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Physics Collection (page 3)

147 items

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Background imagePhysics Collection: W particle decay in Ua1 detector at CERN

W particle decay in Ua1 detector at CERN
W particle decay. Computer graphic display of an event from the UA1 detector at CERN, the European particle physics laboratory outside Geneva

Background imagePhysics Collection: Particle tracks on galaxies

Particle tracks on galaxies
Particle tracks and cosmology. Computer illustration of subatomic particle tracks (white spirals) seen with galaxies behind them

Background imagePhysics Collection: Atomic structure

Atomic structure, computer artwork. In the centre of the atom is the nucleus (red), made up of a tightly-packed cluster of protons and neutrons. Four electrons are orbiting around the nucleus

Background imagePhysics Collection: Pins clinging to a horseshoe magnet

Pins clinging to a horseshoe magnet
Magnetic attraction. Pins clinging to a horseshoe magnet. Magnetism is a manifestation of electromagnetism, one of the fundamental forces of physics

Background imagePhysics Collection: Jets of particles from matter / antimatter collision

Jets of particles from matter / antimatter collision
Matter/antimatter particle collision. Computer display of jets of particles created when matter and antimatter collide & annihilate in a particle accelerator at CERN

Background imagePhysics Collection: Particle tracks

Particle tracks. Conceptual computer illustration depicting the increasing human understanding of particle physics as a head viewing subatomic particle tracks (orange)

Background imagePhysics Collection: LEP particle collider, CERN

LEP particle collider, CERN
View of one of the acceleration sections at LEP, the Large Electron-Positron collider. Located at CERN, the European centre for particle physics near Geneva

Background imagePhysics Collection: Atomic structure

Atomic structure, computer artwork. In the centre of the atom is the nucleus, made up of a tightly- packed cluster of protons and neutrons

Background imagePhysics Collection: Atom, artwork

Atom, artwork
Atomic structure. Conceptual computer artwork of nine electrons orbiting a central nucleus. This is a classical schematic Bohr model of an atom

Background imagePhysics Collection: Quantum tunneling

Quantum tunneling. Computer model of a quantum wavefunction trapped in a deep well (centre). In classical physics, the particle described by this wavefunction doesn t have enough energy to emerge

Background imagePhysics Collection: ALICE detector magnets

ALICE detector magnets during construction. ALICE is " A Large Ion Collider Experiment" for the Large Hadron Collider (LHC), CERN (the European particle physics laboratory) near Geneva

Background imagePhysics Collection: Particle physics experiment

Particle physics experiment. Researcher preparing an experiment involving a cryogenic electron beam ionizer (KRION) at the high-energy laboratory of the Joint Institute for Nuclear Research (JINR)

Background imagePhysics Collection: LEP particle collider at CERN

LEP particle collider at CERN
View of LEP, the Large Electron-Positron collider at CERN, the European centre for particle physics near Geneva. LEP accelerates electrons & positrons to an energy of 50 GeV

Background imagePhysics Collection: CMS detector

CMS detector being built. The CMS (Compact Muon Solenoid) is a detector at the LHC (Large Hadron Collider), at CERN (the European particle physics laboratory) near Geneva, Switzerland

Background imagePhysics Collection: Particle physics equations

Particle physics equations on a blackboard

Background imagePhysics Collection: Z particle decay

Z particle decay. " Megatek" computer graphic display of an event from the UA1 detector at CERN, the European particle physics laboratory outside Geneva

Background imagePhysics Collection: Atomic structure

Atomic structure. Conceptual computer artwork of eleven electrons orbiting a central nucleus. This is a classical schematic Bohr model of an atom

Background imagePhysics Collection: Particle interaction at CERN

Particle interaction at CERN
Special effects " zoom" photograph of a particle interaction in the UA1 detector at CERN, the particle physics laboratory outside Geneva

Background imagePhysics Collection: Atomic structure

Atomic structure. Conceptual computer artwork of eleven electrons orbiting a central nucleus. This is a classical schematic Bohr model of an atom

Background imagePhysics Collection: ATHENA antimatter experiment

ATHENA antimatter experiment
ATHENA antimatter laboratory. Technician working on the ATHENA experiment at CERN, Geneva, Switzerland. ATHENA is designed to create antihydrogen, the antimatter form of hydrogen

Background imagePhysics Collection: Atomic structure

Atomic structure, computer artwork. In the centre of the atom is the nucleus (euro sign), made up of a tightly-packed cluster of protons and neutrons. Four electrons are orbiting around the nucleus

Background imagePhysics Collection: Antihydrogen experiment at CERN

Antihydrogen experiment at CERN
Antimatter experiment in which antihydrogen may be produced for the first time. Antiprotons travel along the large pipe at centre, part of the Low- Energy Antiproton Ring (LEAR) accelerator

Background imagePhysics Collection: Mountains above Gran Sasso Lab

Mountains above Gran Sasso Lab
Mountains in Abruzzo National Park, central Italy. This area, known as Campo Imperatore or Emperors Fields, lies above the Gran Sasso Laboratories, which detect dark matter in the universe

Background imagePhysics Collection: Pins clinging to a horseshoe magnet

Pins clinging to a horseshoe magnet
Magnetic attraction. Pins clinging to a horseshoe magnet. Magnetism is a manifestation of electromagnetism, one of the fundamental forces of physics

Background imagePhysics Collection: Atomic structure

Atomic structure, computer artwork. In the centre of the atom is the nucleus, made up of a tightly- packed cluster of protons and neutrons. Four electrons are orbiting around the nucleus

