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GRAPHENE ANTENNA

  • Graphene antenna
  • A graphene antenna is a high-frequency antenna based on graphene, a one atom thick two dimensional carbon crystal, designed to enhance radio communications

    Graphene antenna

    Graphene_antenna

  • Potential applications of graphene
  • of new graphene materials, and favoured by massive cost decreases in graphene production. Researchers in 2011 discovered the ability of graphene to accelerate

    Potential applications of graphene

    Potential_applications_of_graphene

  • Graphene
  • Hexagonal lattice made of carbon atoms

    Graphene (/ˈɡræfiːn/) is a variety of the element carbon which occurs naturally in small amounts. In graphene, the carbon forms a sheet of interlocked

    Graphene

    Graphene

    Graphene

  • Georgia Tech
  • Public university in Atlanta, Georgia, US

    academic publishing process. Recent developments include a proposed graphene antenna. Georgia Tech and Emory University have a strong research partnership

    Georgia Tech

    Georgia Tech

    Georgia_Tech

  • Terahertz radiation
  • Range 300-3000 GHz of the electromagnetic spectrum

    create a graphene antenna: an antenna that would be shaped into graphene strips from 10 to 100 nanometers wide and one micrometer long. Such an antenna could

    Terahertz radiation

    Terahertz radiation

    Terahertz_radiation

  • Optical rectenna
  • Electronic component

    manufacture devices on pliable substrates to create flexible solar cells. Graphene antenna Metal-insulator-metal diode Nanolaser Moddel, Garret; Grover, Sachit

    Optical rectenna

    Optical rectenna

    Optical_rectenna

  • Graphene plasmonics
  • Z.; Wang, Y.; Ajayan, P. M.; Nordlander, P.; Halas, N. J. (2012). "Graphene-antenna sandwich photodetector". Nano Letters. 12 (7): 3808–13. Bibcode:2012NanoL

    Graphene plasmonics

    Graphene_plasmonics

  • Rectenna
  • Antenna for receiving power

    A rectenna (rectifying antenna) is a special type of receiving antenna that is used for converting electromagnetic energy into direct current (DC) electricity

    Rectenna

    Rectenna

    Rectenna

  • Supercapacitor
  • High-capacity electrochemical capacitor

    graphene. Depending on the temperature, pressure, and concentration of methane, the number of graphene layers produced will vary. Once the graphene layer

    Supercapacitor

    Supercapacitor

    Supercapacitor

  • Nader Engheta
  • Iranian-American scientist (born 1955)

    plasmonic optics, nanophotonics, graphene photonics, nano-materials, nanoscale optics, nano-antennas and miniaturized antennas, physics and reverse-engineering

    Nader Engheta

    Nader Engheta

    Nader_Engheta

  • Yang Hao (engineer)
  • Engineer

    Turing Institute, and the Cambridge Graphene Centre, as well as on the boards of the European School of Antenna Excellence, Virtual Institute for Artificial

    Yang Hao (engineer)

    Yang Hao (engineer)

    Yang_Hao_(engineer)

  • Biosensor
  • Probe which tests for biological molecules

    ring structures, has proven graphene to be an excellent candidate as a biosensor transducer. As a result, various graphene-based biosensors have been explored

    Biosensor

    Biosensor

  • Electromagnetic metasurface
  • Type of artificial sheet material

    More advanced designs integrate tunable materials (e.g., liquid crystals, graphene, or phase-change compounds), creating reconfigurable intelligent surfaces

    Electromagnetic metasurface

    Electromagnetic metasurface

    Electromagnetic_metasurface

  • MXenes
  • Class of two-dimensional inorganic compounds

    combining the prefix "MAX" or "MX" (for MAX phases), with "ene" by analogy to graphene. As-synthesized MXenes prepared via HF etching have an accordion-like morphology

    MXenes

    MXenes

  • Photocatalysis
  • Acceleration of a photoreaction in the presence of a catalyst

    belong to three main groups; heterogeneous, homogeneous, and plasmonic antenna-reactor catalysts. The use of each catalysts depends on the preferred application

