manganese nodule from deep-sea Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-manganese-nodule-from-deep-sea-76065280.html
RMEBN214–manganese nodule from deep-sea
Polymetalic deep sea nodule, cross-section, Manganese and cobalt rich, From 800 meters depth from Blake plateau Atlantic ocean Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/polymetalic-deep-sea-nodule-cross-section-manganese-and-cobalt-rich-image68817160.html
RMDYXTYM–Polymetalic deep sea nodule, cross-section, Manganese and cobalt rich, From 800 meters depth from Blake plateau Atlantic ocean
manganese nodule recovered in the Pacific from a depth of approximately 4000m between Hawaii and Mexico (Clarion-Clipperton-Area) on white background Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/manganese-nodule-recovered-in-the-pacific-from-a-depth-of-approximately-4000m-between-hawaii-and-mexico-clarion-clipperton-area-on-white-background-image460518116.html
RF2HN6BFG–manganese nodule recovered in the Pacific from a depth of approximately 4000m between Hawaii and Mexico (Clarion-Clipperton-Area) on white background
An assistant worker holds a manganese nodule in the hand on Thursday (21.07.2011) in the Federal Institute for Geosciences and Natural Resources (BGR) in Hanover. The red dot marks the top of the tuber. The metals enriched in the deep-sea manganese nodules copper, cobalt and nickel as well as rare trace metals such as molybdenum are needed for the production of many products of the electrical and computer industry. Photo: Caroline Seidel dpa / lni (to dpa corr: 'Metal treasure from the deep sea: Mangan-Schurfen jerks closer' from 26.07.2011) | usage worldwide Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/an-assistant-worker-holds-a-manganese-nodule-in-the-hand-on-thursday-21072011-in-the-federal-institute-for-geosciences-and-natural-resources-bgr-in-hanover-the-red-dot-marks-the-top-of-the-tuber-the-metals-enriched-in-the-deep-sea-manganese-nodules-copper-cobalt-and-nickel-as-well-as-rare-trace-metals-such-as-molybdenum-are-needed-for-the-production-of-many-products-of-the-electrical-and-computer-industry-photo-caroline-seidel-dpa-lni-to-dpa-corr-metal-treasure-from-the-deep-sea-mangan-schurfen-jerks-closer-from-26072011-usage-worldwide-image222585782.html
RMPX3JC6–An assistant worker holds a manganese nodule in the hand on Thursday (21.07.2011) in the Federal Institute for Geosciences and Natural Resources (BGR) in Hanover. The red dot marks the top of the tuber. The metals enriched in the deep-sea manganese nodules copper, cobalt and nickel as well as rare trace metals such as molybdenum are needed for the production of many products of the electrical and computer industry. Photo: Caroline Seidel dpa / lni (to dpa corr: 'Metal treasure from the deep sea: Mangan-Schurfen jerks closer' from 26.07.2011) | usage worldwide
Polymetallic nodule, also called manganese nodule, rock concretions on the sea bottom concentric layers of iron and manganese Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-polymetallic-nodule-also-called-manganese-nodule-rock-concretions-107433587.html
RMG6P0HR–Polymetallic nodule, also called manganese nodule, rock concretions on the sea bottom concentric layers of iron and manganese
Estuary to Abyss Expedition 2004. A Pluto skate found (Fenestraja plutonia) on an iron and manganese nodule stained sand seabed. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-estuary-to-abyss-expedition-2004-a-pluto-skate-found-fenestraja-plutonia-104149846.html
RMG1CC5A–Estuary to Abyss Expedition 2004. A Pluto skate found (Fenestraja plutonia) on an iron and manganese nodule stained sand seabed.
