Mary Rose wreck, Portsmouth, Hampshire, England, UKi
Regional Level Types | |
---|---|
Mary Rose wreck | Wreck site |
Portsmouth | Unitary Authority |
Hampshire | County |
England | Constituent Country |
UK | Country |
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Latitude & Longitude (WGS84):
50° 47' 59'' North , 1° 6' 24'' West
Latitude & Longitude (decimal):
Locality type:
Köppen climate type:
Nearest Settlements:
Place | Population | Distance |
---|---|---|
Portsmouth | 194,150 (2018) | 1.1km |
Gosport | 70,793 (2011) | 1.7km |
Southsea | 18,514 (2012) | 1.7km |
Cosham | 10,226 (2012) | 6.0km |
Lee-on-the-Solent | 7,224 (2011) | 6.7km |
Nearest Clubs:
Local clubs are the best way to get access to collecting localities
Local clubs are the best way to get access to collecting localities
Club | Location | Distance |
---|---|---|
Southampton Mineral & Fossil Society | Southampton, Hampshire | 20km |
West Sussex Geology | Chichester, West Sussex | 35km |
The Mary Rose (launched 1511) is a carrack-type warship of the English Tudor navy of King Henry VIII
Select Mineral List Type
Standard Detailed Gallery Strunz Chemical ElementsDetailed Mineral List:
ⓘ Akaganeite Formula: (Fe3+,Ni2+)8(OH,O)16Cl1.25 · nH2O Description: Produced during conservation Reference: Simon, H., Cibin, G., Robbins, P., Day, S., Tang, C., Freestone, I., & Schofield, E. (2018). A Synchrotron‐Based Study of the Mary Rose Iron Cannonballs. Angewandte Chemie International Edition, 57(25), 7390-7395. |
ⓘ Aragonite Formula: CaCO3 Reference: Simon, H., Cibin, G., Robbins, P., Day, S., Tang, C., Freestone, I., & Schofield, E. (2018). A Synchrotron‐Based Study of the Mary Rose Iron Cannonballs. Angewandte Chemie International Edition, 57(25), 7390-7395. |
ⓘ Calcite Formula: CaCO3 Reference: Simon, H., Cibin, G., Robbins, P., Day, S., Tang, C., Freestone, I., & Schofield, E. (2018). A Synchrotron‐Based Study of the Mary Rose Iron Cannonballs. Angewandte Chemie International Edition, 57(25), 7390-7395. |
ⓘ Cohenite Formula: Fe3C Reference: Simon, H., Cibin, G., Robbins, P., Day, S., Tang, C., Freestone, I., & Schofield, E. (2018). A Synchrotron‐Based Study of the Mary Rose Iron Cannonballs. Angewandte Chemie International Edition, 57(25), 7390-7395. |
ⓘ Goethite Formula: α-Fe3+O(OH) Reference: Simon, H., Cibin, G., Robbins, P., Day, S., Tang, C., Freestone, I., & Schofield, E. (2018). A Synchrotron‐Based Study of the Mary Rose Iron Cannonballs. Angewandte Chemie International Edition, 57(25), 7390-7395. |
ⓘ Graphite Formula: C Reference: Simon, H., Cibin, G., Robbins, P., Day, S., Tang, C., Freestone, I., & Schofield, E. (2018). A Synchrotron‐Based Study of the Mary Rose Iron Cannonballs. Angewandte Chemie International Edition, 57(25), 7390-7395. |
ⓘ Hibbingite Formula: Fe2+2(OH)3Cl Description: Produced during conservation Reference: Simon, H., Cibin, G., Robbins, P., Day, S., Tang, C., Freestone, I., & Schofield, E. (2018). A Synchrotron‐Based Study of the Mary Rose Iron Cannonballs. Angewandte Chemie International Edition, 57(25), 7390-7395. |