    Photocatalysis

    Photocatalysis

    Photocatalysis

  • Evanescent field
  • Type of field where the net flow of electromagnetic energy is zero

    is a propagating electromagnetic wave produced (e.g., by a transmitting antenna), one can still identify as an evanescent field the component of the electric

    Evanescent field

    Evanescent_field

  • Discovery of cosmic microwave background radiation
  • Aspect of the history of modern physical cosmology

    estimating its temperature as 3.5 K, as they experimented with the Holmdel Horn Antenna. The new measurements were accepted as important evidence for a hot early

    Discovery of cosmic microwave background radiation

    Discovery of cosmic microwave background radiation

    Discovery_of_cosmic_microwave_background_radiation

  • Josep Miquel Jornet
  • Spanish-American electrical engineer

    and the Internet of Nano-Things. His early work covers graphene-based plasmonic nano-antennas and terahertz channel modeling. He was elected an IEEE Fellow

    Josep Miquel Jornet

    Josep Miquel Jornet

    Josep_Miquel_Jornet

  • History of metamaterials
  • to the development of metamaterial antennas and metamaterial microwave lenses for miniature wireless system antennas which are more efficient than their

    History of metamaterials

    History of metamaterials

    History_of_metamaterials

  • Flat lens
  • order of magnitude larger than earlier materials), between graphene oxide (GO) and reduced graphene oxide (rGO) were demonstrated by manipulating its oxygen

    Flat lens

    Flat_lens

  • Conductive ink
  • Ink that conducts electricity

    nanomaterials due to the emergence of nanotechnology. Among other nanomaterials, graphene, and carbon nanotube-based conductive ink are gaining popularity due to

    Conductive ink

    Conductive_ink

  • List of balloon uses
  • is a list of uses of balloons tiny balloon catheter balloon tamponade Graphene balloons small (volume of a few litres) gas balloon Balloon Drop cluster

    List of balloon uses

    List of balloon uses

    List_of_balloon_uses

  • Aerogel
  • Synthetic ultralight solid material

    create a flexible aerogel. GraPhage13 is the first graphene-based aerogel assembled using graphene oxide and the M13 bacteriophage. Chalcogel is an aerogel

    Aerogel

    Aerogel

    Aerogel

  • Changhe Z-10
  • Chinese attack helicopter

    power, new infrared signature-reducing engine exhaust nozzle, appliqué graphene-based armor plates, etc. The PLAGF's domestic Z-10 fleet was upgraded to

    Changhe Z-10

    Changhe Z-10

    Changhe_Z-10

  • CubeSat
  • Miniature satellite in 10 cm cube modules

    Daniel (2021-11-01). "Enhancing the electrical and mechanical properties of graphene nanoplatelet composites for 3D printed microsatellite structures". Additive

    CubeSat

    CubeSat

    CubeSat

  • Ian F. Akyildiz
  • Turkish-American engineer (born 1954)

    use of graphene to develop nano-antennas for electromagnetic (EM) communication in nanonetworks. This paper showed that, by using a narrow graphene nanoribbon

    Ian F. Akyildiz

    Ian F. Akyildiz

    Ian_F._Akyildiz

  • Plasmonic metamaterial
  • Metamaterial that uses surface plasmons to achieve optical properties not seen in nature

    The collective result is a relatively significant response to light. Graphene also accommodates surface plasmons, observed via near field infrared optical

    Plasmonic metamaterial

    Plasmonic_metamaterial

  • Nanonetwork
  • Computing network of nanomachines, at nanoscale

    to decode an amplitude or frequency modulated wave. Second, graphene-based nano-antennas have been analyzed as potential electromagnetic radiators in

    Nanonetwork

    Nanonetwork

    Nanonetwork

  • Christophe Caloz
  • Swiss-Canadian engineer (born 1969)

    steered leaky-wave antennas for enhanced Wifi MIMO systems. In the past few years, he discovered giant Faraday rotation in graphene and subsequently demonstrated

    Christophe Caloz

    Christophe Caloz

    Christophe_Caloz

  • Copper-clad aluminium wire
  • Type of electrical conductor

    feedlines with high strength and conductivity requirements. Copper conductor Graphene-clad wire Electroplating Galvanization country-US 3854193A, "Method of