Polymetallic nodule, also called manganese nodule, rock concretion sea bottom for concentric layers of iron and manganese, metal Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-polymetallic-nodule-also-called-manganese-nodule-rock-concretion-sea-107447514.html
RMG6PJB6–Polymetallic nodule, also called manganese nodule, rock concretion sea bottom for concentric layers of iron and manganese, metal
Manganese nodule, studio picture Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-manganese-nodule-studio-picture-15290802.html
RMAMKY0K–Manganese nodule, studio picture
Surface of stone korea,Manganese nodule,Sea-bed Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-koreamanganese-nodulesea-bed-image335108221.html
RF2AD5DXN–Surface of stone korea,Manganese nodule,Sea-bed
manganese nodules from deep-sea Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-manganese-nodules-from-deep-sea-76065279.html
RMEBN213–manganese nodules from deep-sea
Manganese Nodule (polymetallic nodule), from the deepest point in the Earth's ocean, 6.85 miles (11.03 Kilometers), Southern end of the Mariana Trench Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/manganese-nodule-polymetallic-nodule-from-the-deepest-point-in-the-earths-ocean-685-miles-1103-kilometers-southern-end-of-the-mariana-trench-image541318375.html
RM2PCK533–Manganese Nodule (polymetallic nodule), from the deepest point in the Earth's ocean, 6.85 miles (11.03 Kilometers), Southern end of the Mariana Trench
manganese nodule and crest, USA, Virginia Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-manganese-nodule-and-crest-usa-virginia-76065282.html
RMEBN216–manganese nodule and crest, USA, Virginia
Sedimentary Rock Phosphate Manganese Nodule. This object is part of the Education and Outreach collection, some of which are in the Q?rius science education center and available to see.114 Jan 2020 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/sedimentary-rock-phosphate-manganese-nodule-this-object-is-part-of-the-education-and-outreach-collection-some-of-which-are-in-the-qrius-science-education-center-and-available-to-see114-jan-2020-image353470028.html
RM2BF1XHG–Sedimentary Rock Phosphate Manganese Nodule. This object is part of the Education and Outreach collection, some of which are in the Q?rius science education center and available to see.114 Jan 2020
manganese nodule from deep-sea Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-manganese-nodule-from-deep-sea-76065281.html
RMEBN215–manganese nodule from deep-sea
Manganese nodule. minerals. Pacific Ocean, 3 mile depth, 1000 mi W of Mexico and S of Hawaii Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/manganese-nodule-minerals-pacific-ocean-3-mile-depth-1000-mi-w-of-mexico-and-s-of-hawaii-image472969675.html
RM2JDDHJ3–Manganese nodule. minerals. Pacific Ocean, 3 mile depth, 1000 mi W of Mexico and S of Hawaii
Polymetallic nodule, also called manganese nodule, rock concretions on the sea bottom formed of concentric layers of iron and manganese hydroxides ar Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/polymetallic-nodule-also-called-manganese-nodule-rock-concretions-on-the-sea-bottom-formed-of-concentric-layers-of-iron-and-manganese-hydroxides-ar-image357533762.html
RM2BNK1XX–Polymetallic nodule, also called manganese nodule, rock concretions on the sea bottom formed of concentric layers of iron and manganese hydroxides ar
Macro photography of gold mica in the rockn. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/macro-photography-of-gold-mica-in-the-rockn-image182488984.html
RFMGW2FM–Macro photography of gold mica in the rockn.
Polymetallic nodule, also called manganese nodule, rock concretion formed of concentric layers of iron and manganese hydroxides around a core. From Bl Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/polymetallic-nodule-also-called-manganese-nodule-rock-concretion-formed-of-concentric-layers-of-iron-and-manganese-hydroxides-around-a-core-from-bl-image357533463.html
RM2BNK1G7–Polymetallic nodule, also called manganese nodule, rock concretion formed of concentric layers of iron and manganese hydroxides around a core. From Bl
brownstone in the sand Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-brownstone-in-the-sand-10744687.html
RMA3CMWM–brownstone in the sand
. Bulletin of the Museum of Comparative Zoology at Harvard College. Zoology; Zoology. Fig. 180. — Sli.ark's tooth (Oxyrliina). 2.350 fathoms. (Chall.)!. Fig. 18.5. —Sealpellum Darwinii, attached to manganese nodule. (Chall.) . Fig. 187. —Ear-bone (Zyphius). 2..37-5 fathoms. (Chail.) globigerinse, and a blue mud may have a large proportion of those organisms so characteristic of true deep-sea deposits. From the slow rate of accumulation of the red clay in the deep regions of the Pacific lying far from land, we may infer that the remains of tertiary sharks and whales are buried on the bottom. T Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/bulletin-of-the-museum-of-comparative-zoology-at-harvard-college-zoology-zoology-fig-180-sliarks-tooth-oxyrliina-2350-fathoms-chall!-fig-185-sealpellum-darwinii-attached-to-manganese-nodule-chall-fig-187-ear-bone-zyphius-237-5-fathoms-chail-globigerinse-and-a-blue-mud-may-have-a-large-proportion-of-those-organisms-so-characteristic-of-true-deep-sea-deposits-from-the-slow-rate-of-accumulation-of-the-red-clay-in-the-deep-regions-of-the-pacific-lying-far-from-land-we-may-infer-that-the-remains-of-tertiary-sharks-and-whales-are-buried-on-the-bottom-t-image233919307.html
RMRGFXCY–. Bulletin of the Museum of Comparative Zoology at Harvard College. Zoology; Zoology. Fig. 180. — Sli.ark's tooth (Oxyrliina). 2.350 fathoms. (Chall.)!. Fig. 18.5. —Sealpellum Darwinii, attached to manganese nodule. (Chall.) . Fig. 187. —Ear-bone (Zyphius). 2..37-5 fathoms. (Chail.) globigerinse, and a blue mud may have a large proportion of those organisms so characteristic of true deep-sea deposits. From the slow rate of accumulation of the red clay in the deep regions of the Pacific lying far from land, we may infer that the remains of tertiary sharks and whales are buried on the bottom. T
