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HMS Queen Mary leaving the River Tyne HMS Queen Mary leaving the River Tyne

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ocean | ocean | sea | sea | chimney | chimney | sky | sky | cloud | cloud | abstract | abstract | blur | blur | building | building | water | water | boat | boat | interesting | interesting | wire | wire | cabin | cabin | gun | gun | ship | ship | unitedkingdom | unitedkingdom | britain | britain | mark | mark | flag | flag | smoke | smoke | grain | grain | paddle | paddle | sailors | sailors | bank | bank | rail | rail | windy | windy | vessel | vessel | battle | battle | rope | rope | pole | pole | deck | deck | fabric | fabric | crew | crew | cylinder | cylinder | land | land | oar | oar | unusual | unusual | mast | mast | ww1 | ww1 | launch | launch | striking | striking | greatwar | greatwar | tyneside | tyneside | jarrow | jarrow | crease | crease | firstworldwar | firstworldwar | sinking | sinking | warship | warship | 1913 | 1913 | fascinating | fascinating | digitalimage | digitalimage | hms | hms | vast | vast | jutland | jutland | rivertyne | rivertyne | royalnavy | royalnavy | tyneandwear | tyneandwear | industrialheritage | industrialheritage | navyship | navyship | battlecruiser | battlecruiser | northeastengland | northeastengland | navalship | navalship | blackandwhitephotograph | blackandwhitephotograph | navalhistory | navalhistory | seatrials | seatrials | shipbuildingheritage | shipbuildingheritage | maritimeheritage | maritimeheritage | hmsqueenmary | hmsqueenmary | battleofjutland | battleofjutland | 31may1916 | 31may1916 | palmersshipbuildingironcompany | palmersshipbuildingironcompany | palmersshipbuildingandironcompany | palmersshipbuildingandironcompany | thebattleofjutland | thebattleofjutland | royalnavalvessel | royalnavalvessel | 20march1912 | 20march1912

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HMS Broke in dry dock after the Battle of Jutland HMS Broke in dry dock after the Battle of Jutland

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roof | roof | sky | sky | people | people | blur | blur | industry | industry | wheel | wheel | metal | metal | wall | wall | buildings | buildings | wonderful | wonderful | children | children | belt | belt | interesting | interesting | wire | wire | workers | workers | support | support | industrial | industrial | ship | ship | dress | dress | darkness | darkness | panel | panel | post | post | unitedkingdom | unitedkingdom | britain | britain | timber | timber | mark | mark | coat | coat | debris | debris | grain | grain | platform | platform | vessel | vessel | battle | battle | rope | rope | destroyer | destroyer | deck | deck | fabric | fabric | maritime | maritime | isleofwight | isleofwight | porthole | porthole | gathering | gathering | damage | damage | unusual | unusual | ww1 | ww1 | damaged | damaged | striking | striking | naval | naval | adults | adults | greatwar | greatwar | drydock | drydock | tyneside | tyneside | firstworldwar | firstworldwar | wreckage | wreckage | warship | warship | fascinating | fascinating | digitalimage | digitalimage | collision | collision | wartime | wartime | eastcowes | eastcowes | rivertyne | rivertyne | royalnavy | royalnavy | industrialheritage | industrialheritage | northeastengland | northeastengland | blackandwhitephotograph | blackandwhitephotograph | shipbuildingheritage | shipbuildingheritage | maritimeheritage | maritimeheritage | battleofjutland | battleofjutland | june1916 | june1916 | jsamuelwhite | jsamuelwhite | shiprepairing | shiprepairing | 1june1916 | 1june1916 | hmsbroke | hmsbroke | thebattleofjutland | thebattleofjutland | hmssparrowhawk | hmssparrowhawk | royalnavalvessel | royalnavalvessel | faulknorclassdestroyer | faulknorclassdestroyer

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Damage suffered by HMS Broke at the Battle of Jutland Damage suffered by HMS Broke at the Battle of Jutland

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sky | sky | abstract | abstract | blur | blur | men | men | industry | industry | bar | bar | landscape | landscape | interesting | interesting | workers | workers | support | support | industrial | industrial | ship | ship | view | view | panel | panel | timber | timber | mark | mark | debris | debris | grain | grain | working | working | navy | navy | platform | platform | surreal | surreal | ground | ground | vessel | vessel | battle | battle | rope | rope | tools | tools | destroyer | destroyer | deck | deck | pile | pile | bow | bow | isleofwight | isleofwight | porthole | porthole | damage | damage | land | land | ladder | ladder | unusual | unusual | mast | mast | ww1 | ww1 | damaged | damaged | greatwar | greatwar | plank | plank | drydock | drydock | spectator | spectator | tyneside | tyneside | firstworldwar | firstworldwar | warship | warship | repairs | repairs | fascinating | fascinating | digitalimage | digitalimage | collision | collision | worldwar1 | worldwar1 | wartime | wartime | eastcowes | eastcowes | rivertyne | rivertyne | royalnavy | royalnavy | industrialheritage | industrialheritage | northeastengland | northeastengland | blackandwhitephotograph | blackandwhitephotograph | navalhistory | navalhistory | navalvessel | navalvessel | shipbuildingheritage | shipbuildingheritage | maritimeheritage | maritimeheritage | battleofjutland | battleofjutland | extraudinary | extraudinary | thegreatwar19141918 | thegreatwar19141918 | june1916 | june1916 | jsamuelwhite | jsamuelwhite | shiprepairing | shiprepairing | 1june1916 | 1june1916 | hmsbroke | hmsbroke | thebattleofjutland | thebattleofjutland | hmssparrowhawk | hmssparrowhawk | bowdamage | bowdamage | faulknorclassdestroyer | faulknorclassdestroyer