    Copper-clad aluminium wire

    Copper-clad aluminium wire

    Copper-clad_aluminium_wire

  • List of emerging technologies
  • New technologies actively in development

    "Is graphene a miracle material?". BBC Click. 21 May 2011. Archived from the original on 4 October 2020. Retrieved 18 November 2011. "Could graphene be

    List of emerging technologies

    List_of_emerging_technologies

  • Metal–organic framework
  • Class of chemical substance

    structures which look like graphene in larger scale. Stacking of these layers can build one-dimensional pore systems. Graphene-like 2D MOFs have shown decent

    Metal–organic framework

    Metal–organic framework

    Metal–organic_framework

  • Light harvesting materials
  • Materials that convert light to energy

    in plants and some photosynthetic bacteria. The dynamic and efficient antenna complexes that are present in photosynthetic organisms has inspired the

    Light harvesting materials

    Light_harvesting_materials

  • Nanocomposite
  • Solid material with nano-scale structure

    nanocomposites made by extrusion or batch-mixing. Nanoparticles such as graphene, carbon nanotubes, molybdenum disulfide and tungsten disulfide are being

    Nanocomposite

    Nanocomposite

    Nanocomposite

  • Timeline of condensed matter physics
  • and Walter Houser Brattain. 1947 – The theory of single layer graphite (graphene) is first published by P. R. Wallace. 1948 – Louis Néel discovers ferrimagnetism

    Timeline of condensed matter physics

    Timeline_of_condensed_matter_physics

  • Conjugated system
  • System of connected p-orbitals with delocalized electrons in a molecule

    and allylic carbocations. The largest conjugated systems are found in graphene, graphite, conductive polymers and carbon nanotubes. Conjugation is possible

    Conjugated system

    Conjugated system

    Conjugated_system

  • Optical properties of carbon nanotubes
  • in a fundamental reference frame of the graphene lattice. If the atoms around any 6-member ring of the graphene are numbered sequentially from 1 to 6,

    Optical properties of carbon nanotubes

    Optical properties of carbon nanotubes

    Optical_properties_of_carbon_nanotubes

  • Scientific Research Publishing
  • Chinese fraudulent academic publisher

    The Scientific Research Publishing (SCIRP) is a predatory academic publisher of open-access electronic journals, conference proceedings, and scientific

    Scientific Research Publishing

    Scientific_Research_Publishing

  • Printed electronics
  • Electronic devices created by various printing methods

    conductive fillers include silver nanoparticles, silver flakes, carbon black, graphene, carbon nanotubes, conductive polymers (such as polyaniline and polypyrrole)

    Printed electronics

    Printed electronics

    Printed_electronics

  • University of Tehran
  • Public collegiate university in Tehran, Iran

    plasmonic optics, nanophotonics, graphene photonics, nano-materials, nanoscale optics, nanoantennas and miniaturized antennas, physics and reverse-engineering

    University of Tehran

    University of Tehran

    University_of_Tehran

  • Pink noise
  • Signal with equal energy per octave

    1016/S0026-2714(02)00347-5. Alexander A. Balandin (2013). "Low-frequency 1/f noise in graphene devices". Nature Nanotechnology. 8 (8): 549–555. arXiv:1307.4797. Bibcode:2013NatNa

    Pink noise

    Pink noise

    Pink_noise

  • United States Naval Research Laboratory
  • U.S. Navy research laboratory

    electromagnetic railgun technology, detection of hidden nuclear materials, graphene devices, high-power extremely high frequency (35–220 GHz) amplifiers, acoustic

    United States Naval Research Laboratory

    United States Naval Research Laboratory

    United_States_Naval_Research_Laboratory

  • Mildred Dresselhaus
  • American physicist and nanotechnologist (1930–2017)

    led to Andre Geim and Konstantin Novoselov isolating and characterizing graphene, for which they were awarded the 2010 Nobel Prize. Dresselhaus was awarded

    Mildred Dresselhaus

    Mildred Dresselhaus

    Mildred_Dresselhaus

  • Potential applications of carbon nanotubes
  • Carbon nanotubes (CNTs) are cylinders of one or more layers of graphene (lattice). Diameters of single-walled carbon nanotubes (SWNTs) and multi-walled

