quantum computer would recycle the electrons. 

While traveling in the particle accelerator that looks like a "Tokamak" fusion reactor the photons will load information to those electrons. The problem is how to adjust the point where the electron releases its data. The ability to make the electrons travel around the particle accelerator and then reload and release the data in and out of those electrons would make the system more powerful than ever before. 

In this system, the adjustment of the energy that is loaded to the quantum system is problematic. If the energy load to qubit is too high or too low the system releases the energy load or data at the wrong moment and point. That thing would cause problems for making the new and more powerful quantum computers. 


https://phys.org/news/2021-09-unveils-quantum-nature-interaction-photons.html


https://en.wikipedia.org/wiki/Tokamak_Fusion_Test_Reactor


https://kimmoswritings.blogspot.com/



Wednesday, September 8, 2021

Combining quantum- and nanotechnology is making the new type of machinery and systems possible.



Image: ()3D-graphene structure


The superpositioned and entangled particles can use as quantum circus saws. That makes them the new tools for nanotechnology. The nanosize machines are molecules. And the form of those molecules is the thing that makes them nanomachines.

When we are thinking as an example of the difference between nanomachines and chemical medicals the difference is that chemical medicine interacts with chemical reactions. That reaction neutralizes the medicine molecule. The nanomachine interacts with mechanical way. The typical interaction between nanomachine and the targeted cell is that nanomachine slips in the cell and starts to rotate. 

That system will destroy cell organelles and cut the membrane. Then that nanomachine can continue to other cells. And that thing makes wrong-used nanomachines extremely powerful weapons. One nanomachine can slip into the tissues and turn the victim to liquid. Because nanomachine itself will not interact, and that thing is chemically neutral it doesn't wake up chemical detectors that are normally alarming poison gasses. 


The superpositioned and entangled particles are the smallest and same way the most accurate tools in the world. They can use to affect the single chemical bond in the molecule. 


Those particles can cut the bonds of atoms very accurately. That allows cutting a certain chemical bond. And connect some other atom at that point. That thing will make the fundamental thing in molecular auto replication. If the other part of the double or higher number of bonds is cut. 

There is the possibility to connect a new atom to that point of the molecule. That atom can have the ability to make two bonds. And if one is connected with that released bond and one is touching with the other atoms. That can use to make the branches for the molecule.  That makes it possible to make new shapes for the molecule. 

The molecular auto replication bases the carbon. By making molecular machines. There is the possibility to bring some atoms that are touching and forming chemical bonds at certain points of the carbon chain. Those atoms can be brought in the wanted points by using ion cannon. And then the quantum circus saw will cut the needed bonds of the molecules and then those atoms in those positions. 

Including other atoms in graphene are increasing the abilities of that material. Graphene can position on the atom-size pillars over the layer. That thing gives it more abilities than if graphene is put straight over the layer.  If there are foreign atoms in the points where carbon lines are crossing, they are acting like miniature springs. The ability to make the 3D graphene structure allows making one of the hardest surfaces for the layers. 

The 3D graphene structure means that the multiple layers of the graphene are put over each other. Between those layers are other atoms that are acting like pillars between those layers. That makes this kind of nano-materials more capable than ever before. The pillars can position very accurately by using ion cannons, that is shooting them precisely in the right position. 


The new 2D qubits can make portable quantum computers possible.


Making the 2D qubits is the thing that makes it possible to create new and flat quantum processors. The base element for that 2D quantum structure can be the graphene where in the middle of carbon baskets is put the extremely small antenna that can transfer the data to the carbon structure. 

But the problem is how to separate signals from each line of the graphene. The ability to connect other materials or atoms with graphene makes it possible to create the 2D base for the qubit. In that case, the system bases the quantum annealing. The researchers are put the graphene on the gold film. But the ability to include other atoms inside the graphene structure itself can create the new type of qubits. 

In that case in graphene is connected with other elements than carbon. Which makes it easier to separate signals from each other. But the problem is, how to protect this system against outcoming electromagnetic stress? If the cosmic radiation hits the qubit that thing can destroy the quantum computer. 


()https://phys.org/news/2021-09-gold-quantum-qubits-2d-material.html


()https://phys.org/news/2021-09-adding-foreign-atoms-graphene-boosts.html


()https://phys.org/news/2020-11-d-graphene.html


Image:()()https://phys.org/news/2020-11-d-graphene.html

()https://kimmoswritings.blogspot.com/

Tuesday, January 30, 2018

The bulletproof clothes might be true somewhere in the distant future.

(Picture 1)


Kimmo Huosionmaa

The graphene might be very advanced material alone, but connecting those graphite layers together with another material gives graphene more advanced affection. I'm writing here about the material, what consists graphene with two layers, and in the middle of those layers could be the titanium structure, what works like spring.


Material works like that the outer structure will take the punch, and between those layers is so-called nano-springs, what will suck the power of the punch, before it will conduct to the downed layer of the graphene. That might give the graphene even more capacity, than what it has now. When we are talking about graphene as the material of the bulletproof vests and clothes, we must create some kind of different material that graphene.

2D graphite network would give awesome capacities for the solid surfaces, and if the graphene can put in some particular profile, that can be used as the cover the surfaces of the fighter like F-16. The double surface nano-spring graphene could give more heat and punch tolerance for those aircraft and of course, that material can be used at any surface in the world. When the bulletproof material is in the multi-layer structure, it will be more effective stopper than single layer material.


If there will be little room, what separates the surfaces that will five very good isolation against heat. This kind of information is taken by the spacecraft, what needs protection against micrometeorites. But when we would want to make the bulletproof clothes, we might want to have the material, what feels soft like normal canvas, but could stop the bullets. That kind of material seems very difficult to make, but it might be possible.

(Picture 2)


A surface of the canvas-structure would be covered with nano-technical springs and little plates of fullerene, and that could give the clothes, what feels normal the capacity to stop the bullet. The thing would go that the short but the powerful punch would make those springs to kick back against the punch.

Nano-springs need special shape, and that's why those things are quite expensive and complicated to build. In that nanomachine is installed little lever, what will pull the spring upwards. The production of the nanomachines would happen with some genetically manipulated cells, what can produce the right molecules, what would be put in the places with the ion-cannons or by the viruses, what has wires, that could transfer by electric fields.


Those viruses seem like some kind of the moon module, and their "feet" would help them to the position in the right point of the ion-pump, what will suck the DNA in the cell, and the cores of those viruses could be used as the nanorobots, what will assembly the complicated nano-machines. In the world of nanomachines could the little electric motors made by cutting the motors of the bacteria away from the cells, and then there will put the very thin kevlar fiber with small iron bites, what can use for moving the nano-submarines.


The problem of complicated nano-structures is that the instruments, what is needed in those processes are very small. That's why the controlling of those things is so difficult. And the production of complicated structures is very difficult, and those things must produce billions.  But if those complicated nano-springs can someday product with mass production, there could be possible to make the clothes, what are covered by those things.

Picture 1

https://www.theneweconomy.com/wp-content/uploads/2014/03/Graphene.jpg


Picture 2

https://d1o50x50snmhul.cloudfront.net/wp-content/uploads/2014/07/dn25954



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