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Main guns of USS Florida Main guns of USS Florida

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florida | florida | ussflorida | ussflorida | battleshipbb30 | battleshipbb30 | warships | warships | navalgunnery | navalgunnery | ships | ships | worldwari | worldwari | ship | ship | warship | warship | unitedstatesnavy | unitedstatesnavy | usnavy | usnavy | usn | usn | ussfloridabb30 | ussfloridabb30 | bb30 | bb30 | floridaclass | floridaclass | battleship | battleship | cagemast | cagemast | navalgun | navalgun | navalartillery | navalartillery | mainbattery | mainbattery | gunturret | gunturret | 12ingun | 12ingun | 12inchgun | 12inchgun

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2.625 Electrochemical Energy Conversion and Storage: Fundamentals, Materials, and Applications (MIT) 2.625 Electrochemical Energy Conversion and Storage: Fundamentals, Materials, and Applications (MIT)

Description

This course will introduce students to the principles, performance, and challenges of electrochemical and photoelectrochemical devices. This will be done in the context of global energy needs and challenges, and will include an overview of different energy technologies. This course will introduce students to the principles, performance, and challenges of electrochemical and photoelectrochemical devices. This will be done in the context of global energy needs and challenges, and will include an overview of different energy technologies.

Subjects

electrochemistry | electrochemistry | battery | battery | fuel cell | fuel cell | energy | energy | electrodes | electrodes | solid oxide fuel cell | solid oxide fuel cell | lithium ion battery | lithium ion battery | proton exchange membrane | proton exchange membrane | electrical double layer | electrical double layer | chemical equilibrium | chemical equilibrium | chemical potential | chemical potential | catalysis | catalysis | Butler-Volmer model | Butler-Volmer model | electrochemical impedance spectroscopy | electrochemical impedance spectroscopy | kinetics | kinetics | surface reactivity | surface reactivity

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Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htm

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HMS Sparrowhawk at sea HMS Sparrowhawk at sea

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sea | sea | chimney | chimney | sky | sky | cloud | cloud | industry | industry | daylight | daylight | interesting | interesting | wire | wire | construction | construction | industrial | industrial | ship | ship | unitedkingdom | unitedkingdom | britain | britain | mark | mark | label | label | flag | flag | smoke | smoke | letters | letters | pipe | pipe | grain | grain | rail | rail | vessel | vessel | rope | rope | pole | pole | destroyer | destroyer | deck | deck | crew | crew | maritime | maritime | transportation | transportation | cylinder | cylinder | archives | archives | unusual | unusual | identification | identification | ww1 | ww1 | launch | launch | float | float | striking | striking | naval | naval | greatwar | greatwar | tyneside | tyneside | firstworldwar | firstworldwar | sinking | sinking | warship | warship | fascinating | fascinating | digitalimage | digitalimage | collision | collision | rivertyne | rivertyne | shipbuilding | shipbuilding | royalnavy | royalnavy | tyneandwear | tyneandwear | industrialheritage | industrialheritage | swanhunter | swanhunter | blackandwhitephotograph | blackandwhitephotograph | navalhistory | navalhistory | shipbuildingheritage | shipbuildingheritage | maritimeheritage | maritimeheritage | battleofjutland | battleofjutland | c1913 | c1913 | swanhunterwighamrichardson | swanhunterwighamrichardson | wallsendyard | wallsendyard | 1june1916 | 1june1916 | hmsbroke | hmsbroke | thebattleofjutland | thebattleofjutland | hmssparrowhawk | hmssparrowhawk | 12october1912 | 12october1912 | royalnavalvessel | royalnavalvessel | acastaclassdestroyer | acastaclassdestroyer

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HMS Comus at the Wallsend shipyard HMS Comus at the Wallsend shipyard

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roof | roof | chimney | chimney | sky | sky | abstract | abstract | industry | industry | window | window | water | water | metal | metal | wall | wall | buildings | buildings | boat | boat | interesting | interesting | construction | construction | war | war | gun | gun | ship | ship | floor | floor | post | post | unitedkingdom | unitedkingdom | britain | britain | crane | crane | timber | timber | mark | mark | parts | parts | smoke | smoke | grain | grain | bank | bank | rail | rail | plate | plate | vessel | vessel | structure | structure | beam | beam | deck | deck | crew | crew | walkway | walkway | porthole | porthole | southside | southside | unusual | unusual | mast | mast | ww1 | ww1 | launch | launch | shipyard | shipyard | float | float | striking | striking | naval | naval | greatwar | greatwar | tyneside | tyneside | development | development | firstworldwar | firstworldwar | cruiser | cruiser | warship | warship | fascinating | fascinating | digitalimage | digitalimage | wartime | wartime | rivertyne | rivertyne | wallsend | wallsend | royalnavy | royalnavy | industrialheritage | industrialheritage | c1915 | c1915 | northeastengland | northeastengland | swanhunter | swanhunter | blackandwhitephotograph | blackandwhitephotograph | navalhistory | navalhistory | shipbuildingheritage | shipbuildingheritage | maritimeheritage | maritimeheritage | battleofjutland | battleofjutland | hmsshark | hmsshark | swanhunterwighamrichardson | swanhunterwighamrichardson | hmscomus | hmscomus | wallsendyard | wallsendyard | thebattleofjutland | thebattleofjutland | cclasslightcruiser | cclasslightcruiser | wallsendshipyard | wallsendshipyard | swanhunterwighamrichardsonshipyard | swanhunterwighamrichardsonshipyard | 16december1914 | 16december1914