    Potential applications of carbon nanotubes

    Potential applications of carbon nanotubes

    Potential_applications_of_carbon_nanotubes

  • Multiverse
  • Hypothetical group of multiple universes

    128.201301. PMID 35657861. S2CID 248904936. Bedford, Bailey. "Bilayer graphene inspires two-universe cosmological model". Joint Quantum Institute. Retrieved

    Multiverse

    Multiverse

    Multiverse

  • 2024 in science
  • citation needed] 3 January – The first functional semiconductor made from graphene is created. 4 January – A review indicates digital rectal examination (DRE)

    2024 in science

    2024_in_science

  • Thin-film bulk acoustic resonator
  • Device consisting of piezoelectric material

    by replacing one of the metal electrodes with very light materials like graphene for minimising the loading of the resonator has been demonstrated to lead

    Thin-film bulk acoustic resonator

    Thin-film_bulk_acoustic_resonator

  • Timeline of carbon nanotubes
  • rolled up graphene sheets in concentric cylinders. Bollmann and Spreadborough discuss friction properties of carbon due to rolling sheets of graphene in Nature

    Timeline of carbon nanotubes

    Timeline of carbon nanotubes

    Timeline_of_carbon_nanotubes

  • Outline of radio science
  • Overview of and topical guide to radio science

    metrology Commission B – Fields and waves Antenna arrays Antennas: recent advances and future outlook Antenna theory design and measurements Cognitive

    Outline of radio science

    Outline_of_radio_science

  • Split-ring resonator
  • Structure in some metamaterials

    "Low-Bias Terahertz Amplitude Modulator Based on Split-Ring Resonators and Graphene". ACS Nano. 8 (3): 2548–2554. Bibcode:2014ACSNa...8.2548D. doi:10.1021/nn406136c

    Split-ring resonator

    Split-ring resonator

    Split-ring_resonator

  • Metamaterial absorber
  • 1088/0022-3727/49/36/365101. ISSN 0022-3727. S2CID 123927835. Awad, Ehab (21 June 2022). "Graphene Metamaterial Embedded within Bundt Optenna for Ultra-Broadband Infrared

    Metamaterial absorber

    Metamaterial_absorber

  • Solar sail
  • Space propulsion method using Sun radiation

    nominal mass-to-surface ratio (σnom) of 8.6×10−4 gram m−2 for a nominal graphene-class sail. Area of the Lightsail, about 105 m2 = (316 m)2 Velocity up

    Solar sail

    Solar sail

    Solar_sail

  • Orders of magnitude (length)
  • Comparison of a wide range of lengths

    calculated to be the largest atomic radius 340 pm – thickness of single layer graphene 356.68 pm – width of diamond unit cell 403 pm – width of lithium fluoride

    Orders of magnitude (length)

    Orders of magnitude (length)

    Orders_of_magnitude_(length)

  • Capacitor
  • Electronic component

    Shinn, Eric; et al. (2012). "Nuclear energy conversion with stacks of graphene nanocapacitors". Complexity. 18 (3): 24–27. Bibcode:2013Cmplx..18c..24S

    Capacitor

    Capacitor

    Capacitor

  • ICFO
  • Photonic sciences research institute in Spain

    nanophotonics, such as nano-structured materials, nano-cavities, nano-antennas, and nano-photonic devices. ICFO conducts experimental and theoretical

    ICFO

    ICFO

    ICFO

  • Composite material
  • Material made from a combination of two or more unlike substances

    can also be utilized as core materials. Recently, 3D graphene structures ( also called graphene foam) have also been employed as core structures. A recent

    Composite material

    Composite material

    Composite_material

  • Timeline of quantum computing and communication
  • is demonstrated. Graphene quantum dot spin qubits are proposed. The HHL algorithm for solving linear equations is published. Graphene quantum dot qubits

    Timeline of quantum computing and communication

    Timeline of quantum computing and communication

    Timeline_of_quantum_computing_and_communication

  • Surface acoustic wave
  • Sound wave which travels along the surface of an elastic material

    acoustoelectric (AE) coupling is also important in 2D materials, such as graphene. In these 2D materials the two-dimensional electron gas has band gap energies

