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Images of 'Molecular' found, 328

50 cc of Paris Air, 1919 (glass ampoule)
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50 cc of Paris Air, 1949 (glass ampoule)
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Genetics, DNA & Chromosomes Templates from Crick and WatsonÕs DNA molecular model, 1953
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Nebula of the Eagle (IC 4703) in the Snake - detail - Star - birth in the Eagle nebula. - The Pillars of Creation “” is undoubtedly the most famous image realized by the Hubble space telescope, obtained in 1995. 20 years later, the same telescope rephotographed this region with more finesse. These cold gas columns are home to star embryos. The NASA/ESA Hubble Space Telescope has revisited one of its most iconic and popular images: the Eagle Nebula's Pillars of Creation. This image shows the pillars as seen in visible light, capturing the multi - coloured glow of gas clouds, wispy tendrils of dark cosmic dust, and the rust - colored elephants trunks of the nebula's famous pillars. The dust and gas in the pillars is seared by the intense radiation from young stars and eroded by strong winds from massive nearby stars. With these new images comes better contrast and a clearer view for astronomers to study how the structure of the pillars is changing over time.
The Atomium Structure, Brussels (photo)
Mars Planet Passage (middle left of the image) in front of the nebula Rho Ophiuchi on August 25, 2016 - This star-forming region is located about 520 light years away. The brightest star below is the star Antares, from the Scorpio. Right, star cluster M4 - Mars passing the Rho Ophiuchi cloud complex on Aug 25, 2016 - This star-forming region is located at about 520 light years in Scorpius constellation. The area is highlighted by the bright star Antares (bottom), a red supergiant 40,000 times more luminous than our sun
The Atomium structure in Brussels Belgium (photo)
Linus Pauling
Dr. James Watson And DNA Helix, United States of America, c.1962 (b/w photo)
Human chromosomes under a microscope (photo)
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The Atomium (photo)
James Dewey Watson, Medecine Nobel Prize in 1962, He Discovered Dna Molecular Structure (b/w photo)
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Medecine Prize Winner in 1962 With Dr Mauricewilkins and Dr James Deweywatson, Dr Francis Crick, Molecular Biologist in Cambridge on October 18, 1962 (b/w photo)
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Martin Rodbell
Daniel Nathans
A scientific diagram.
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Donald Glaser, American physicist, with his apparatus, c 1953
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Delegates attending the 1st Solvay Physics Conference, Brussels, 1911 (b/w photo)
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Detail of the horse's head nebula by the VLT - Horsehead Nebula, which is situated in the Orion molecular cloud complex. Its official name is Barnard 33 and it is a dust protrusion in the southern region of the dense dust cloud Lynds 1630, on the edge of the HII region IC 434. The distance to the region is about 1400 light - years (430 pc). This beautiful colour image was produced from three images obtained with the multi - mode FORS2 instrument at the second VLT Unit Telescope (KUEYEN) on February 1, 2000. Three predominant colours are seen in the image: red from the hydrogen (H - alpha) emission from the HII region; brown for the foreground obscuring dust; and blue - green for scattered starlight. The blue - green regions of the Horsehead Nebula correspond to regions not shadowed from the light from the stars in the H II region to the top of the picture and scatter stellar radiation towards the observer; these are thus 'mountains' of dust
Southern Crown Nebula - The CRA reflection nebula - R Coronae Australis is a region of star formations visible in the southern hemisphere. It is located about 500 light years away from Earth. On the right, the globular cluster NGC 6723, located 30 000 light years from Earth in Sagittarius. Image made with the 1.2m Telescope of Schmidt UK from Siding Spring. Corona Australis (the southern crown, CRA) is in the far southern sky but visible from the southern states of the USA. The constellation is small but distinctive. The conspicuous globular cluster NGC 6723 is at the western (right) edge of the photograph, but it is in Sagittarius, and is about 30,000 light years distant. Almost all the nebulosity here is starlight, reflected from minute grains of dust, some of which gather into darker condensations ('molecular clouds'), blotting out the background stars. Fainter features can be seen here. Shiny NGC 6726 - 27 near middle of image contains both a visual binary and a variable star. Other wispy nebulae in the western part of the dark cloud betray the presence of young, hidden stars
George Johnstone Stoney, Irish mathematical physicist, c 1900
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Dust in Iris Nebula - Dust in Iris Nebula - The Iris Nebula (NGC 7023) is a reflexion nebula illuminated by the star HD 200775. This image obtained by the Hubble Space Telescope shows a detail of the nebula or HD star 200775 (at the top of the image, out of the field) illuminates tiny particles of dust. This close - up of an area in the northwest region of the large Iris Nebula (NGC 7023) seems to be clogged with cosmic dust. With bright light from the nearby star HD 200775 illuminating it from above, the dust resemble thick mounds of billowing cotton. It is actually made up of tiny particles of solid matter, with sizes from ten to a hundred times smaller than those of the dust grains we find at home. Both background and foreground stars are dotted throughout the image. North is down, East is right. The field of view is 3.3 arcminutes. The image is a composite of four images obtained by the Hubble space Telescope through blue, green, near - infrared and H - alpha filters