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HMS Shark at sea HMS Shark at sea

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ocean | ocean | sea | sea | sky | sky | industry | industry | water | water | spectacular | spectacular | vent | vent | hit | hit | interesting | interesting | gun | gun | ship | ship | darkness | darkness | post | post | mark | mark | flag | flag | grain | grain | navy | navy | surreal | surreal | rail | rail | vessel | vessel | pole | pole | mount | mount | destroyer | destroyer | deck | deck | crew | crew | cylinder | cylinder | archives | archives | conflict | conflict | unusual | unusual | mast | mast | ww1 | ww1 | sunk | sunk | striking | striking | greatwar | greatwar | firstworldwar | firstworldwar | warship | warship | fascinating | fascinating | digitalimage | digitalimage | wartime | wartime | vast | vast | rivertyne | rivertyne | wallsend | wallsend | royalnavy | royalnavy | launched | launched | industrialheritage | industrialheritage | navyship | navyship | navalship | navalship | swanhunter | swanhunter | blackandwhitephotograph | blackandwhitephotograph | navalhistory | navalhistory | shipbuildingheritage | shipbuildingheritage | maritimeheritage | maritimeheritage | battleofjutland | battleofjutland | grandfleet | grandfleet | c1913 | c1913 | hmsshark | hmsshark | swanhunterwighamrichardson | swanhunterwighamrichardson | 31may1916 | 31may1916 | britainsnavy | britainsnavy | thebattleofjutland | thebattleofjutland | acastaclassdestroyer | acastaclassdestroyer | 30july1912 | 30july1912

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HMS Queen Mary leaving the River Tyne

Description

HMS Queen Mary leaving the River Tyne on sea trials, 1913 (TWAM ref. 696/5). She was a battlecruiser, launched by Palmers Shipbuilding and Iron Company, Jarrow on 20 March 1912. Tragically, she was sunk at the Battle of Jutland on 31 May 1916 with the loss of 1266 men. Details of all those who served on HMS Queen Mary at Jutland can be found here livesofthefirstworldwar.org/community/609. The Rivers Tyne and Wear were responsible for building many vessels, which served Britain during the First World War. This set remembers some of those warships that took part in the Battle of Jutland from 31 May to 1 June 1916. During the battle over 6,000 British sailors lost their lives and 14 Royal Naval vessels were sunk. The losses included the battlecruisers HMS Queen Mary and HMS Invincible, as well as the destroyers HMS Shark, HMS Sparrowhawk and HMS Turbulent, all built on Tyneside. Their memory lives on. (Copyright) We're happy for you to share these digital images within the spirit of The Commons. Please cite 'Tyne & Wear Archives & Museums' when reusing. Certain restrictions on high quality reproductions and commercial use of the original physical version apply though; if you're unsure please email archives@twmuseums.org.uk

Subjects

hmsqueenmary | battleofjutland | rivertyne | firstworldwar | ww1 | greatwar | royalnavy | ship | vessel | northeastengland | tyneside | battlecruiser | warship | palmersshipbuildingironcompany | maritimeheritage | industrialheritage | shipbuildingheritage | blackandwhitephotograph | digitalimage | thebattleofjutland | abstract | seatrials | navalship | navyship | navalhistory | 1913 | launch | jarrow | palmersshipbuildingandironcompany | 20march1912 | grain | mark | sea | ocean | water | fascinating | interesting | unusual | striking | flag | pole | crease | fabric | rail | deck | gun | crew | cabin | chimney | cylinder | rope | wire | sky | vast | mast | smoke | building | bank | boat | oar | paddle | blur | land | unitedkingdom | sinking | 31may1916 | jutland | tyneandwear | britain | battle | sailors | royalnavalvessel | hms | cloud | windy

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The battleship HMS 'Superb' passing North Shields

Description

HMS 'Superb' passing North Shields for trials, 25 May 1909 (TWAM ref. 1993.9567). Includes T.S. Wellesley in the background. She was a Bellerophon class dreadnought, launched at the Elswick Shipyard of Armstrong Whitworth on 7 November 1907. She served at Jutland. The Rivers Tyne and Wear were responsible for building many vessels, which served Britain during the First World War. This set remembers some of those warships that took part in the Battle of Jutland from 31 May to 1 June 1916. During the battle over 6,000 British sailors lost their lives and 14 Royal Naval vessels were sunk. The losses included the battlecruisers HMS Queen Mary and HMS Invincible, as well as the destroyers HMS Shark, HMS Sparrowhawk and HMS Turbulent, all built on Tyneside. Their memory lives on. (Copyright) We're happy for you to share these digital images within the spirit of The Commons. Please cite 'Tyne & Wear Archives & Museums' when reusing. Certain restrictions on high quality reproductions and commercial use of the original physical version apply though; if you're unsure please email archives@twmuseums.org.uk