manganese nodule recovered in the Pacific from a depth of approximately 4000m between Hawaii and Mexico (Clarion-Clipperton-Area) on white background Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/manganese-nodule-recovered-in-the-pacific-from-a-depth-of-approximately-4000m-between-hawaii-and-mexico-clarion-clipperton-area-on-white-background-image460518103.html
RF2HN6BF3–manganese nodule recovered in the Pacific from a depth of approximately 4000m between Hawaii and Mexico (Clarion-Clipperton-Area) on white background
A manganese nodule is on Thursday (21.07.2011) on a table in the Federal Institute for Geosciences and Natural Resources (BGR) in Hanover on a ruler. The metals enriched in the deep-sea manganese nodules copper, cobalt and nickel as well as rare trace metals such as molybdenum are needed for the production of many products of the electrical and computer industry. Photo: Caroline Seidel dpa / lni (to dpa corr: 'Metal treasure from the deep sea: Mangan-Schurfen jerks closer' from 26.07.2011) | usage worldwide Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-manganese-nodule-is-on-thursday-21072011-on-a-table-in-the-federal-institute-for-geosciences-and-natural-resources-bgr-in-hanover-on-a-ruler-the-metals-enriched-in-the-deep-sea-manganese-nodules-copper-cobalt-and-nickel-as-well-as-rare-trace-metals-such-as-molybdenum-are-needed-for-the-production-of-many-products-of-the-electrical-and-computer-industry-photo-caroline-seidel-dpa-lni-to-dpa-corr-metal-treasure-from-the-deep-sea-mangan-schurfen-jerks-closer-from-26072011-usage-worldwide-image222585776.html
RMPX3JC0–A manganese nodule is on Thursday (21.07.2011) on a table in the Federal Institute for Geosciences and Natural Resources (BGR) in Hanover on a ruler. The metals enriched in the deep-sea manganese nodules copper, cobalt and nickel as well as rare trace metals such as molybdenum are needed for the production of many products of the electrical and computer industry. Photo: Caroline Seidel dpa / lni (to dpa corr: 'Metal treasure from the deep sea: Mangan-Schurfen jerks closer' from 26.07.2011) | usage worldwide
Psilomelane - A common mineral consisting of various impure manganese compounds usually found in black rounded masses Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-psilomelane-a-common-mineral-consisting-of-various-impure-manganese-15832762.html
RMAPNFYR–Psilomelane - A common mineral consisting of various impure manganese compounds usually found in black rounded masses
Flensburg, Germany. 04th Sep, 2019. During a visit to the Geomar Hemlholtz Centre Queen Margrethe II of Denmark receives a manganese nodule from Peter Herzig (l), Director of the Institute. She will visit Schleswig-Holstein until Friday. Denmark sees the visit as a prelude to the 100-year celebrations to draw the line by referendum in 2020. Credit: Carsten Rehder/dpa/Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/flensburg-germany-04th-sep-2019-during-a-visit-to-the-geomar-hemlholtz-centre-queen-margrethe-ii-of-denmark-receives-a-manganese-nodule-from-peter-herzig-l-director-of-the-institute-she-will-visit-schleswig-holstein-until-friday-denmark-sees-the-visit-as-a-prelude-to-the-100-year-celebrations-to-draw-the-line-by-referendum-in-2020-credit-carsten-rehderdpaalamy-live-news-image270206462.html
RMWKGY2P–Flensburg, Germany. 04th Sep, 2019. During a visit to the Geomar Hemlholtz Centre Queen Margrethe II of Denmark receives a manganese nodule from Peter Herzig (l), Director of the Institute. She will visit Schleswig-Holstein until Friday. Denmark sees the visit as a prelude to the 100-year celebrations to draw the line by referendum in 2020. Credit: Carsten Rehder/dpa/Alamy Live News
Botryoidal Goethite 60 Mine, Luis Lopez Manganese District Socorro County, New Mexico Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/botryoidal-goethite-60-mine-luis-lopez-manganese-district-socorro-county-new-mexico-image400836007.html
RF2E83JBK–Botryoidal Goethite 60 Mine, Luis Lopez Manganese District Socorro County, New Mexico
. The Earth beneath the sea : History . Fig. 8. Zonal growth in manganese nodule (16810, South Pacific). Reflected light, ^^^lite = manganese oxide minerals; grey = goethite; black = mounting medium (polyvinyl resin) filling voids. goethite content (Figs. 8 and 9). Detailed information on the distribution of macroscopic concretions over the present sediment sm'face has been obtained through deep-sea bottom photography (Fig. 5) such as by Owen, Shipek, Menard and Dietz in Dietz (1955), Menard and Shipek (1958), Heezen et al. (1959), Shipek (1960), and Zenkevitch (1959), and by sampling of the s Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-earth-beneath-the-sea-history-fig-8-zonal-growth-in-manganese-nodule-16810-south-pacific-reflected-light-lite-=-manganese-oxide-minerals-grey-=-goethite-black-=-mounting-medium-polyvinyl-resin-filling-voids-goethite-content-figs-8-and-9-detailed-information-on-the-distribution-of-macroscopic-concretions-over-the-present-sediment-smface-has-been-obtained-through-deep-sea-bottom-photography-fig-5-such-as-by-owen-shipek-menard-and-dietz-in-dietz-1955-menard-and-shipek-1958-heezen-et-al-1959-shipek-1960-and-zenkevitch-1959-and-by-sampling-of-the-s-image178488283.html
RMMAARHF–. The Earth beneath the sea : History . Fig. 8. Zonal growth in manganese nodule (16810, South Pacific). Reflected light, ^^^lite = manganese oxide minerals; grey = goethite; black = mounting medium (polyvinyl resin) filling voids. goethite content (Figs. 8 and 9). Detailed information on the distribution of macroscopic concretions over the present sediment sm'face has been obtained through deep-sea bottom photography (Fig. 5) such as by Owen, Shipek, Menard and Dietz in Dietz (1955), Menard and Shipek (1958), Heezen et al. (1959), Shipek (1960), and Zenkevitch (1959), and by sampling of the s
Cross-section of a polymetalic deep sea nodule, rich in Manganese and Cobalt, from the Blake plateau (800m deep) off the coast of South Carolina, USA. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/cross-section-of-a-polymetalic-deep-sea-nodule-rich-in-manganese-and-cobalt-from-the-blake-plateau-800m-deep-off-the-coast-of-south-carolina-usa-image263016899.html
RMW7WCMK–Cross-section of a polymetalic deep sea nodule, rich in Manganese and Cobalt, from the Blake plateau (800m deep) off the coast of South Carolina, USA.