Scientist With Molecule Model, West Lafayette, Indiana, 1961 (b/w photo)
United States: c. 1962
Dr. Jame D. Watson sitting at his desk in front of a drawing of the double helix structure of DNA. ADN -
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Nebula NGC 7023 in Cephee - Iris Nebula in Cepheus - The nebula of the Iris (NGC 7023) is a reflexion nebula illuminated by the star HD 200775. Infrared observations indicate that this nebula contains PAH (aromatic polycyclic hydrocarbons), molecules composed of carbon atoms and hydrogen. NGC 7023 (The Iris Nebula) is located 1400 Light Years away. The bright star HD 200775 shining through the nebula NGC 7023 is a 10 solar mass star centrally imbedded in a region surrounded by ambient molecular cloud material. Infrared observations indicate that this nebula may contain complex carbon molecules known as PaHS
Nebuleuse Barnard 86 & open cluster NGC 6520 - Dark nebula Barnard 86 and open cluster NGC 6520 - NGC 6520, is a cluster of young stars aged a few million years. To its right is the dark nebula, Barnard 86, a cloud of molecular gas and dust, very cold, in which these stars have become formed. In the background, the billions of years old stars of Sagittarius. NGC 6520 is a small cluster of young blue stars. In the same region is a dark cloud, Barnard 86. The cluster and cloud are probably associated and the dust is visible only because it blocks out light from the myriads of stars beyond. On the distant background, old yellowish stars in Sagittarius are visible in vast numbers
Nebuleuse Barnard 86 & open cluster NGC 6520 - Dark nebula Barnard 86 and open cluster NGC 6520 - NGC 6520, is a cluster of young stars, aged a few million years. To its right is the dark nebula, Barnard 86, a cloud of molecular gas and dust, very cold, in which these stars have become formed. In the background, the billions of years old stars of Sagittarius. NGC 6520 is a small cluster of young blue stars. In the same region is a dark cloud, Barnard 86. The cluster and cloud are probably associated and the dust is visible only because it blocks out light from the myriads of stars beyond. On the distant background, old yellowish stars in Sagittarius are visible in vast numbers
Molecular Web, 2004 (colour woodcut, with mica, on cream laid paper)
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Amedeo Avogadro,  Count of Quaregna and Cerreto (1776-1856). Italian savant.
Nebuleuse Barnard 86 & open cluster NGC 6520 - Dark nebula Barnard 86 and open cluster NGC 6520 - NGC 6520, in the center of the image, is a cluster of young stars, aged a few million years. To its right is the dark nebula, Barnard 86, a cloud of molecular gas and dust, very cold, in which stars form. In the background, the billions of years old stars of Sagittarius. NGC 6520 is a young star cluster formed only millions of years ago. Besides, the dark nebula Barnard 86, a molecular cloud, very cold, from which the stars of NGC 6520 surely formed. All around them, oldest stars, which are billions of years old, form the star clouds of Sagittarius in the southern Milky Way and are in orbit around the inner part of the Galaxy. They are cool and yellow
Antares star and the Rho Ophiuchi nebula - This coloree nebula represents the visible part of a very large molecule cloud, the Ophiuchus cloud. This star-forming region is located about 520 light years away. The brightest star below is the star Antares, from the Scorpio. On the right, the M4 star cluster. View of the region surrounding the bright triple star Rho Ophiuchus (in the blue cloud). This star-forming region is located at about 520 light years in Scorpius constellation. The area is highlighted by the bright star Antares (bottom), a red supergiant 40,000 times more luminous than our sun
Detail in the nebula Omega (M17) - Part of M17 nebula - Detail in the nebula Omega (M17), a region of star formation. Image obtained from the 3.5-metre NTT telescope of the European Observatory of La Silla in Chile. The Omega Nebula (M17) is one of the youngest and most massive star - forming regions in the Milky Way. Active star - birth started a few million years ago and continues through today. The brightly shining gas shown in this picture is just a blister erupting from the side of a much larger dark cloud of molecular gas. The dust that is so prominent in this picture comes from the remains of massive hot stars that have ended their brief lives and ejected material back into space, as well as the cosmic detritus from which future suns form. Three - colour composite image of the Omega Nebula (Messier 17), based on images obtained with the EMMI instrument on the ESO 3.58 - metre New Technology Telescope at the La Silla Observatory. North is down and East is to the right in the image. It spans an angle equal to about one third the diameter of the Full Moon, corresponding to about 15 light - years at the distance of the Omega Nebula