Subjects

tswellesley | wellesleynauticalschool | naval | warship | dreadnought | hmssuperb | battleofjutland | rivertyne | firstworldwar | ww1 | greatwar | armstrongwhitworth | royalnavy | ship | vessel | northshields | northeastengland | tyneside | navalhistory | thebattleofjutland | maritimeheritage | industry | industrialheritage | shipbuildingheritage | battleship | passing | transportation | 25may1909 | trials | bellerophonclassdreadnought | launch | elswickshipyard | 7november1907 | vessels | riverstyneandwear | britain | northeastofengland | unitedkingdom | fascinating | interesting | impressive | mark | grain | blur | land | water | mast | deck | buildings | chimney | boat | wall | roof | sky | wallsendshipyards | worldwarone | jutland | wartime | battle | conflict | porthole | archives | blackandwhitephotograph | digitalimage | abstract | scene | record | generations

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View on board the Japanese battleship 'Yashima' View on board the Japanese battleship 'Yashima'

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people | people | abstract | abstract | blur | blur | industry | industry | japan | japan | bar | bar | stairs | stairs | buildings | buildings | interesting | interesting | fantastic | fantastic | construction | construction | ship | ship | unitedkingdom | unitedkingdom | crane | crane | platform | platform | bank | bank | rail | rail | windy | windy | americanflag | americanflag | vessel | vessel | rope | rope | pole | pole | deck | deck | crew | crew | bow | bow | gathering | gathering | archives | archives | land | land | guns | guns | unusual | unusual | mast | mast | battleship | battleship | hook | hook | launch | launch | naval | naval | tyneside | tyneside | jarrow | jarrow | cog | cog | development | development | impressive | impressive | floats | floats | warship | warship | vessels | vessels | newcastleupontyne | newcastleupontyne | fascinating | fascinating | digitalimage | digitalimage | factories | factories | rivertyne | rivertyne | shipbuilding | shipbuilding | moored | moored | manufacturing | manufacturing | japaneseflag | japaneseflag | industrialheritage | industrialheritage | yashima | yashima | landcsape | landcsape | elswick | elswick | northeastengland | northeastengland | sailingvessels | sailingvessels | blackandwhitephotograph | blackandwhitephotograph | japanesebattleship | japanesebattleship | navalhistory | navalhistory | scotswood | scotswood | shipbuildingheritage | shipbuildingheritage | armstrongwhitworth | armstrongwhitworth | maritimeheritage | maritimeheritage | imperialjapanesenavy | imperialjapanesenavy | lordarmstrong | lordarmstrong | vickersarmstrong | vickersarmstrong | c1897 | c1897 | williamgeorgearmstrong | williamgeorgearmstrong | workshopoftheworld | workshopoftheworld | scotswoodworks | scotswoodworks | vickersarmstrongcollection | vickersarmstrongcollection | elswickshipyard | elswickshipyard | 26february1896 | 26february1896

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HMS Broke in dry dock after the Battle of Jutland

Description

View of HMS Broke in dry dock on Tyneside, showing damage sustained at the Battle of Jutland, June 1916 (TWAM ref. DS.SWH/5/3/4/2/B602). HMS Broke was a Faulknor-class destroyer built by J. Samuel White, East Cowes, Isle of Wight. She was damaged during a collision with HMS Sparrowhawk on 1 June 1916. The Rivers Tyne and Wear were responsible for building many vessels, which served Britain during the First World War. This set remembers some of those warships that took part in the Battle of Jutland from 31 May to 1 June 1916. During the battle over 6,000 British sailors lost their lives and 14 Royal Naval vessels were sunk. The losses included the battlecruisers HMS Queen Mary and HMS Invincible, as well as the destroyers HMS Shark, HMS Sparrowhawk and HMS Turbulent, all built on Tyneside. Their memory lives on. (Copyright) We're happy for you to share these digital images within the spirit of The Commons. Please cite 'Tyne & Wear Archives & Museums' when reusing. Certain restrictions on high quality reproductions and commercial use of the original physical version apply though; if you're unsure please email archives@twmuseums.org.uk

Subjects

warship | destroyer | hmsbroke | battleofjutland | rivertyne | firstworldwar | ww1 | greatwar | royalnavy | ship | vessel | drydock | damage | tyneside | northeastengland | industry | industrial | shiprepairing | damaged | thebattleofjutland | shipbuildingheritage | maritimeheritage | industrialheritage | blackandwhitephotograph | maritime | unusual | interesting | fascinating | striking | digitalimage | june1916 | faulknorclassdestroyer | jsamuelwhite | eastcowes | collision | isleofwight | hmssparrowhawk | 1june1916 | britain | unitedkingdom | wartime | battle | royalnavalvessel | naval | metal | panel | wonderful | porthole | wreckage | deck | wheel | workers | buildings | sky | roof | wall | post | blur | grain | mark | platform | support | debris | darkness | timber | people | gathering | children | adults | fabric | rope | wire | belt | dress | coat

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Damage suffered by HMS Broke at the Battle of Jutland