    Surface acoustic wave

    Surface acoustic wave

    Surface_acoustic_wave

  • List of British innovations and discoveries
  • panels failed to deploy, blocking the spacecraft's communications antenna. 2004 Graphene is isolated from graphite at the University of Manchester by Andre

    List of British innovations and discoveries

    List of British innovations and discoveries

    List_of_British_innovations_and_discoveries

  • Bhabha Atomic Research Centre
  • Nuclear research facility in Mumbai, India

    industrial effluents; new generation membranes (such as high performance graphene-based nanocomposite membranes, membranes for haemodialysis, forward osmosis

    Bhabha Atomic Research Centre

    Bhabha Atomic Research Centre

    Bhabha_Atomic_Research_Centre

  • Ammonia
  • Chemical compound

    Propyne Trihydrogen cation Unconfirmed Anthracene Dihydroxyacetone Glycine Graphene H2NCO+ Hemolithin Linear C5 Methoxyethane Naphthalene cation Phosphine

    Ammonia

    Ammonia

    Ammonia

  • List of Iranian Americans
  • metamaterials, transformation and plasmonic optics, nano- and graphene photonics, nano- and miniature antennas, and bio-inspired optical imaging, among many others

    List of Iranian Americans

    List_of_Iranian_Americans

  • Nitrogen-vacancy center
  • Point defect in diamonds

    Jayich, Ania C. (2022-08-17). "Imaging the Breakdown of Ohmic Transport in Graphene". Physical Review Letters. 129 (8) 087701. arXiv:2002.05065. Bibcode:2022PhRvL

    Nitrogen-vacancy center

    Nitrogen-vacancy center

    Nitrogen-vacancy_center

  • First observation of gravitational waves
  • 2015 detection made by LIGO interferometers

    reconstruction and parameter estimation of sources. Laser Interferometer Space Antenna (LISA) is a proposed space based observation mission to detect gravitational

    First observation of gravitational waves

    First observation of gravitational waves

    First_observation_of_gravitational_waves

  • Tip-enhanced Raman spectroscopy
  • the molecules within a few tens of nanometers of the tip. Although the antennas' electric near-field distributions are commonly understood to determine

    Tip-enhanced Raman spectroscopy

    Tip-enhanced_Raman_spectroscopy

  • Middle Eastern Americans
  • metamaterials, transformation and plasmonic optics, nano- and graphene photonics, nano- and miniature antennas, and bio-inspired optical imaging, among many others

    Middle Eastern Americans

    Middle_Eastern_Americans

  • Astrobiology
  • Science concerned with life in the universe

    safely, it was unable to correctly deploy its solar panels and telecom antenna. EXPOSE EXPOSE is a multi-user facility mounted in 2008 outside the International

    Astrobiology

    Astrobiology

    Astrobiology

  • Batmobile
  • Fictional automobile in Batman comics

    Projector, Anti-Theft Device, Detect-a-scope, Batscope, Bat Eye Switch, Antenna Activator, Police Band Cut-In Switch, Automatic Tire Inflation Device,

    Batmobile

    Batmobile

  • List of tallest buildings and structures in Greater Manchester
  • measurement. This includes spires and architectural details but does not include antenna masts. An equals sign (=) following a rank indicates the same height between

    List of tallest buildings and structures in Greater Manchester

    List of tallest buildings and structures in Greater Manchester

    List_of_tallest_buildings_and_structures_in_Greater_Manchester

  • Superlens
  • Type of transmissive optical device

    hyperlens can be created using alternating layers of boron nitride and graphene. In February 2018, a mid-infrared (~5–25 μm) hyperlens was introduced,

    Superlens

    Superlens

  • Nanoracks CubeSat Deployer
  • Device to deploy CubeSats into orbit from the International Space Station

    tracking sea vessels around the globe, and a science experiment that looks at Graphene in space. "CubeSats in Orbit After Historic Space Station Deployment".