ⓘ Iron Formula: Fe Description: Cannonballs and shot Reference: Simon, H., Cibin, G., Robbins, P., Day, S., Tang, C., Freestone, I., & Schofield, E. (2018). A Synchrotron‐Based Study of the Mary Rose Iron Cannonballs. Angewandte Chemie International Edition, 57(25), 7390-7395. |
ⓘ Lepidocrocite Formula: γ-Fe3+O(OH) Reference: Simon, H., Cibin, G., Robbins, P., Day, S., Tang, C., Freestone, I., & Schofield, E. (2018). A Synchrotron‐Based Study of the Mary Rose Iron Cannonballs. Angewandte Chemie International Edition, 57(25), 7390-7395. |
ⓘ Magnetite Formula: Fe2+Fe3+2O4 Reference: Simon, H., Cibin, G., Robbins, P., Day, S., Tang, C., Freestone, I., & Schofield, E. (2018). A Synchrotron‐Based Study of the Mary Rose Iron Cannonballs. Angewandte Chemie International Edition, 57(25), 7390-7395. |
ⓘ Quartz Formula: SiO2 Reference: Simon, H., Cibin, G., Robbins, P., Day, S., Tang, C., Freestone, I., & Schofield, E. (2018). A Synchrotron‐Based Study of the Mary Rose Iron Cannonballs. Angewandte Chemie International Edition, 57(25), 7390-7395. |
Gallery:
List of minerals arranged by Strunz 10th Edition classification
Group 1 - Elements | |||
---|---|---|---|
ⓘ | Cohenite | 1.BA.05 | Fe3C |
ⓘ | Graphite | 1.CB.05a | C |
ⓘ | Iron | 1.AE.05 | Fe |
Group 3 - Halides | |||
ⓘ | Hibbingite | 3.DA.10a | Fe2+2(OH)3Cl |
Group 4 - Oxides and Hydroxides | |||
ⓘ | Akaganeite | 4.DK.05 | (Fe3+,Ni2+)8(OH,O)16Cl1.25 · nH2O |
ⓘ | Goethite | 4.00. | α-Fe3+O(OH) |
ⓘ | Lepidocrocite | 4.FE.15 | γ-Fe3+O(OH) |
ⓘ | Magnetite | 4.BB.05 | Fe2+Fe3+2O4 |
ⓘ | Quartz | 4.DA.05 | SiO2 |
Group 5 - Nitrates and Carbonates | |||
ⓘ | Aragonite | 5.AB.15 | CaCO3 |
ⓘ | Calcite | 5.AB.05 | CaCO3 |
List of minerals for each chemical element
H | Hydrogen | |
---|---|---|
H | ⓘ Akaganeite | (Fe3+,Ni2+)8(OH,O)16Cl1.25 · nH2O |
H | ⓘ Goethite | α-Fe3+O(OH) |
H | ⓘ Hibbingite | Fe22+(OH)3Cl |
H | ⓘ Lepidocrocite | γ-Fe3+O(OH) |
C | Carbon | |
C | ⓘ Aragonite | CaCO3 |
C | ⓘ Calcite | CaCO3 |
C | ⓘ Cohenite | Fe3C |
C | ⓘ Graphite | C |
O | Oxygen | |
O | ⓘ Akaganeite | (Fe3+,Ni2+)8(OH,O)16Cl1.25 · nH2O |
O | ⓘ Aragonite | CaCO3 |
O | ⓘ Calcite | CaCO3 |
O | ⓘ Goethite | α-Fe3+O(OH) |
O | ⓘ Hibbingite | Fe22+(OH)3Cl |
O | ⓘ Lepidocrocite | γ-Fe3+O(OH) |
O | ⓘ Magnetite | Fe2+Fe23+O4 |
O | ⓘ Quartz | SiO2 |
Si | Silicon | |
Si | ⓘ Quartz | SiO2 |
Cl | Chlorine | |
Cl | ⓘ Akaganeite | (Fe3+,Ni2+)8(OH,O)16Cl1.25 · nH2O |
Cl | ⓘ Hibbingite | Fe22+(OH)3Cl |
Ca | Calcium | |
Ca | ⓘ Aragonite | CaCO3 |
Ca | ⓘ Calcite | CaCO3 |
Fe | Iron | |
Fe | ⓘ Iron | Fe |
Fe | ⓘ Akaganeite | (Fe3+,Ni2+)8(OH,O)16Cl1.25 · nH2O |
Fe | ⓘ Cohenite | Fe3C |
Fe | ⓘ Goethite | α-Fe3+O(OH) |
Fe | ⓘ Hibbingite | Fe22+(OH)3Cl |
Fe | ⓘ Lepidocrocite | γ-Fe3+O(OH) |
Fe | ⓘ Magnetite | Fe2+Fe23+O4 |
Ni | Nickel | |
Ni | ⓘ Akaganeite | (Fe3+,Ni2+)8(OH,O)16Cl1.25 · nH2O |
References
Sort by
Year (asc) Year (desc) Author (A-Z) Author (Z-A)Simon, H., Cibin, G., Robbins, P., Day, S., Tang, C., Freestone, I., & Schofield, E. (2018). A Synchrotron‐Based Study of the Mary Rose Iron Cannonballs. Angewandte Chemie International Edition, 57(25), 7390-7395.
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