Description

View of HMS Broke in dry dock on Tyneside, showing bow damage sustained at the Battle of Jutland, June 1916 (TWAM ref. DS.SWH/5/3/4/2/B600). HMS Broke was a Faulknor-class destroyer built by J. Samuel White, East Cowes, Isle of Wight. She was damaged during a collision with HMS Sparrowhawk on 1 June 1916. The Rivers Tyne and Wear were responsible for building many vessels, which served Britain during the First World War. This set remembers some of those warships that took part in the Battle of Jutland from 31 May to 1 June 1916. During the battle over 6,000 British sailors lost their lives and 14 Royal Naval vessels were sunk. The losses included the battlecruisers HMS Queen Mary and HMS Invincible, as well as the destroyers HMS Shark, HMS Sparrowhawk and HMS Turbulent, all built on Tyneside. Their memory lives on. (Copyright) We're happy for you to share these digital images within the spirit of The Commons. Please cite 'Tyne & Wear Archives & Museums' when reusing. Certain restrictions on high quality reproductions and commercial use of the original physical version apply though; if you're unsure please email archives@twmuseums.org.uk

Subjects

warship | destroyer | hmsbroke | battleofjutland | rivertyne | firstworldwar | ww1 | greatwar | royalnavy | ship | vessel | drydock | damage | tyneside | northeastengland | industry | industrial | shiprepairing | damaged | thebattleofjutland | shipbuildingheritage | maritimeheritage | industrialheritage | abstract | blackandwhitephotograph | digitalimage | fascinating | interesting | unusual | extraudinary | navy | thegreatwar19141918 | worldwar1 | june1916 | navalhistory | faulknorclassdestroyer | jsamuelwhite | eastcowes | isleofwight | collision | hmssparrowhawk | 1june1916 | wartime | battle | navalvessel | sky | workers | ground | rope | deck | mast | debris | pile | grain | mark | timber | platform | ladder | plank | tools | support | panel | porthole | bar | blur | spectator | working | men | landscape | view | land | repairs | bowdamage | bow | surreal

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17.950 Understanding Modern Military Operations (MIT) 17.950 Understanding Modern Military Operations (MIT)

Description

A proper understanding of modern military operations requires a prior understanding of both the material side of war, including especially weapon, sensor, communication, and information processing technologies, and the human or organizational side of war, including especially military doctrine, which is an institutionalized vision within military organizations that predicts how the material tools of war will be wielded on future battlefields. Military doctrine makes assumptions about the nature of future battlefields, and determines what the division of labor on those battlefields will be between different military tools. Doctrine also therefore determines the organizational hierarchy among the various branches of the military which wield those tools. Thus, one way to think of the relation A proper understanding of modern military operations requires a prior understanding of both the material side of war, including especially weapon, sensor, communication, and information processing technologies, and the human or organizational side of war, including especially military doctrine, which is an institutionalized vision within military organizations that predicts how the material tools of war will be wielded on future battlefields. Military doctrine makes assumptions about the nature of future battlefields, and determines what the division of labor on those battlefields will be between different military tools. Doctrine also therefore determines the organizational hierarchy among the various branches of the military which wield those tools. Thus, one way to think of the relation

Subjects

Political science | Political science | military | military | modern | modern | operations | operations | material | material | war | war | weapon | weapon | sensor | sensor | communication | communication | information processing | information processing | technologies | technologies | human | human | organizational | organizational | doctrine | doctrine | future | future | battlefields | battlefields | organizational hierarchy | organizational hierarchy | branches. | branches. | branches | branches

License

Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htm

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17.462 Innovation in Military Organizations (MIT) 17.462 Innovation in Military Organizations (MIT)

Description

Innovations have frequently determined the course of wars. This seminar has three purposes. One, it inquires into the causes of military innovation by examining a number of the most outstanding historical cases. Two, it views military innovations through the lens of organization theory to develop generalizations about the innovation process within militaries. Three, it uses the empirical study of military innovations as a way to examine the strength and credibility of hypotheses that organization theorists have generated about innovation in non-military organizations. Innovations have frequently determined the course of wars. This seminar has three purposes. One, it inquires into the causes of military innovation by examining a number of the most outstanding historical cases. Two, it views military innovations through the lens of organization theory to develop generalizations about the innovation process within militaries. Three, it uses the empirical study of military innovations as a way to examine the strength and credibility of hypotheses that organization theorists have generated about innovation in non-military organizations.

Subjects

Political science | Political science | security studies | security studies | Innovation | Innovation | military organizations | military organizations | war | war | history | history | cases | cases | organization theory | organization theory | empirical study | empirical study | land warfare | land warfare | battleships | battleships | airpower | airpower | submarine | submarine | missiles | missiles | armor; military affairs. | armor; military affairs. | armor | armor | military affairs | military affairs

License

Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htm

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3.014 Materials Laboratory (MIT) 3.014 Materials Laboratory (MIT)

Description

This course is a required sophomore subject in the Department of Materials Science and Engineering, designed to be taken in conjunction with the core lecture subject 3.012 Fundamentals of Materials Science and Engineering. The laboratory subject combines experiments illustrating the principles of quantum mechanics, thermodynamics and structure with intensive oral and written technical communication practice. Specific topics include: experimental exploration of the connections between energetics, bonding and structure of materials, and application of these principles in instruments for materials characterization; demonstration of the wave-like nature of electrons; hands-on experience with techniques to quantify energy (DSC), bonding (XPS, AES, FTIR, UV/Vis and force spectroscopy), and degre This course is a required sophomore subject in the Department of Materials Science and Engineering, designed to be taken in conjunction with the core lecture subject 3.012 Fundamentals of Materials Science and Engineering. The laboratory subject combines experiments illustrating the principles of quantum mechanics, thermodynamics and structure with intensive oral and written technical communication practice. Specific topics include: experimental exploration of the connections between energetics, bonding and structure of materials, and application of these principles in instruments for materials characterization; demonstration of the wave-like nature of electrons; hands-on experience with techniques to quantify energy (DSC), bonding (XPS, AES, FTIR, UV/Vis and force spectroscopy), and degre