    Nanoracks CubeSat Deployer

    Nanoracks CubeSat Deployer

    Nanoracks_CubeSat_Deployer

  • Quantum biology
  • Application of quantum mechanics and chemistry to biology

    Neelam; Sharma, Amit L.; Singh, Suman (2021-07-08). "Amine-Functionalized Graphene Quantum Dots for Fluorescence-Based Immunosensing of Ferritin". ACS Applied

    Quantum biology

    Quantum_biology

  • List of Scorpion episodes
  • 6.46 Scorpion is hired by the Department of Energy to design a special graphene alloy turbine to upgrade their experimental blade-less windmills at a wind

    List of Scorpion episodes

    List_of_Scorpion_episodes

  • Juerg Leuthold
  • Swiss physicist

    Emboras, Alexandros; Leuthold, Juerg (2019-01-16). "Plasmonically Enhanced Graphene Photodetector Featuring 100 Gbit/s Data Reception, High Responsivity, and

    Juerg Leuthold

    Juerg Leuthold

    Juerg_Leuthold

  • Nanophotonic resonator
  • Optical Cavity

    detuning. A graphene photothermoelectric detector integrated with a silicon microring achieved greater than 90% optical absorption in a graphene interaction

    Nanophotonic resonator

    Nanophotonic_resonator

  • Electromagnetic metamaterial
  • Kowerdziej, R., Dudek, M., Sielezin, K., Olifierczuk, M., & Parka, J. (2020). Graphene-based hyperbolic metamaterial as a switchable reflection modulator. Optics

    Electromagnetic metamaterial

    Electromagnetic metamaterial

    Electromagnetic_metamaterial

  • Beetham Tower, Manchester
  • Mixed use skyscraper in Manchester, England

    2004 Completed 2006 Cost £150 million Owner John Christodoulou Height Antenna spire To glass façade overrun: 169 m (554 ft) Roof 158 m (518 ft) Technical details

    Beetham Tower, Manchester

    Beetham Tower, Manchester

    Beetham_Tower,_Manchester

  • Photonic metamaterial
  • Type of electromagnetic metamaterial

    Ken-Tye; Yu, Ting (2012). "Excitation of surface electromagnetic waves in a graphene-based Bragg grating". Scientific Reports. 2: 737. Bibcode:2012NatSR...2

    Photonic metamaterial

    Photonic metamaterial

    Photonic_metamaterial

  • Molecular cloud
  • Type of interstellar cloud

    and Reber in the US, the Dutch astronomers repurposed the dish-shaped antennas running along the Dutch coastline that were once used by the Germans as

    Molecular cloud

    Molecular cloud

    Molecular_cloud

  • Tests of general relativity
  • Nanotechnology String theory On specific discoveries Cosmic microwave background Graphene Gravitational waves Subatomic particles timeline Higgs boson Neutron Speed

    Tests of general relativity

    Tests_of_general_relativity

  • Nano-FTIR
  • Infrared microscopy technique

    acquisition of nano-FTIR spectra through a capping Graphene layer on top of a supported material or through Graphene suspended on a perforated silicon nitride

    Nano-FTIR

    Nano-FTIR

    Nano-FTIR

  • List of inventors
  • Germany – Geiger counter Andrey Geim (born 1958), Russia/United Kingdom – graphene Nestor Genko (1839–1904), Russia – Genko's Forest Belt (the first large-scale

    List of inventors

    List_of_inventors

  • Chang-Sik Ha
  • South Korean materials scientist

    "Superhigh Electromagnetic Interference Shielding of Ultrathin Aligned Pristine Graphene Nanosheets Film". Advanced Materials. 32 (14) 1907411. Bibcode:2020AdM

    Chang-Sik Ha

    Chang-Sik_Ha

  • 2022 in science
  • 128.201301. PMID 35657861. S2CID 248904936. Bedford, Bailey. "Bilayer graphene inspires two-universe cosmological model". Joint Quantum Institute. Retrieved

    2022 in science

    2022_in_science

  • January–March 2023 in science
  • Overview of the events of 2023 in science

    Sensors for Brain–Machine Interfaces Based on Micropatterned Epitaxial Graphene". ACS Applied Nano Materials. 6 (7): 5440–5447. Bibcode:2023ACSAN...6.5440F

