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'Nucleus' images and/or videos results page 1 of 7

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Untitled (Blood Cell Series), 1941 (serigraph)
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Untitled, 1954 (pastel & w/c on paper)
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Comet nucleus and planet - Illustration - Comet nucleus and a planet Artwor
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Fission of a uranium nucleus
Cutaway drawing of a nucleus.
Core of a Comet - Illustration - Comet nucleus Artwork
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Nucleus, 1957 (oil on canvas)
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Untitled, 1997-2000 (pencil, coloured pencil & lacquer on paper)
Game with Atomic Nucleus (oil on panel)
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Second gush of the Pummerin - nucleus and sheath of the
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A comete breaks - Illustration - Comet breaking up
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Core of Comet Wild 2 - Comet Wild 2 nucleus - The nucleus of Comet Wild 2 (5 km in diameter) seen by the Stardust probe on January 2, 2004. This image was taken during the close approach phase of Stardust's Jan 2, 2004 flyby of comet Wild 2. It is a distant side view of the roughly spherical comet nucleus. One hemisphere is in sunlight and the other is in shadow analogous to a view of the quarter moon. Several large depressed regions can be seen. Comet Wild 2 is about five kilometers (3.1 miles) in diameter
Core of the Tempel 1 comet seen by the Deep impact probe - Comet Tempel 1 nucleus seen by Deep impact spacecraft - Composite image of different cliches. The core is 5 km by 7 km. This composite image was built up from scaling all images to 5 meters/pixel, and aligning images to fixed points. Each image at closer range, replaced equivalent locations observed at a greater distance. The impact site has the highest resolution because images were acquired until about 4 sec from impact or a few meters from the surface
Core of Comet 67P/Churyumov - Gerasimenkovu by the Rosetta probe - Comet 67P/Churyumov - Gerasimenko nucleus seen by Rosetta - Image of the nucleus of Comet 67P/Churyumov - Gerasimenko seen on November 22, 2014 by the Rosetta probe at a distance of 30 km. OSIRIS wide - angle camera image acquired on 22 November 2014 from a distance of 30 km from Comet 67P/Churyumov - Gerasimenko. The image resolution is 2.8 m/pixel. The nucleus is deliberately overexposed in order to reveal the faint jets of activity
The Rosetta spacecraft releases a lander onto a comet nucleus - The Rosetta spacecraft releases a lander onto a comet nucleus - The Rosetta probe was launched on 2 March 2004 to study comet 67P/Churyumov - Gerasimenko. Artist's view of the Philae probe and lander near the nucleus of the comet. The size scales are not respected, the probe measures 32 meters with its panels deployed, the core of the comet about 4 km. Artist's impression of the Rosetta orbiter deploying the Philae lander to comet 67P/Churyumov - Gerasimenko. The image is not to scale; the Rosetta spacecraft measures 32 m across including the solar arrays, while the comet nucleus is thought to be about 4 km wide
Core of a Comet - Illustration - Comet nucleus. Artwor
Core of a Comet - Illustration - Comet nucleus. Artwor
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Core of Comete Hale - Bopp 03/04/1997 - Comet Hale - Bopp nucleus - Comet Hale - Bopp nucleus. April 3 199
No. 17 (pastel & w/c on paper)
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Core of the Hartley 2 comet seen by the Epoxi probe - Comet Hartley 2 nucleus seen by Deep impact spacecraft - Composite of images of the nucleus of the Hartley 2 comet obtained on November 4, 2010 during its approach by the Epoxi probe (Deep Impact). The core is 2 km long. This image montage shows comet Hartley 2 as NASA'S EPOXI mission approached and flew under the comet. The images progress in time clockwise, starting at the top left. The image was taken by Epoxi's Medium - Resolution Instrument on Nov. 4, 2010. The sun is to the right. The comet's nucleus, or main body, is approximately 2 kilometers (1.2 miles) long and 0.4 kilometers (0.25 miles) at the “” neck,””” or most narrow portion. Jets can be seen streaming out of the nucleus
Surface of a comet - Illustration - Comet surface - Illustration
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Tiger cowrie, Cypraea tigris 1, wrinkled cowrie, Nucleolaria nucleus 2, money cowrie, Monetaria moneta 3, and Ellatrivia merces 4, Porcelaines