Surface of stone Stromatolite Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-stromatolite-image335106674.html
RF2AD5BYE–Surface of stone Stromatolite
Manganese nodule. minerals. Pacific Ocean, 3 mile depth, 1000 mi W of Mexico and S of Hawaii Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/manganese-nodule-minerals-pacific-ocean-3-mile-depth-1000-mi-w-of-mexico-and-s-of-hawaii-image472966535.html
RM2JDDDHY–Manganese nodule. minerals. Pacific Ocean, 3 mile depth, 1000 mi W of Mexico and S of Hawaii
Macro photography of mica in the rock. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/macro-photography-of-mica-in-the-rock-image182488946.html
. Science of the sea. An elementary handbook of practical oceanography for travellers, sailors, and yachtsmen. Fig. 159. — Scalpellumon a Manganese Nodule( Challenger ). Fig. 160.—Spherule with MetallicNucleus coated with BlackMagnetite, supposed to be ofCosmic Origin (Challenger). teeth of sharks and ear-bones of whales, impregnatedand coated more or less thickly by the peroxides ofiron and manganese. In the Red Clays, also, numerousminute magnetic spherules (Fig. 160), some with OOZES 219 metallic nuclei, have been met with, and have also beenextracted from the manganese nodules after these Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/science-of-the-sea-an-elementary-handbook-of-practical-oceanography-for-travellers-sailors-and-yachtsmen-fig-159-scalpellumon-a-manganese-nodule-challenger-fig-160spherule-with-metallicnucleus-coated-with-blackmagnetite-supposed-to-be-ofcosmic-origin-challenger-teeth-of-sharks-and-ear-bones-of-whales-impregnatedand-coated-more-or-less-thickly-by-the-peroxides-ofiron-and-manganese-in-the-red-clays-also-numerousminute-magnetic-spherules-fig-160-some-with-oozes-219-metallic-nuclei-have-been-met-with-and-have-also-beenextracted-from-the-manganese-nodules-after-these-image370340019.html
RM2CEECD7–. Science of the sea. An elementary handbook of practical oceanography for travellers, sailors, and yachtsmen. Fig. 159. — Scalpellumon a Manganese Nodule( Challenger ). Fig. 160.—Spherule with MetallicNucleus coated with BlackMagnetite, supposed to be ofCosmic Origin (Challenger). teeth of sharks and ear-bones of whales, impregnatedand coated more or less thickly by the peroxides ofiron and manganese. In the Red Clays, also, numerousminute magnetic spherules (Fig. 160), some with OOZES 219 metallic nuclei, have been met with, and have also beenextracted from the manganese nodules after these
manganese nodule recovered in the Pacific from a depth of approximately 4000m between Hawaii and Mexico (Clarion-Clipperton-Area) on white background Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/manganese-nodule-recovered-in-the-pacific-from-a-depth-of-approximately-4000m-between-hawaii-and-mexico-clarion-clipperton-area-on-white-background-image460518046.html
RF2HN6BD2–manganese nodule recovered in the Pacific from a depth of approximately 4000m between Hawaii and Mexico (Clarion-Clipperton-Area) on white background
Flensburg, Germany. 04th Sep, 2019. During a visit to the Geomar Hemlholtz Centre Queen Margrethe II of Denmark receives a manganese nodule from Peter Herzig (l), Director of the Institute. She will visit Schleswig-Holstein until Friday. Denmark sees the visit as a prelude to the 100-year celebrations to draw the line by referendum in 2020. Credit: Carsten Rehder/dpa/Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/flensburg-germany-04th-sep-2019-during-a-visit-to-the-geomar-hemlholtz-centre-queen-margrethe-ii-of-denmark-receives-a-manganese-nodule-from-peter-herzig-l-director-of-the-institute-she-will-visit-schleswig-holstein-until-friday-denmark-sees-the-visit-as-a-prelude-to-the-100-year-celebrations-to-draw-the-line-by-referendum-in-2020-credit-carsten-rehderdpaalamy-live-news-image270206514.html
RMWKGY4J–Flensburg, Germany. 04th Sep, 2019. During a visit to the Geomar Hemlholtz Centre Queen Margrethe II of Denmark receives a manganese nodule from Peter Herzig (l), Director of the Institute. She will visit Schleswig-Holstein until Friday. Denmark sees the visit as a prelude to the 100-year celebrations to draw the line by referendum in 2020. Credit: Carsten Rehder/dpa/Alamy Live News
manganese depositions from deep-sea Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-manganese-depositions-from-deep-sea-76065277.html
RMEBN211–manganese depositions from deep-sea
Botryoidal Goethite 60 Mine, Luis Lopez Manganese District Socorro County, New Mexico Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/botryoidal-goethite-60-mine-luis-lopez-manganese-district-socorro-county-new-mexico-image400835945.html
RF2E83J9D–Botryoidal Goethite 60 Mine, Luis Lopez Manganese District Socorro County, New Mexico