    January–March 2023 in science

    January–March_2023_in_science

  • City Tower, Manchester
  • Office building in Manchester, England

    48028; -2.23833 Completed 1965; 61 years ago (1965) Owner Schroders Height Antenna spire 123 m (404 ft) Roof 107 m (351 ft) Top floor 28 Technical details

    City Tower, Manchester

    City Tower, Manchester

    City_Tower,_Manchester

  • 2012 in science
  • contain the disease. 8 April – American scientists reveal that transparent graphene sheets can be used to encapsulate liquids for study by electron microscopes

    2012 in science

    2012_in_science

  • 2017 in science
  • strongest lightweight materials known, by compressing and fusing flakes of graphene. The new material is highly porous. Computer simulations predict it is

    2017 in science

    2017_in_science

  • 2011 in science
  • than silicon transistors, and to have better electrical properties than graphene. 2 February – The Linac Coherent Light Source, an X-ray source a billion

    2011 in science

    2011 in science

    2011_in_science

  • Timeline of biotechnology
  • March – Scientists report that they have developed a way to 3D bioprint graphene oxide with a protein. They demonstrate that this novel bioink can be used

    Timeline of biotechnology

    Timeline_of_biotechnology

  • Timeline of gravitational physics and relativity
  • 1704351. Penzias, A.A.; Wilson, R.W. (1965). "A Measurement of Excess Antenna Temperature at 4080 Mc/s". Astrophysical Journal. 142: 419–421. Bibcode:1965ApJ

    Timeline of gravitational physics and relativity

    Timeline of gravitational physics and relativity

    Timeline_of_gravitational_physics_and_relativity

  • 2021 in science
  • original on 3 January 2022. "Chemists use DNA to build the world's tiniest antenna". University of Montreal. Retrieved 19 January 2022. Harroun, Scott G.;

    2021 in science

    2021 in science

    2021_in_science

  • January–March 2020 in science
  • expressed. Scientists report that they have developed a way to 3D bioprint graphene oxide with a protein. They demonstrate that this novel bioink can be used

    January–March 2020 in science

    January–March_2020_in_science

  • Timeline of Polish science and technology
  • launched by the Foundation for Cardiac Surgery Development in Zabrze. Graphene acquisition, in 2011 the Institute of Electronic Materials Technology and

    Timeline of Polish science and technology

    Timeline of Polish science and technology

    Timeline_of_Polish_science_and_technology

  • List of American companies with Chinese parent organizations
  • Sourcing". Materials Today. 2015-05-12. "INPAQ Technology Launches Wireless Antenna Sales Division in U.S.". Microwave Journal. 2008-11-20. "TA-I Technology

    List of American companies with Chinese parent organizations

    List_of_American_companies_with_Chinese_parent_organizations

  • Scientist of the Month
  • South Korean science award

    Physics Friction anisotropy-driver domain imaging on exfoliated monolayer graphene February Lee Seonghwan (이성환) Korea University Brain engineering Development

    Scientist of the Month

    Scientist_of_the_Month

  • Intercontinental Tower, Manchester
  • Cancelled tower in Manchester, England

    started Cost £80 million Operator InterContinental Hotels Group Height Antenna spire 200 m (660 ft) max Roof 160 m (520 ft) est. Technical details Floor count

    Intercontinental Tower, Manchester

    Intercontinental Tower, Manchester

    Intercontinental_Tower,_Manchester

  • 1 Spinningfields
  • Office building in Manchester, England

    2°15′17″W / 53.4789°N 2.2546°W / 53.4789; -2.2546 Year built 2015–18 Height Antenna spire 92 m (302 ft) Technical details Floor count 20 Floor area 34,000 m2

    1 Spinningfields

    1 Spinningfields

    1_Spinningfields

  • Hulme Hippodrome
  • Theatre in Hulme, Manchester, England

    listed building consent from Manchester City Council for two mobile phone antennas disguised as flagpoles to be added at the top of the Warwick Street side

    Hulme Hippodrome

    Hulme Hippodrome

    Hulme_Hippodrome

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