Subjects

electron | electron | electronic properties | electronic properties | magnetism | magnetism | magentic properties | magentic properties | structure | structure | crystal | crystal | lattice | lattice | energy | energy | thermodynamics | thermodynamics | differential scanning calorimetry (DSC) | differential scanning calorimetry (DSC) | x-ray diffraction (XRD) | x-ray diffraction (XRD) | scanning probe microscopy (AFM | scanning probe microscopy (AFM | STM) | STM) | scanning electron microscopy (SEM) | scanning electron microscopy (SEM) | UV/Vis | UV/Vis | Raman spectroscopy | Raman spectroscopy | FTIR spectroscopy | FTIR spectroscopy | x-ray photoelectron spectroscopy (XPS) | x-ray photoelectron spectroscopy (XPS) | vibrating sample magnetometry (VSM) | vibrating sample magnetometry (VSM) | dynamic light scattering (DLS) | dynamic light scattering (DLS) | phonon | phonon | quantum | quantum | quantum mechanics | quantum mechanics | radiation | radiation | battery | battery | fuel cell | fuel cell | ferromagnetism | ferromagnetism | ferromagnetic | ferromagnetic | polymer | polymer | glass | glass | corrosion | corrosion

License

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17.950 Understanding Military Operations (MIT) 17.950 Understanding Military Operations (MIT)

Description

A proper understanding of modern military operations requires a prior understanding of both the material side of war, and the human or organizational side of war. This seminar will break apart selected past, current, and future sea, air, space, and land battlefields into their constituent parts and look at the interaction in each of those warfare areas between existing military doctrine and weapons, sensors, communications, and information processing technologies. It will specifically seek to explore how technological development, whether innovative or stagnant, is influenced in each warfare area by military doctrine. A proper understanding of modern military operations requires a prior understanding of both the material side of war, and the human or organizational side of war. This seminar will break apart selected past, current, and future sea, air, space, and land battlefields into their constituent parts and look at the interaction in each of those warfare areas between existing military doctrine and weapons, sensors, communications, and information processing technologies. It will specifically seek to explore how technological development, whether innovative or stagnant, is influenced in each warfare area by military doctrine.

Subjects

Political science | Political science | military | military | modern | modern | operations | operations | material | material | war | war | weapon | weapon | sensor | sensor | communication | communication | information processing | information processing | technologies | technologies | human | human | organizational | organizational | doctrine | doctrine | future | future | battlefields | battlefields | organizational hierarchy | organizational hierarchy | branches | branches

License

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17.462 Innovation in Military Organizations (MIT) 17.462 Innovation in Military Organizations (MIT)

Description

This seminar has three purposes. One, it inquires into the causes of military innovation by examining a number of the most outstanding historical cases. Two, it views military innovations through the lens of organization theory to develop generalizations about the innovation process within militaries. Three, it uses the empirical study of military innovations as a way to examine the strength and credibility of hypotheses that organization theorists have generated about innovation in non-military organizations. This seminar has three purposes. One, it inquires into the causes of military innovation by examining a number of the most outstanding historical cases. Two, it views military innovations through the lens of organization theory to develop generalizations about the innovation process within militaries. Three, it uses the empirical study of military innovations as a way to examine the strength and credibility of hypotheses that organization theorists have generated about innovation in non-military organizations.

Subjects

URIECA | URIECA | laboratory | laboratory | kinase | kinase | cancer cells | cancer cells | laboratory techniques | laboratory techniques | DNA | DNA | cultures | cultures | UV-Vis | UV-Vis | agarose gel | agarose gel | Abl-gleevec | Abl-gleevec | affinity tags | affinity tags | lyse | lyse | digest | digest | mutants | mutants | resistance | resistance | gel electrophoresis | gel electrophoresis | recombinant | recombinant | nickel affinity | nickel affinity | inhibitors | inhibitors | biochemistry | biochemistry | kinetics | kinetics | enzyme | enzyme | inhibition | inhibition | purification | purification | expression | expression | Political science | Political science | security studies | security studies | innovation | innovation | military organizations | military organizations | war | war | history | history | organization theory | organization theory | empirical study | empirical study | land warfare | land warfare | battleships | battleships | airpower | airpower | submarines | submarines | cruise | cruise | ballistic | ballistic | missiles | missiles | armor | armor | military affairs | military affairs | strategic | strategic | tactical | tactical | counterinsurgency | counterinsurgency | Vietnam | Vietnam | Revolution in Military Affairs | Revolution in Military Affairs | RMA | RMA

License

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President Wilson in France President Wilson in France

Description

Subjects

france | france | destruction | destruction | president | president | battle | battle | fields | fields | worldwarone | worldwarone | wilson | wilson | soissons | soissons

License

No known copyright restrictions

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3.014 Materials Laboratory (MIT) 3.014 Materials Laboratory (MIT)