. The Earth beneath the sea : History . Fig. 12. 29° 17'N, 57° 23'W. Depth 5618 m. Abyssal hills southeast of Bermuda Rise. Area of picture 2 by 2^ m. (Photo by L.G.O.) Rovmd manganese nodules each capped with a thin covering of sediment. The scour pits around each nodule suggest currents which must have ceased before the sediment cap was laid down. Note the shark's tooth in lower right and meandering ti-ack. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-earth-beneath-the-sea-history-fig-12-29-17n-57-23w-depth-5618-m-abyssal-hills-southeast-of-bermuda-rise-area-of-picture-2-by-2-m-photo-by-lgo-rovmd-manganese-nodules-each-capped-with-a-thin-covering-of-sediment-the-scour-pits-around-each-nodule-suggest-currents-which-must-have-ceased-before-the-sediment-cap-was-laid-down-note-the-sharks-tooth-in-lower-right-and-meandering-ti-ack-image178488434.html
RMMAARPX–. The Earth beneath the sea : History . Fig. 12. 29° 17'N, 57° 23'W. Depth 5618 m. Abyssal hills southeast of Bermuda Rise. Area of picture 2 by 2^ m. (Photo by L.G.O.) Rovmd manganese nodules each capped with a thin covering of sediment. The scour pits around each nodule suggest currents which must have ceased before the sediment cap was laid down. Note the shark's tooth in lower right and meandering ti-ack.
Surface of stone Stromatolite Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-stromatolite-image335106891.html
Manganese nodule. minerals. Pacific Ocean, 3 mile depth, 1000 mi W of Mexico and S of Hawaii Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/manganese-nodule-minerals-pacific-ocean-3-mile-depth-1000-mi-w-of-mexico-and-s-of-hawaii-image472966647.html
RM2JDDDNY–Manganese nodule. minerals. Pacific Ocean, 3 mile depth, 1000 mi W of Mexico and S of Hawaii
. The Earth beneath the sea : History. Ocean bottom; Marine geophysics. 446 LAUGHTON [chap. 18. Fig. 12. 29° 17'N, 57° 23'W. Depth 5618 m. Abyssal hills southeast of Bermuda Rise. Area of picture 2 by 2^ m. (Photo by L.G.O.) Rovmd manganese nodules each capped with a thin covering of sediment. The scour pits around each nodule suggest currents which must have ceased before the sediment cap was laid down. Note the shark's tooth in lower right and meandering ti-ack.. Please note that these images are extracted from scanned page images that may have been digitally enhanced for readability - color Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-earth-beneath-the-sea-history-ocean-bottom-marine-geophysics-446-laughton-chap-18-fig-12-29-17n-57-23w-depth-5618-m-abyssal-hills-southeast-of-bermuda-rise-area-of-picture-2-by-2-m-photo-by-lgo-rovmd-manganese-nodules-each-capped-with-a-thin-covering-of-sediment-the-scour-pits-around-each-nodule-suggest-currents-which-must-have-ceased-before-the-sediment-cap-was-laid-down-note-the-sharks-tooth-in-lower-right-and-meandering-ti-ack-please-note-that-these-images-are-extracted-from-scanned-page-images-that-may-have-been-digitally-enhanced-for-readability-color-image232530113.html
RMRE8JEW–. The Earth beneath the sea : History. Ocean bottom; Marine geophysics. 446 LAUGHTON [chap. 18. Fig. 12. 29° 17'N, 57° 23'W. Depth 5618 m. Abyssal hills southeast of Bermuda Rise. Area of picture 2 by 2^ m. (Photo by L.G.O.) Rovmd manganese nodules each capped with a thin covering of sediment. The scour pits around each nodule suggest currents which must have ceased before the sediment cap was laid down. Note the shark's tooth in lower right and meandering ti-ack.. Please note that these images are extracted from scanned page images that may have been digitally enhanced for readability - color
manganese nodule recovered in the Pacific from a depth of approximately 4000m between Hawaii and Mexico (Clarion-Clipperton-Area) on white background Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/manganese-nodule-recovered-in-the-pacific-from-a-depth-of-approximately-4000m-between-hawaii-and-mexico-clarion-clipperton-area-on-white-background-image460518036.html
RF2HN6BCM–manganese nodule recovered in the Pacific from a depth of approximately 4000m between Hawaii and Mexico (Clarion-Clipperton-Area) on white background
Botryoidal Goethite 60 Mine, Luis Lopez Manganese District Socorro County, New Mexico Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/botryoidal-goethite-60-mine-luis-lopez-manganese-district-socorro-county-new-mexico-image400835837.html
RF2E83J5H–Botryoidal Goethite 60 Mine, Luis Lopez Manganese District Socorro County, New Mexico
. The Earth beneath the sea : History . Fig. 30. Nontronite (grey) intergrown with manganese oxide minerals (black) in nodule, (white = voids). Noil Tobe, Timor (Danavi Formation). Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-earth-beneath-the-sea-history-fig-30-nontronite-grey-intergrown-with-manganese-oxide-minerals-black-in-nodule-white-=-voids-noil-tobe-timor-danavi-formation-image178488240.html
RMMAARG0–. The Earth beneath the sea : History . Fig. 30. Nontronite (grey) intergrown with manganese oxide minerals (black) in nodule, (white = voids). Noil Tobe, Timor (Danavi Formation).