Orion nebula centre - Trapeze - Orion nebula center - Mosaic of images obtained by the space telescope in 1994 and 1995 showing the center of Orion nebula, the region around the Trapeze, a cluster of 4 very young and massive stars that make this nebula shine. The picture shows a churning turbulent star factory set within a maelstrom of flowing, luminescent gas. Although this 2.5 light - years wide view is still a small portion of the entire Orion nebula, it includes almost all of the light from the bright glowing clouds of gas and a star cluster associated with the nebula. Hubble reveals details as small as 4.1 billion miles across. Hubble Space Telescope observing time was devoted to making this panorama because the nebula is a vast laboratory for studying the processes which gave birth to our own Sun and solar system 4.5 billion years ago. Gas are illuminated and heated by a torrent of energetic ultraviolet light from its four hottest and most massive stars, called the Trapezium, which lie near the center of the image. In addition to the Trapezium, this stellar cavern contains 700 hundred other young stars at various stages of formation. High - speed jets of hot gas spewed by some of the infant stars send supersonic shock waves tearing into the nebula at 100,000 miles per hour. These shock waves appear as thin curved loops, sometimes with bright knots on their end (the brightest examples are near the bright star at the lower left). The mosaic reveals at least 153 glowing protoplanetary disks (first discovered with the Hubble in 1992, and dubbed “” proplyds”) that are believed to be embryonic solar systems that will eventually form planets. (Our solar system has long been considered the relic of just such a disk that formed around the newborn Sun). The abundance of such objects in the Orion nebula strengthens the argument that planet formation is a common occurrence in the universe. The proplyds that are closest to the Trapezium stars (image c
Space-filling model of section of polychloroethene or PVC molecule.
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Horse's Head Nebula - The Horsehead nebula in Orion - The Horse's Head Nebula, Barnard 33, is a dark nebula located in front of the IC 434 emission nebula at about 1500 years - light of the Earth in the constellation Orion. Lower left is the reflexion nebula, NGC 2023. The Horsehead nebula is located in the constellation of Orion, slightly below the left - most star of the three that form the Hunter's belt. It is part of a vast molecular cloud of dust and gas that includes the Great Orion Nebula and extends throughout the entire constellation as well. Here we see the Horsehead as it appeared 1,500 years ago, due to distance and the time it takes light to travel
Horse's Head Nebula and IC 434 in Orion - The Horsehead nebula in Orion - The Horse's Head Nebula, Barnard 33, is a dark nebula located in front of the IC 434 emitting nebula about 1500 years - Earth light in the constellation Orion. Lower left is the reflexion nebula, NGC 2023. The Horsehead nebula is located in the constellation of Orion, slightly below the left - most star of the three that form the Hunter's belt. It is part of a vast molecular cloud of dust and gas that includes the Great Orion Nebula and extends throughout the entire constellation as well. Here, we see the Horsehead as it appeared 1,500 years ago, due to distance and the time it takes light to travel. The bright complex of dust and gas below the Horsehead reflects the light given off by the bright star near it's center and is one of the brightest examples of reflection nebulae in the northern sky. The central star is surrounded with a thin shell of hydrogen that glows red by emitting it's own light in a rare example of a unique process called vibrational fluorescence
Eagle Nebula (IC 4703) in the Snake - detail - Young stars in the Eagle nebula - Detail on young stars located in the north - west part of the Eagle Nebula (M16). Image obtained by the Hubble Space Telescope. This picture shows the northwestern part of the Eagle nebula (M16), well away from the centre, and features some very bright young stars that formed from the same cloud of material. These energetic toddlers are part of an open cluster and emit ultraviolet radiation that causes the surrounding nebula to glow. The star cluster is very bright and was discovered in the mid - eighteenth century. The nebula, however, is much more elusive and it took almost a further two decades for it to be first noted by Charles Messier in 1764. Although it is commonly known as the Eagle Nebula, its official designation is Messier 16 and the cluster is also named NGC 6611. One spectacular area of the nebula (outside the field of view) has been nicknamed The Pillars of Creation”” ever since the Hubble Space Telescope captured an iconic image of dramatic pillars of star - forming gas and dust. The cluster and nebula are fascinating targets for small and medium - sized telescopes, particularly from a dark site free from light pollution. Messier 16 can be found within the constellation of Serpens Cauda (the Tail of the Serpent), which is sandwiched between Aquila, Sagittarius, and Ophiuchus in the heart of one of the brightest parts of the Milky Way. Small telescopes with low power are useful for observing large, but faint, swathes of the nebula, whereas 30 cm telescopes and larger may reveal the dark pillars under good conditions. But a space telescope in orbit around the Earth, like Hubble - - which boasts a 2.4 - metre diameter mirror and state - of - the - art instruments - - is required for an image as spectacular as this one. This picture was created from images taken with the Wide Field Channel of Hubble's Advanced Camera for Surveys. Images through a
Space-filling Models showing the Molecules in Decomposition of Sugar to Ethanol and Carbon Dioxide during Fermentation.