Description

This course is a required sophomore subject in the Department of Materials Science and Engineering, designed to be taken in conjunction with the core lecture subject 3.012 Fundamentals of Materials Science and Engineering. The laboratory subject combines experiments illustrating the principles of quantum mechanics, thermodynamics and structure with intensive oral and written technical communication practice. Specific topics include: experimental exploration of the connections between energetics, bonding and structure of materials, and application of these principles in instruments for materials characterization; demonstration of the wave-like nature of electrons; hands-on experience with techniques to quantify energy (DSC), bonding (XPS, AES, FTIR, UV/Vis and force spectroscopy), and degre This course is a required sophomore subject in the Department of Materials Science and Engineering, designed to be taken in conjunction with the core lecture subject 3.012 Fundamentals of Materials Science and Engineering. The laboratory subject combines experiments illustrating the principles of quantum mechanics, thermodynamics and structure with intensive oral and written technical communication practice. Specific topics include: experimental exploration of the connections between energetics, bonding and structure of materials, and application of these principles in instruments for materials characterization; demonstration of the wave-like nature of electrons; hands-on experience with techniques to quantify energy (DSC), bonding (XPS, AES, FTIR, UV/Vis and force spectroscopy), and degre

Subjects

electron | electron | electronic properties | electronic properties | magnetism | magnetism | magentic properties | magentic properties | structure | structure | crystal | crystal | lattice | lattice | energy | energy | thermodynamics | thermodynamics | differential scanning calorimetry (DSC) | differential scanning calorimetry (DSC) | x-ray diffraction (XRD) | x-ray diffraction (XRD) | scanning probe microscopy (AFM | scanning probe microscopy (AFM | STM) | STM) | scanning electron microscopy (SEM) | scanning electron microscopy (SEM) | UV/Vis | UV/Vis | Raman spectroscopy | Raman spectroscopy | FTIR spectroscopy | FTIR spectroscopy | x-ray photoelectron spectroscopy (XPS) | x-ray photoelectron spectroscopy (XPS) | vibrating sample magnetometry (VSM) | vibrating sample magnetometry (VSM) | dynamic light scattering (DLS) | dynamic light scattering (DLS) | phonon | phonon | quantum | quantum | quantum mechanics | quantum mechanics | radiation | radiation | battery | battery | fuel cell | fuel cell | ferromagnetism | ferromagnetism | ferromagnetic | ferromagnetic | polymer | polymer | glass | glass | corrosion | corrosion

License

Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htm

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3.53 Electrochemical Processing of Materials (MIT) 3.53 Electrochemical Processing of Materials (MIT)

Description

This course covers a variety of topics concerning superconducting magnets, including thermodynamic and transport properties of aqueous and nonaqueous electrolytes, the electrode/electrolyte interface, and the kinetics of electrode processes. It also covers electrochemical characterization with regards to d.c. techniques (controlled potential, controlled current) and a.c. techniques (voltametry and impedance spectroscopy). Applications of the following will also be discussed: electrowinning, electrorefining, electroplating, and electrosynthesis, as well as electrochemical power sources (batteries and fuel cells). This course covers a variety of topics concerning superconducting magnets, including thermodynamic and transport properties of aqueous and nonaqueous electrolytes, the electrode/electrolyte interface, and the kinetics of electrode processes. It also covers electrochemical characterization with regards to d.c. techniques (controlled potential, controlled current) and a.c. techniques (voltametry and impedance spectroscopy). Applications of the following will also be discussed: electrowinning, electrorefining, electroplating, and electrosynthesis, as well as electrochemical power sources (batteries and fuel cells).

Subjects

Thermodynamic and transport properties of aqueous and nonaqueous electrolytes | Thermodynamic and transport properties of aqueous and nonaqueous electrolytes | electrode/electrolyte interface | electrode/electrolyte interface | Kinetics of electrode processes | Kinetics of electrode processes | Electrochemical characterization | Electrochemical characterization | d.c. techniques (controlled potential | controlled current) | d.c. techniques (controlled potential | controlled current) | a.c. techniques (voltametry and impedance spectroscopy) | a.c. techniques (voltametry and impedance spectroscopy) | electrowinning | electrowinning | electrorefining | electrorefining | electroplating | electroplating | electrosynthesis | electrosynthesis | electrochemical power sources (batteries and fuel cells) | electrochemical power sources (batteries and fuel cells)

License

Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htm

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2.60 Fundamentals of Advanced Energy Conversion (MIT) 2.60 Fundamentals of Advanced Energy Conversion (MIT)

Description

This course covers fundamentals of thermodynamics, chemistry, flow and transport processes as applied to energy systems. Topics include analysis of energy conversion in thermomechanical, thermochemical, electrochemical, and photoelectric processes in existing and future power and transportation systems, with emphasis on efficiency, environmental impact and performance. Systems utilizing fossil fuels, hydrogen, nuclear and renewable resources, over a range of sizes and scales are discussed. Applications include fuel reforming, hydrogen and synthetic fuel production, fuel cells and batteries, combustion, hybrids, catalysis, supercritical and combined cycles, photovoltaics, etc. The course also deals with different forms of energy storage and transmission, and optimal source utilization This course covers fundamentals of thermodynamics, chemistry, flow and transport processes as applied to energy systems. Topics include analysis of energy conversion in thermomechanical, thermochemical, electrochemical, and photoelectric processes in existing and future power and transportation systems, with emphasis on efficiency, environmental impact and performance. Systems utilizing fossil fuels, hydrogen, nuclear and renewable resources, over a range of sizes and scales are discussed. Applications include fuel reforming, hydrogen and synthetic fuel production, fuel cells and batteries, combustion, hybrids, catalysis, supercritical and combined cycles, photovoltaics, etc. The course also deals with different forms of energy storage and transmission, and optimal source utilization