Surface of stone Quartz and Feldspar, Jangsu-gun,Jeonbuk,Korea Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-quartz-and-feldspar-jangsu-gunjeonbukkorea-image335103295.html
RF2AD57JR–Surface of stone Quartz and Feldspar, Jangsu-gun,Jeonbuk,Korea
Manganese nodule. minerals. Pacific Ocean, 3 mile depth, 1000 mi W of Mexico and S of Hawaii Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/manganese-nodule-minerals-pacific-ocean-3-mile-depth-1000-mi-w-of-mexico-and-s-of-hawaii-image472968353.html
RM2JDDFXW–Manganese nodule. minerals. Pacific Ocean, 3 mile depth, 1000 mi W of Mexico and S of Hawaii
. The Earth beneath the sea : History. Ocean bottom; Marine geophysics. Fig. 8. Zonal growth in manganese nodule (16810, South Pacific). Reflected light, ^^^lite = manganese oxide minerals; grey = goethite; black = mounting medium (polyvinyl resin) filling voids. goethite content (Figs. 8 and 9). Detailed information on the distribution of macroscopic concretions over the present sediment sm'face has been obtained through deep-sea bottom photography (Fig. 5) such as by Owen, Shipek, Menard and Dietz in Dietz (1955), Menard and Shipek (1958), Heezen et al. (1959), Shipek (1960), and Zenkevitch Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-earth-beneath-the-sea-history-ocean-bottom-marine-geophysics-fig-8-zonal-growth-in-manganese-nodule-16810-south-pacific-reflected-light-lite-=-manganese-oxide-minerals-grey-=-goethite-black-=-mounting-medium-polyvinyl-resin-filling-voids-goethite-content-figs-8-and-9-detailed-information-on-the-distribution-of-macroscopic-concretions-over-the-present-sediment-smface-has-been-obtained-through-deep-sea-bottom-photography-fig-5-such-as-by-owen-shipek-menard-and-dietz-in-dietz-1955-menard-and-shipek-1958-heezen-et-al-1959-shipek-1960-and-zenkevitch-image232529152.html
RMRE8H8G–. The Earth beneath the sea : History. Ocean bottom; Marine geophysics. Fig. 8. Zonal growth in manganese nodule (16810, South Pacific). Reflected light, ^^^lite = manganese oxide minerals; grey = goethite; black = mounting medium (polyvinyl resin) filling voids. goethite content (Figs. 8 and 9). Detailed information on the distribution of macroscopic concretions over the present sediment sm'face has been obtained through deep-sea bottom photography (Fig. 5) such as by Owen, Shipek, Menard and Dietz in Dietz (1955), Menard and Shipek (1958), Heezen et al. (1959), Shipek (1960), and Zenkevitch
Botryoidal Goethite 60 Mine, Luis Lopez Manganese District Socorro County, New Mexico Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/botryoidal-goethite-60-mine-luis-lopez-manganese-district-socorro-county-new-mexico-image400835792.html
RF2E83J40–Botryoidal Goethite 60 Mine, Luis Lopez Manganese District Socorro County, New Mexico
Surface of stone Serpentine, Chungcheongnam-do,Korea Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-serpentine-chungcheongnam-dokorea-image335105191.html
RF2AD5A2F–Surface of stone Serpentine, Chungcheongnam-do,Korea
Manganese nodule. minerals. Pacific Ocean, 3 mile depth, 1000 mi W of Mexico and S of Hawaii Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/manganese-nodule-minerals-pacific-ocean-3-mile-depth-1000-mi-w-of-mexico-and-s-of-hawaii-image472967445.html
RM2JDDEPD–Manganese nodule. minerals. Pacific Ocean, 3 mile depth, 1000 mi W of Mexico and S of Hawaii
. The Earth beneath the sea : History. Ocean bottom; Marine geophysics. Fig. 29. Chlorite. North Pacific abyssal plain. Polarized light; canada balsam.. Fig. 30. Nontronite (grey) intergrown with manganese oxide minerals (black) in nodule, (white = voids). Noil Tobe, Timor (Danavi Formation).. Please note that these images are extracted from scanned page images that may have been digitally enhanced for readability - coloration and appearance of these illustrations may not perfectly resemble the original work.. Hill, M. N. (Maurice Neville), 1919-. New York : Interscience Pub. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-earth-beneath-the-sea-history-ocean-bottom-marine-geophysics-fig-29-chlorite-north-pacific-abyssal-plain-polarized-light-canada-balsam-fig-30-nontronite-grey-intergrown-with-manganese-oxide-minerals-black-in-nodule-white-=-voids-noil-tobe-timor-danavi-formation-please-note-that-these-images-are-extracted-from-scanned-page-images-that-may-have-been-digitally-enhanced-for-readability-coloration-and-appearance-of-these-illustrations-may-not-perfectly-resemble-the-original-work-hill-m-n-maurice-neville-1919-new-york-interscience-pub-image232515290.html
RMRE7YHE–. The Earth beneath the sea : History. Ocean bottom; Marine geophysics. Fig. 29. Chlorite. North Pacific abyssal plain. Polarized light; canada balsam.. Fig. 30. Nontronite (grey) intergrown with manganese oxide minerals (black) in nodule, (white = voids). Noil Tobe, Timor (Danavi Formation).. Please note that these images are extracted from scanned page images that may have been digitally enhanced for readability - coloration and appearance of these illustrations may not perfectly resemble the original work.. Hill, M. N. (Maurice Neville), 1919-. New York : Interscience Pub.