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Rosetta probe: the Philae lander poses on the nucleus of the comet: The Rosetta probe was launched on 2 March 2004 to study comet 67P/Churyumov-Gerasimenko. His lander, Philae, landed on the surface of the comet on 12 November 2014 to analyze the composition of the nucleus of the comet - Artist's impression of Rosetta's lander Philae on the surface of comet 67P/Churyumov-Gerasimenko. Philae will be deployed to the comet in November 2014 where it will make in situ observations of the comet surface, including drilling 23 cm into the subsurface to extract material for analysis in its on board laboratory
Human cell structure showing cytoplasm, cell membrane, nucleus, mitochondrion
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Light Focus, c.1950 (pencil & watercolour on paper)
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Core of comet 67P/Churyumov-Gerasimenko seen by Rosetta - Comet 67P/Churyumov-Gerasimenko nucleus from Rosetta: Image of the surface of comet 67P/Churyumov-Gerasimenko taken at an altitude of 16 km during the final descent of the Rosetta probe on 30 September 2016. Rosetta's OSIRIS narrow-angle camera captured this image of Comet 67P/Churyumov-Gerasimenko at 01:20 GMT from an altitude of about 16 km above the surface during the spacecraft's final descent on 30 September. The image scale is about 30 cm/pixel and the image measures about 614 m across
Cross-section view of the Earth - Earth cutaway - Internal structure of the Earth. On the surface, the crust forms a bark of about 7 km under the oceans and 30 to 40 km under the continents. Below is the mantle, a 2900 km thick rock belt. The outer core is composed of liquid metal, mainly iron and nickel. The inner core, or seed, is composed of the same alloy but is solid. Art cutaway of Earth showing interior structure. The surface is a crust, a thin layer of solid rock about 7 km thick under the oceans and 30 to 40 km thick where there are continents. Below is the mantle, 2900 km thick layer of molten rock. The outer core consists of liquid metal, mostly iron and nickel. The inner core has a similar composition but is solid
Nerve cell of dentate nucleus of cerebellum. 1905 (engraving)
Core of the Hartley 2 comet seen by the Epoxi probe - Comet Hartley 2 nucleus seen by Deep impact spacecraft - Image of the core of the Hartley 2 comet seen on November 4, 2010 by the probe Epoxi (Deep Impact) at a distance of 700 km. The core is 2 km long. The image, one of the closest taken of comet Hartley 2 by NASA'S EPOXI mission, shows many features across the comet's surface. There are two obvious regions of jet activity associated with rough terrain. The smooth surface in the middle is lower than the rest of the comet and may accumulate fine - grain dust. The image was taken by Epoxi's Medium - Resolution Instrument on Nov. 4, 2010. The sun is to the right. The comet's nucleus, or main body, is approximately 2 kilometers (1.2 miles) long and 0.4 kilometers (0.25 miles) at the “” neck,””” or most narrow portion. Jets can be seen streaming out of the nucleus
Comet 67P/Churyumov-Gerasimenko and Philae - Comet 67P/Churyumov-Gerasimenko nucleus with Philae: Detail of the surface of the nucleus of Comet 67P/Churyumov-Gerasimenko as seen on September 2, 2016 by the Rosetta probe. The Philae lander appears pose on the comet - Rosetta's lander Philae has been identified in OSIRIS narrow-angle camera images taken on 2 September 2016 from a distance of 2.7 km. The image scale is about 5 cm/pixel - Philae's 1 m-wide body and two of its three legs can be seen extended from the body. The images also provide proof of Philae's orientation - A Rosetta Navigation Camera image taken on 16 April 2015 is shown at top right for context, with the approximate location of Philae on the small lobe of Comet Churyumov-Gerasimenko marked
Rutherford gold-foil experiment
The Rosetta lander on a comet nucleus - The Rosetta lander on a comet nucleus - The Rosetta probe was launched on 2 March 2004 to study comet 67P/Churyumov - Gerasimenko. His lander, Philae, landed on the surface of the comet on November 12, 2014 to analyze the composition of the comet's nucleus. Artist's impression of Rosetta's lander Philae (back view) on the surface of comet 67P/Churyumov - Gerasimenko. Philae will be deployed to the comet in November 2014 where it will make in situ observations of the comet surface, including drilling 23 cm into the subsurface to extract material for analysis in its on board laboratory
Core of Comet Tempel 1 - Illustration - Tempel 1 comet nucleus.