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Stars cluster in the Nebula of the Eagle - Young stars in the Eagle nebula - Detail on young stars located in the cluster of stars NGC 6611 of the Nebula of the Eagle (M16). Image obtained by the Hubble Space Telescope. A spectacular section of the well - known Eagle Nebula has been targeted by the NASA/ESA Hubble Space Telescope. This collection of dazzling stars is called NGC 6611, an open star cluster that formed about 5.5 million years ago and is found approximately 6500 light - years from the Earth. It is a very young cluster, containing many hot, blue stars, whose fierce ultraviolet glow make the surrounding Eagle Nebula glow brightly. The cluster and the associated nebula together are also known as Messier 16. Astronomers refer to areas like the Eagle Nebula as HII regions. This is the scientific notation for ionised hydrogen from which the region is largely made. Extrapolating far into the future, this HII region will eventually disperse, helped along by shockwaves from supernova explosions as the more massive young stars end their brief but brilliant lives. In this image, dark patches can also be spotted, punctuating the stellar landscape. These areas of apparent nothingness are actually very dense regions of gas and dust, which obstruct light from passing through. Many of these may be hiding the sites of the early stages of star formation, before the fledgling stars clear away their surroundings and burst into view. Dark nebulae, large and small, are dotted throughout the Universe. If you look up to the Milky Way with the naked eye from a dark, remote site, you can easily spot some huge dark nebulae blocking the background starlight. This picture was created from images from Hubble's Wide Field Channel of the Advanced Camera for Surveys through the unusual combination of two near - infrared filters (F775W, coloured blue, and F850LP, coloured red). The image has also been subtly colourised using a ground - based image taken through more convention
Model of the DNA Double Helix
Ball and Stick Model showing arrangement of Carbon Atoms in Diamond.
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Dorothy Hodgkin with a molecular model
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Taurus Molecular Cloud - Taurus Molecular Cloud - This region is located on the border of the Taurus and Persee constellations. Covering about 20 x 30 degres, this image shows a complex of emitted nebulae, star clusters, reflexion nebulae and dark nebulae. A molecular cloud is a region of dense gas and dust composed mainly of molecular hydrogen and helium. It's a birthplace of stars. The Molecular Cloud of Taurus is located about 400 years ago - light, and is one of the closest molecular clouds to our solar system. The California Nebula (NGC 1499), an emission nebula located about 1000 years ago - is visible at the top right. The dark nebulae B7, B18 and B19 are visible near the center of the image. Les Pleiades, M45, is the open cluster at the bottom right center. The open clusters NGC 1817, NGC 1746, NGC 1647 are on the left side of the image. The Hyades, Melotte 25, is a V-shaped cluster at the bottom left. It is the closest open cluster, located at a distance of about 151 light years. Aldebaran, Alpha Tauri, a bright red star with a magnitude of 0.75 to 0.95, is located at one end of the V, but does not belong to the cluster. The Taurus Molecular Cloud (TMC) is located on the border of the constellations of Taurus and Perseus. It is a large dense area of gas and dust in space made mostly of molecular hydrogen and helium. It is a birth place of stars, which form from the material in the cloud. Covering about 20 x 30 degrees, this wide - angle image shows a complex of bright red emission nebulae, star clusters, blue reflection nebulosity, and complex dark nebulae. The TMC is located about 400 light years away, and is one of the closest molecular clouds to our solar system. The California Nebula (NGC 1499), a very large red emission nebula, is at upper right. Emission nebulae are made up of glowing hydrogen gas. Located in
Model of the DNA Double Helix
Molecular structure of Vitamin D
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Model of the DNA Double Helix
Model of the DNA Double Helix
Switzerland Zurich University Weissmann (b/w photo)