Botryoidal Goethite 60 Mine, Luis Lopez Manganese District Socorro County, New Mexico Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/botryoidal-goethite-60-mine-luis-lopez-manganese-district-socorro-county-new-mexico-image400835891.html
RF2E83J7F–Botryoidal Goethite 60 Mine, Luis Lopez Manganese District Socorro County, New Mexico
Surface of stone Metaconglomerate, Wanju-gun,Jeonbuk Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-metaconglomerate-wanju-gunjeonbuk-image335102283.html
RF2AD56AK–Surface of stone Metaconglomerate, Wanju-gun,Jeonbuk
. The Earth beneath the sea : History. Ocean bottom; Marine geophysics. Fig. 12. 29° 17'N, 57° 23'W. Depth 5618 m. Abyssal hills southeast of Bermuda Rise. Area of picture 2 by 2^ m. (Photo by L.G.O.) Rovmd manganese nodules each capped with a thin covering of sediment. The scour pits around each nodule suggest currents which must have ceased before the sediment cap was laid down. Note the shark's tooth in lower right and meandering ti-ack.. Fig. 13. 32° 34'N, 117° 47'W. Depth 256 m. Slopes of Thirty-Mile Bank. Area of picture H by 1| m. (U.S. Navy Electronics Laboratory photo by C. J. Shipek. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-earth-beneath-the-sea-history-ocean-bottom-marine-geophysics-fig-12-29-17n-57-23w-depth-5618-m-abyssal-hills-southeast-of-bermuda-rise-area-of-picture-2-by-2-m-photo-by-lgo-rovmd-manganese-nodules-each-capped-with-a-thin-covering-of-sediment-the-scour-pits-around-each-nodule-suggest-currents-which-must-have-ceased-before-the-sediment-cap-was-laid-down-note-the-sharks-tooth-in-lower-right-and-meandering-ti-ack-fig-13-32-34n-117-47w-depth-256-m-slopes-of-thirty-mile-bank-area-of-picture-h-by-1-m-us-navy-electronics-laboratory-photo-by-c-j-shipek-image232530111.html
RMRE8JER–. The Earth beneath the sea : History. Ocean bottom; Marine geophysics. Fig. 12. 29° 17'N, 57° 23'W. Depth 5618 m. Abyssal hills southeast of Bermuda Rise. Area of picture 2 by 2^ m. (Photo by L.G.O.) Rovmd manganese nodules each capped with a thin covering of sediment. The scour pits around each nodule suggest currents which must have ceased before the sediment cap was laid down. Note the shark's tooth in lower right and meandering ti-ack.. Fig. 13. 32° 34'N, 117° 47'W. Depth 256 m. Slopes of Thirty-Mile Bank. Area of picture H by 1| m. (U.S. Navy Electronics Laboratory photo by C. J. Shipek.