Human cell
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Second gush of the Pummerin - worker at tear down of the nucleus
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A human cell, cross-section
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Surface of a comet - Illustration - Comet surface - Illustration: Away Earth and Moon
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Concestor 36
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Comet 67P/Churyumov-Gerasimenko nucleus seen by Rosetta probe - Comet 67P/Churyumov-Gerasimenko nucleus seen by Rosetta: Editing 18 images showing the activity of Comet 67P/Churyumov-Gerasimenko between January 31, 2015 (top left) and March 25, 2015 (bottom right) when the Rosetta probe was a distance between 30 and 100 km from the centre de la comete - This spectacular montage of 18 images shows off the comet's activity from many different angles as seen between 31 January (top left) and 25 March (bottom right), when the spacecraft was at distances of about 30 to 100 km from the comet. At the same time, Comet 67P/Churyumov-Gerasimenko was at distances between 363 million and 300 million km from the Sun
1960s: The DNA in the nucleus of the cell being pointed out.
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Active Galaxy - Illustration - An active galaxy. Artwor
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The stages of Earth formation - Artist view - Earth formation - Artist view - The Earth was formed 4.5 billion years ago from a gigantic cloud of gas and dust. From microscopic grains, planetesimal form, clash and agglomerate to form our planet; it was then subjected to a large bombardment of meteorites bringing a significant share of the water to Earth. Earth formed 4.54 billion years ago from a large protoplanetary disk accreting. The proto earth was bombarded by planetoids heating the newly formed planet
1950s: Animated electrons swirl and spin around the nucleus of an atom
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1960s: Close view of the nucleus of the cell, pointed out with a pencil.
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Bohr atomic model
M87 elliptical galaxy in Virgo - M87 elliptical galaxy in Virgo - The M87 galaxy (NGC 4486) is located about 52 million years away - light from Earth, in the heart of the Virgin's cluster. M87 is the brightest radio source of the constellation, it is also called Virgo A. NGC 4486 (M87) is the largest and brightest elliptical galaxy within the northern Virgo Cluster at about 52 million light years from Earth. The galaxy also called Virgo A contains a notable active galactic nucleus that is a strong source of multiwavelength radiation, particularly radio waves. In 1918 astronomer Heber Curtis discovered a jet of matter coming from M87 which extends at least 5000 light - years from the nucleus of M87 and is made up of matter ejected from the galaxy, most likely by a supermassive black hole
Center of the Andromede Galaxy (M31) - Central part of the Andromeda galaxy (M31) - The Andromede galaxy is located about 2 million years ago - light from Earth. Like the lactee path, the Andromede galaxy belongs to the local group. This image obtained with a telescope measuring 61 centimetres in diameter shows the central region of the galaxy where a huge mass of stars is orbiting around the nucleus. The central part of M31 where the huge mass of stars are in orbit around its nucleus. Image taken with a 24 - inch telescope on october 13 2009
A comet approaches the Sun - Illustration - Comet near our Sun - artwork - Artwork of a comet approaching our sun
Comete et planete giant - Comet approaching a giant planet - Comet approaching a giant planet. Breakup of a comet nucleus approaching a giant planet. Artwork
Center of the Andromede Galaxy (M31) - Center of the Andromeda galaxy - The Andromede galaxy is located about 2 million years ago - light from Earth. Like the lactee path, the Andromede galaxy belongs to the local group. This image obtained from the 2.5m Isaac Newton telescope of La Palma shows the central region of the galaxy where a huge mass of stars is orbiting around the nucleus. This picture covers almost half a degree of sky (about the size of the full moon), but wide angle telescopes show the galaxy to be over three degrees long at its widest. Here we see only the central part of M31, the huge mass of stars that are in orbit around its nucleus. Silhouetted against this starry background are tangled sheets and curtains of dust, very reminiscent of dust clouds we see in our own galaxy. This picture was made from three black and white glass negatives. Some care has been taken to ensure that the colours seen here are realistic
M87 elliptical galaxy in Virgo - M87 elliptical galaxy in Virgo - The M87 galaxy (NGC 4486) is located about 60 million years ago - light from Earth, in the heart of the Virgin's cluster. M87 is the brightest radio source in the constellation, it is also called Virgo A. Image made with Siding Spring's 3.9m telescope. Messier 87 (NGC 4486) lies near the centre of the nearby cluster of galaxies in Virgo at a distance of about 60 million light years. Although the physical boundaries of elliptical galaxies are not well defined, their mass can be, and by any standards M87 is enormous. It contains several thousand billion stars. Associated with this giant galaxy are large numbers of globular clusters, visible in this photograph as the cloud of slightly fuzzy objects around it. Like all ellipticals, M 87 is composed mainly of old stars and is largely devoid of the materials needed to make new ones. The galaxy is not inert however; high energy X - rays have been detected from an extensive outer halo and the galaxy itself is also known as Virgo A, the strongest radio source in the Virgo cluster. The source for this extreme behavior is probably a massive black hole at the center of the galaxy