Background imagePhysics Collection: Particle tracks on geometric patterns

Particle tracks on geometric patterns
Particle tracks and geometrical patterns. Computer illustration of subatomic particle tracks (white & yellow) and geometrical patterns (pink) on a starfield

Background imagePhysics Collection: Atom, artwork

Atom, artwork
Atomic structure. Conceptual computer artwork of five electrons orbiting a central nucleus. This is a classical schematic Bohr model of an atom

Background imagePhysics Collection: Art of particle tracks

Art of particle tracks
Particle tracks. Computer illustration of subatomic particle tracks. The particles are seen as coloured points. The tracks result from charged particles moving through a bubble chamber containing a

Background imagePhysics Collection: Particle tracks and head

Particle tracks and head
Particle tracks. Conceptual computer illustration depicting the increasing human understanding of particle physics as a head viewing subatomic particle tracks (orange)

Background imagePhysics Collection: Particle tracks and two heads

Particle tracks and two heads
Particle tracks. Conceptual computer illustration depicting the increasing human understanding of particle physics as two heads viewing subatomic particle tracks (white spirals)

Background imagePhysics Collection: Crystal-based neutrino detector

Crystal-based neutrino detector
Experimental neutrino detector. Researcher tests an experimental neutrino detector built by Joseph Weber in the 1980s. Weber believed that pure samples of crystals, such as sapphire

Background imagePhysics Collection: Atom, artwork

Atom, artwork
Atomic structure. Conceptual computer artwork of nine electrons orbiting a central nucleus. Other particles are seen around the atom. This is a classical schematic Bohr model of an atom

Background imagePhysics Collection: Atom, artwork

Atom, artwork
Atomic structure. Conceptual computer artwork of eleven electrons orbiting a central nucleus. This is a classical schematic Bohr model of an atom

Background imagePhysics Collection: Atomic structure

Atomic structure, computer artwork. Series of schematic representations of the structure of the atom. At the centre of each model is the nucleus

Background imagePhysics Collection: Atomic structure, conceptual artwork

Atomic structure, conceptual artwork
Atomic structure. Conceptual computer artwork of electron orbit paths as rings around the central nucleus (yellow) of an atom. This is a classical schematic Bohr model of the atom

Background imagePhysics Collection: Classical and quantum physics

Classical and quantum physics
Classical to quantum physics. Sequence of computer models showing the progression from classical to quantum physics. At top left, the movement of a classical particle, such as an electron, is shown

Background imagePhysics Collection: Art of dice, black holes and chance

Art of dice, black holes and chance
Chance in the universe. Computer illustration representing the chance, randomness and probability inherent in the universe according to the theory of quantum mechanics. Dice are seen in black holes

Background imagePhysics Collection: Art of dice, a black hole and chance

Art of dice, a black hole and chance
Chance in the universe. Computer illustration representing the chance, randomness and probability inherent in the universe according to the theory of quantum mechanics

Background imagePhysics Collection: Art representing quantum foam

Art representing quantum foam
Quantum foam. Computer artwork representing the proposed space topology of quantum foam. Quantum foam is an attempt to describe the form space takes inside a singularity

Background imagePhysics Collection: Schrodingers cat experiment

Schrodingers cat experiment
Schrodingers Cat. Computer graphic depicting the famous " Schrodingers Cat" thought experiment, showing a cat (both dead and alive)

Background imagePhysics Collection: Bernard Palissy, French potter

Bernard Palissy, French potter
Bernard Palissy (1509-1589), French potter, geologist and naturalist, coloured artwork. Originally a glass-painter by trade, Palissy spent 16 years on experiments to produce enamels

Background imagePhysics Collection: Bernard Palissy, French potter

Bernard Palissy, French potter
Bernard Palissy (1509-1589), French potter, geologist and naturalist, surrounded by plants and animals, coloured artwork. Originally a glass-painter by trade

Background imagePhysics Collection: Atomic structure, conceptual artwork

Atomic structure, conceptual artwork
Atomic structure. Conceptual computer artwork of electron orbit paths as rings around the central nuclei (dark clusters) of atoms. This is a classical schematic Bohr model of atoms

Background imagePhysics Collection: Atomic energy, conceptual artwork

Atomic energy, conceptual artwork
Atomic energy. Conceptual computer artwork of a reaction occuring at the atomic level, showing a release of energy. Electron orbit paths are seen as rings around the central nuclei (dark clusters)

Background imagePhysics Collection: Atomic energy, conceptual artwork

Atomic energy, conceptual artwork
Atomic energy. Conceptual computer artwork of a reaction occuring at the atomic level, showing a release of energy. Electron orbit paths are seen as rings around the central nuclei

Background imagePhysics Collection: Atomic structure, conceptual artwork

Atomic structure, conceptual artwork
Atomic structure. Conceptual computer artwork of electron orbit paths as rings around the central nuclei (purple clusters) of atoms. This is a classical schematic Bohr model of atoms

Background imagePhysics Collection: LHC tunnel, CERN

LHC tunnel, CERN
LHC tunnel, composite image. Safety supervisor riding a bicycle along the LHC (large hadron collider) tunnel at CERN (the European particle physics laboratory) near Geneva, Switzerland

Background imagePhysics Collection: ATLAS detector, CERN

ATLAS detector, CERN
ATLAS detector. Engineers working on part of the ATLAS (a torodial LHC apparatus) detector in a clean room at CERN (the European particle physics laboratory) near Geneva, Switzerland



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