Surface of stone Sericite mineral, Chungcheongnam-do,Yesan Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-sericite-mineral-chungcheongnam-doyesan-image335104586.html
RF2AD598X–Surface of stone Sericite mineral, Chungcheongnam-do,Yesan
Surface of stone Stibnite Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-stibnite-image335105795.html
RF2AD5AT3–Surface of stone Stibnite
Surface of stone Metaconglomerate, Wanju-gun,Jeonbuk Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-metaconglomerate-wanju-gunjeonbuk-image335102392.html
RF2AD56EG–Surface of stone Metaconglomerate, Wanju-gun,Jeonbuk
Surface of stone Wollastonite Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-wollastonite-image335107591.html
RF2AD5D47–Surface of stone Wollastonite
Surface of stone Sericite mineral, Gyeongsangbuk-do Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-sericite-mineral-gyeongsangbuk-do-image335104801.html
RF2AD59GH–Surface of stone Sericite mineral, Gyeongsangbuk-do
Surface of stone Smoke-stone, Mungyeong-si,Gyeongbuk,Korea Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-smoke-stone-mungyeong-sigyeongbukkorea-image335105594.html
RF2AD5AGX–Surface of stone Smoke-stone, Mungyeong-si,Gyeongbuk,Korea
Surface of stone Zinc, Copper mine Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-zinc-copper-mine-image335107782.html
RF2AD5DB2–Surface of stone Zinc, Copper mine
Surface of stone Serpentine Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-serpentine-image335105023.html
RF2AD59TF–Surface of stone Serpentine
Surface of stone Marble,Jeonju-si,Jeonbuk Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-marblejeonju-sijeonbuk-image335102072.html
RF2AD5634–Surface of stone Marble,Jeonju-si,Jeonbuk
Surface of stone Marble Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-marble-image335101818.html
RF2AD55P2–Surface of stone Marble
Surface of stone Rhodochrosite, Boulangerite,Bonghwa Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-rhodochrosite-boulangeritebonghwa-image335103849.html
RF2AD58AH–Surface of stone Rhodochrosite, Boulangerite,Bonghwa
Surface of stone Tourmaline,Jangsu,Jeonbuk Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-tourmalinejangsujeonbuk-image335107343.html
RF2AD5CRB–Surface of stone Tourmaline,Jangsu,Jeonbuk
Surface of stone Samcheok, Gangwon,Gold Silver Copper mine Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-samcheok-gangwongold-silver-copper-mine-image335104306.html
RF2AD58XX–Surface of stone Samcheok, Gangwon,Gold Silver Copper mine
Surface of stone Quartz and Feldspar Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-quartz-and-feldspar-image335102973.html
RF2AD5779–Surface of stone Quartz and Feldspar
Surface of stone Silicified wood Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-silicified-wood-image335105329.html
RF2AD5A7D–Surface of stone Silicified wood
Surface of stone Mica schist, Mica slate, Jangsu-gun,Jeonbuk,Korea Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-mica-schist-mica-slate-jangsu-gunjeonbukkorea-image335102616.html
RF2AD56PG–Surface of stone Mica schist, Mica slate, Jangsu-gun,Jeonbuk,Korea
Surface of stone Stromatolite fossil of natural pattern Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-stromatolite-fossil-of-natural-pattern-image335106239.html
RF2AD5BBY–Surface of stone Stromatolite fossil of natural pattern
Surface of stone Zinc, Copper mine,Gyeongbuk,Yeonhwa mine Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-zinc-copper-minegyeongbukyeonhwa-mine-image335108036.html
RF2AD5DM4–Surface of stone Zinc, Copper mine,Gyeongbuk,Yeonhwa mine
Surface of stone Magnetite Lamellar, Chungju-si,Chungbuk,Korea Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-magnetite-lamellar-chungju-sichungbukkorea-image335100888.html
RF2AD54GT–Surface of stone Magnetite Lamellar, Chungju-si,Chungbuk,Korea
Surface of stone Magnetite Lamellar, Chungju-si,Chungbuk,Korea Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-magnetite-lamellar-chungju-sichungbukkorea-image335100707.html
RF2AD54AB–Surface of stone Magnetite Lamellar, Chungju-si,Chungbuk,Korea
Surface of stone Stibnite, Chungcheongnam-do,Duksung Co mine Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-stibnite-chungcheongnam-doduksung-co-mine-image335106086.html
RF2AD5B6E–Surface of stone Stibnite, Chungcheongnam-do,Duksung Co mine
Surface of stone Muscovite, White mica Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-muscovite-white-mica-image335102775.html
RF2AD5707–Surface of stone Muscovite, White mica
Surface of stone Tourmaline and Muscovite Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-tourmaline-and-muscovite-image335107130.html
RF2AD5CFP–Surface of stone Tourmaline and Muscovite
01698 Surface of stone Rhyolite Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/01698-surface-of-stone-rhyolite-image335104055.html
RF2AD58HY–01698 Surface of stone Rhyolite
Surface of stone Quartz and Feldspar, Jangsu-gun,Jeonbuk,Korea Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-quartz-and-feldspar-jangsu-gunjeonbukkorea-image335103085.html
RF2AD57B9–Surface of stone Quartz and Feldspar, Jangsu-gun,Jeonbuk,Korea
Surface of stone Quartz Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-quartz-image335103465.html
RF2AD57TW–Surface of stone Quartz
Surface of stone Magnetite, Gangwon-do,Siheung mine Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-magnetite-gangwon-dosiheung-mine-image335101541.html
RF2AD55C5–Surface of stone Magnetite, Gangwon-do,Siheung mine
Surface of stone Quartz, Jangsu-gun,Jeonbuk,Korea Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-quartz-jangsu-gunjeonbukkorea-image335103691.html
RF2AD584Y–Surface of stone Quartz, Jangsu-gun,Jeonbuk,Korea
Surface of stone Stromatolite Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-stromatolite-image335106464.html
RF2AD5BM0–Surface of stone Stromatolite
Surface of stone Stromatolite Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/surface-of-stone-stromatolite-image335106988.html
RF2AD5CAM–Surface of stone Stromatolite
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