The Comet Swift - Tuttle Flows to Earth - Illustration - Swift - Tuttle comet threatening the Earth. Artwork - Illustration of Comet Swift - Tuttle on Earth. In August 2126, this comet must pass very close to the Earth; however, the risks of a collision with the Earth are very low. In august 2126, this comet will come very close to the Earth. The risk of collision is however very low
Inserting nucleus into oyster during cultivation of cultured pearls, Japan
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1950s: Animated electrons swirl and spin around the nucleus of an atom
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Center of the Andromede Galaxy (M31) - Center of the Andromeda galaxy - The Andromede galaxy is located about 2 million years ago - light from Earth. Like the lactee path, the Andromede galaxy belongs to the local group. This image obtained from the 2.5m Isaac Newton telescope of La Palma shows the nucleus of the galaxy. This nucleus is double, probably the vestige of a collision with another galaxy. At the heart of the nearby spiral galaxy M31 is a tiny, bright nucleus, seen to be slightly elongated on this colour picture. Hubble Space Telescope pictures show the nucleus to be a double structure, possibly the remains of the nucleus of another galaxy which has now been almost completely absorbed in M31. Around the binary nucleus swirls a huge cloud of mostly old, faint stars. This not only reveals the inner nucleus but also shows traces of dust which seem to stream into the bright central part of the galaxy. Studies of the stars around the nucleus strongly suggest that at the heart of M31 there lurks a black hole, accelerating stars close to it to abnormally high velocities. Similar effects are seen in the Milky Way, but in our galaxy the nucleus is hidden at optical wavelengths, so observations are made in the infrared and at radio wavelengths
Rutherford atomic model
Stardust probe and comet Wild 2 - Artist view - The Stardust probe and comet Wild 2 - Artist view - The Stardust probe was launched on February 7, 1999 with the primary objective of studying the comet Wild 2 and taking samples during a passage through the comet's hair. Stardust was the first probe to collect and bring back to Earth interstellar and cometary dust. The return capsule landed on Earth on 15 January 2006 with the samples. Stardust is an interplanetary spacecraft, whose primary purpose was to investigate the makeup of the comet Wild 2 and its coma. It was launched on February 07 1999 and returned to Earth on January 15 2006. It is the first sample return mission to collect cosmic dust and return the sample to Earth; the capsule contains cometary and interstellar samples gathered by the Stardust spacecraft
Central region of the elliptical galaxy Centaurus A (NGC 5128) - Central part of the galaxy Centaurus A (NGC 5128) - The galaxy NGC 5128 is located about 13 million years away from Earth in the southern constellation of Centaurus. A broad dark band crosses it in the middle, a probable vestige of a collision with a spiral galaxy. This giant galaxy is a powerful radio source known as Centaurus A. It is an active galaxy whose energy comes from a supermassive black hole. The green dot visible in the dust strip is a supernova, the supernova 1986g. It appears green because the red filter image that made this trichromy image was only taken a year after the event and the supernova had weakened. Image obtained from the 3.9m telescope of Siding Spring, Australia. The nearby radio source Centaurus A (NGC 5128) looks like an elliptical galaxy, crossed by a broad, irregular dust lane. The dark band is probably the remains of a dusty spiral galaxy which is being absorbed by the giant elliptical. One of the nearer galaxies, 13 million light years away, Centaurus A is the most powerful nearby radio source and is also a copious source of X - and gamma rays as well as visible and infrared radiation.The three plates which were combined to make this colour picture have been copied to enhance the fine detail of the dust lane and to suppress the bright background of the elliptical galaxy. This process reveals many tiny red star - forming regions, especially prominent towards the end of the dust lane, and the clumps of young blue stars recently formed from them. The curious green star in the dust lane is because the blue and green - light plates were taken when supernova 1986g had just appeared, while the red - light plate was taken a year later when the supernova had faded
Galaxy NGC 660 in Pisces - Galaxy NGC 660 in Pisces - The galaxy NGC 660 is located about 20 million light years ago in the constellation Pisces. It is a polar ring galaxy, a fairly rare type of galaxy that features a ring of gas and dust almost perpendicular to the main galactic plane. Image of the central part of the galaxy obtained by the Hubble Space Telescope (HST). NGC 660 is described as being a “” polar ring””” galaxy. The central region of this galaxy is considered a “” starburst”” due to the extreme amount of luminous star formation.This galaxy is estimated to be 24 million light years away. Image taken with the Hubble space telescope (HST)
1960s: DNA in the nucleus of the cell model, pencil being pointed at the DNA.