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Star Antares and the nebula Rho Ophiuchi - Antares and Rho Ophiuchi - This coloree nebula represents the visible part of a very large molecule cloud, the cloud of Ophiuchus. This star-forming region is about 520 years old - light. The brightest star below is the star Antares, from the Scorpio. On the right, the M4 star cluster. View of the region surrounding the bright triple star Rho Ophiuchus (top, in the blue cloud). This star - forming region is located at about 520 light years in Scorpius constellation. The area is highlighted by the bright star Antares (bottom), a red supergiant 40,000 times more luminous than our su
Switzerland Bern Weissmann Tschudi (b/w photo)
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The Rho Ophiuchi nebula seen in infrared - Rho Ophiuchi in infrared - This coloree nebula represents part of a very vast molecular cloud, the Ophiuchus cloud. This star-forming region is about 520 years old - light. The triple star Rho Ophiuchus is located in the top center of the image. Below, a very bright nebula is visible, accompanied by a group of very young stars. At the bottom right, surrounded by a reddish nebula, the star Sigma Scorpii. The globular clusters NGC 6144 (bottom, center of the image) and M80 (top right of the image) are also visible on this infrared image obtained from the Wide - field Infrared Explorer (WISE) satellite. A rich collection of colorful astronomical objects is revealed in this picturesque image of the Rho Ophiuchi cloud complex from Nasa's Wide - field Infrared Explorer, or WISE. The Rho Ophiuchi cloud (pronounced 'oh - fee - yoo - ki' and named after a bright star in the region) is found rising above the plane of the Milky Way in the night sky, bordering the constellations Ophiuchus and Scorpius. It's one of the nearest star - forming regions to Earth, allowing us to resolve much more detail than in more distant similar regions, like the Orion nebula. The amazing variety of colors seen in this image represents different wavelengths of infrared light. The bright white nebula in the center of the image is glowing due to heating from nearby stars, resulting in what is called an emission nebula. The same is true for most of the multi - hued gas prevalent throughout the entire image, including the bluish, bow - shaped feature near the bottom right. The bright red area in the bottom right is light from the star in the center - - Sigma Scorpii - - that is reflected off of the dust surrounding it, creating what is called a reflection nebula. And the much darker areas scattered throughout the image are pockets of cool, dense gas that block out the background light, resulting in
The Atomium Structure, Brussels (photo)
Model of Ethanol (C2H5OH) molecule, close-up
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Mars and the nebula Rho Ophiuchi - Mars and Rho Ophiuchi: Passage of the planet Mars (middle left of the image) in front of the nebula Rho Ophiuchi on August 26, 2016 - This star-forming region is located about 520 light years away. The brightest star below is the star Antares, from the Scorpio. Right, star cluster M4. - March passing the Rho Ophiuchi cloud complex on Aug 26, 2016 - This star-forming region is located at about 520 light years in Scorpius constellation. The area is highlighted by the bright star Antares (bottom), a red supergiant 40,000 times more luminous than our sun
Model of a glucose molecule, showing the atomic structure of Oxygen, Carbon and Hydrogen involved in photosynthesis
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Jean Baptiste Dumas - 1800 - 1884.
Maxine Singer and George H W Bush
Molecular biologist Burghardt Wittig  …, 1994 (photo)
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Molecular biologist Burghardt Wittig and ..., 1994 (photo)
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Perseus Molecular Cloud, 2015 (digital photo)
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Sol Spiegelman
Genetics, DNA & Chromosomes DNA molecular model, 1953
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Genetics, DNA & Chromosomes DNA molecular model, 1993
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1960s: Molecular model on the table, label placed underneath.
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Atoms, Elements & Molecules, Models Molecular model, c 1875
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1960s: Sections of the molecular model of a DNA nucleotide being labelled
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Atoms, Elements & Molecules, Models Molecular models, c 1875
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1960s: Molecular model of the DNA nucleotide, sections of the model labelled.
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Atoms, Elements & Molecules, Models Molecular modelling kit, 1955
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