Subjects

Thermodynamics | Thermodynamics | chemistry | chemistry | flow | flow | transport processes | transport processes | energy systems | energy systems | energy conversion in thermomechanical | thermochemical | electrochemical | energy conversion in thermomechanical | thermochemical | electrochemical | and photoelectric processes | and photoelectric processes | power and transportation systems | power and transportation systems | efficiency | efficiency | environmental impact | environmental impact | performance | performance | fossil fuels | fossil fuels | hydrogen resources | hydrogen resources | nuclear resources | nuclear resources | renewable resources | renewable resources | fuel reforming | fuel reforming | hydrogen and synthetic fuel production | hydrogen and synthetic fuel production | fuel cells and batteries | fuel cells and batteries | combustion | combustion | hybrids | hybrids | catalysis | catalysis | supercritical and combined cycles | supercritical and combined cycles | photovoltaics | photovoltaics | energy storage and transmission | energy storage and transmission | Optimal source utilization | Optimal source utilization | fuel-life cycle analysis. | fuel-life cycle analysis. | thermochemical | electrochemical | and photoelectric processes | thermochemical | electrochemical | and photoelectric processes | 2.62 | 2.62 | 10.392 | 10.392 | 22.40 | 22.40

License

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3.22 Mechanical Behavior of Materials (MIT) 3.22 Mechanical Behavior of Materials (MIT)

Description

Here we will learn about the mechanical behavior of structures and materials, from the continuum description of properties to the atomistic and molecular mechanisms that confer those properties to all materials. We will cover elastic and plastic deformation, creep, fracture and fatigue of materials including crystalline and amorphous metals, semiconductors, ceramics, and (bio)polymers, and will focus on the design and processing of materials from the atomic to the macroscale to achieve desired mechanical behavior. We will cover special topics in mechanical behavior for material systems of your choice, with reference to current research and publications. Here we will learn about the mechanical behavior of structures and materials, from the continuum description of properties to the atomistic and molecular mechanisms that confer those properties to all materials. We will cover elastic and plastic deformation, creep, fracture and fatigue of materials including crystalline and amorphous metals, semiconductors, ceramics, and (bio)polymers, and will focus on the design and processing of materials from the atomic to the macroscale to achieve desired mechanical behavior. We will cover special topics in mechanical behavior for material systems of your choice, with reference to current research and publications.

Subjects

Phenomenology | Phenomenology | mechanical behavior | mechanical behavior | material structure | material structure | deformation | deformation | failure | failure | elasticity | elasticity | viscoelasticity | viscoelasticity | plasticity | plasticity | creep | creep | fracture | fracture | fatigue | fatigue | metals | metals | semiconductors | semiconductors | ceramics | ceramics | polymers | polymers | microstructure | microstructure | composition | composition | semiconductor diodes | semiconductor diodes | thin films | thin films | carbon nanotubes | carbon nanotubes | battery materials | battery materials | superelastic alloys | superelastic alloys | defect nucleation | defect nucleation | student projects | student projects | viral capsides | viral capsides

License

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6.370 Robocraft Programming Competition (MIT) 6.370 Robocraft Programming Competition (MIT)

Description

The 6.370 Robocraft programming competition is a unique challenge that combines battle strategy and software engineering. In short, the objective is to write the best player program for the computer game Robocraft. The 6.370 Robocraft programming competition is a unique challenge that combines battle strategy and software engineering. In short, the objective is to write the best player program for the computer game Robocraft.

Subjects

Robocraft programming competition | Robocraft programming competition | battle strategy | battle strategy | software engineering | software engineering | best player program | best player program | best program | best program | computer game Robocraft | computer game Robocraft

License

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10.626 Electrochemical Energy Systems (MIT) 10.626 Electrochemical Energy Systems (MIT)

Description

10.626 introduces principles and mathematical models of electrochemical energy conversion and storage. Students study equivalent circuits, thermodynamics, reaction kinetics, transport phenomena, electrostatics, porous media, and phase transformations. In addition, this course includes applications to batteries, fuel cells, supercapacitors, and electrokinetics. 10.626 introduces principles and mathematical models of electrochemical energy conversion and storage. Students study equivalent circuits, thermodynamics, reaction kinetics, transport phenomena, electrostatics, porous media, and phase transformations. In addition, this course includes applications to batteries, fuel cells, supercapacitors, and electrokinetics.

Subjects

energy | energy | electrochemical energy conversion | electrochemical energy conversion | electrochemical energy storage | electrochemical energy storage | transport phenomena | transport phenomena | diffuse charge | diffuse charge | Faradaic reactions | Faradaic reactions | statistical thermodynamics | statistical thermodynamics | phase transformations | phase transformations | rechargeable batteries | rechargeable batteries | fuel cells | fuel cells | supercapacitors | supercapacitors | solar cells | solar cells | desalination | desalination | electrokinetic energy conversion | electrokinetic energy conversion

License

Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htm

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