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Rosetta probe: the Philae lander poses on the nucleus of the comet: The Rosetta probe was launched on 2 March 2004 to study comet 67P/Churyumov-Gerasimenko. His lander, Philae, landed on the surface of the comet on 12 November 2014 to analyze the composition of the nucleus of the comet - Artist's impression of Rosetta's lander Philae on the surface of comet 67P/Churyumov-Gerasimenko. Philae will be deployed to the comet in November 2014 where it will make in situ observations of the comet surface, including drilling 23 cm into the subsurface to extract material for analysis in its on board laboratory
The Rosetta lander on a comet nucleus - The Rosetta lander on a comet nucleus - The Rosetta probe was launched on 2 March 2004 to study comet 67P/Churyumov - Gerasimenko. His lander, Philae, landed on the surface of the comet on November 12, 2014 to analyze the composition of the comet's nucleus. Artist's impression of Rosetta's lander Philae (front view) on the surface of comet 67P/Churyumov - Gerasimenko. Philae will be deployed to the comet in November 2014 where it will make in situ observations of the comet surface, including drilling 23 cm into the subsurface to extract material for analysis in its on board laboratory
Nuclei of the 5 cometes visited by probes - 5 Comets nucleus seen by spacecrafts - Comparison of the size of the nuclei of the five comets visited by space probes. This montage shows the only five comets imaged up close with spacecraft. The comets vary in shape and size. Comet Hartley 2 is by far the smallest and the most active of small comets. This jet activity can be seen extending from the comet's surface and into its outer shell of gas and dust, or coma. This is first time scientists have been able to link jets to the details of the surface
Electron shell
Spermatozoon. Drawing.
Phases of fertilization of an ovum. Illustration.
Core of a Comet - Illustration - Comet nucleus. Artwork - View of comet artist in the cloud of Oort
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An image of the Pinwheel Galaxy, or M101. Located in the constellation of Ursa Major.
A human cell, cross-section
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Jet of the Galaxy Centaurus A (NGC 5128) seen in X-rays - Galaxy Centaurus A X - ray jet - View in false colours of a 30 000-year long jet - light that escapes from the nucleus of the Galaxy Centaurus A where a massive black hole is suspected. The galaxy NGC 5128 is located about 13 million light years away from Earth. Image obtained by the Chandra Space Telescope in May 2000. Chandra space telescope detects a jet emanating from the NGC 5128 core and numerous point - like X - ray sources, all bathed in diffuse X - rays produced by several - million - degree gas that fills the galaxy. It is believed that most of these sources are X - ray binaries in which a neutron star or stellar - sized black hole is accreting matter from a nearby companion star. The Cen A image was created from Chandra observations taken on December 5, 1999 and May 17, 2000
Barree spiral galaxy NGC 1365 in the Furnace - Barred spiral galaxy NGC 1365 in Fornax - NGC 1365 is a barree spiral galaxy that extends over 200,000 years - light. Located 60 million years ago - light, it belongs to the cluster of galaxies of the Furnace. Image obtained by Siding Spring's 3.9m telescope. NGC 1365, the largest spiral in the southern constellation of Fornax, is located at a distance of about 60 million light years. This beautiful galaxy is about as massive as the Milky Way, itself a substantial galaxy. Not much is known about how galaxies take on their beautiful forms, but a good deal is known about their internal organisation. The obvious 'bar' has the nucleus of the galaxy at its hub and is surrounded by masses of cooler stars that appear yellow on colour photographs. The bar itself is also yellowish, and has distinct dust lanes but it terminates abruptly in slender, curved arms that are lit by blue stars and the pink star - forming regions from which they spring
Center of the Andromede Galaxy (M31) - Center of the Andromeda galaxy - The Andromede galaxy is located about 2 million years ago - light from Earth. Two satellite galaxies accompany it: M32 (NGC 221) on the left and M110 (NGC 205) (off-field). Like the lactee path, the Andromede galaxy belongs to the local group, making up about thirty galaxies. Andromeda is the nearest major galaxy to our own Milky Way Galaxy. Our Galaxy is thought to look much like Andromeda. Together these two galaxies dominate the Local Group of galaxies. The diffuse light from Andromeda is caused by the hundreds of billions of stars that compose it. The several distinct stars that surround Andromeda's image are actually stars in our Galaxy that are well in front of the background object. M31 is so distant it takes about two million years for light to reach us from there. Much about M31 remains unknown, including how the center acquired two nuclei
1950s: Illustrated representation of an atom
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Switzerland Bell Foundry Rüetschi, 1958 (photo)
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