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1by Bell, David B., Jung, Simon J. A., Kroon, Dick, Hodell, David A., Lourens, Lucas J., Raymo, Maureen E.“...The early Pliocene shoaling of the Central American Seaway (CAS), ~4.7–4.2 million years ago (mega...”
Published in Scientific Reports (2015)
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2by Auderset, Alexandra, Martinez-Garcia, Alfredo, Tiedemann, Ralf, Hasenfratz, Adam, Eglinton, Tim I., Schiebel, Ralf, Sigman, Daniel M., Haug, Gerald H.“...The shoaling of the Central American Seaway (CAS) around 4.6 Ma (million years ago) is thought...”
Published 2019
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3by Bell, David B., Jung, Simon J A, Kroon, Dick, Hodell, David A., Lourens, Lucas J., Raymo, Maureen E.“...The early Pliocene shoaling of the Central American Seaway (CAS), ~4.7–4.2 million years ago (mega...”
Published 2015
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4by Auderset, Alexandra, Martínez-García, Alfredo, Tiedemann, Ralf, Hasenfratz, Adam P., Eglinton, Timothy I., Schiebel, Ralf, Sigman, Daniel M., Haug, Gerald H.“...The shoaling of the Central American Seaway (CAS) around 4.6 Ma (million years ago) is thought...”
Published in Earth and Planetary Science Letters (2019)
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5by Auderset, Alexandra, Martinez-Garcia, Alfredo, Tiedemann, Ralf, Hasenfratz, Adam, Eglinton, Tim I., Schiebel, Ralf, Sigman, Daniel M., Haug, Gerald H.“...The shoaling of the Central American Seaway (CAS) around 4.6 Ma (million years ago) is thought...”
Published in Earth and Planetary Science Letters (2019)
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6by Auderset, A., Martinez-Garcia, A., Tiedemann, R., Hasenfratz, A., Eglinton, T., Schiebel, R., Sigman, D., Haug, G.“...The shoaling of the Central American Seaway (CAS) around 4.6 Ma (million years ago) is thought...”
Published in Earth and Planetary Science Letters (2019)
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7by Burke, Andrea, Stewart, Andrew L., Adkins, Jess F., Ferrari, Raffaele, Jansen, Malte F., Thompson, Andrew F.“... circulation. This shoaled boundary lay above major topographic features associated with strong diapycnal...”
Published in Paleoceanography
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8by Burke, Andrea, Stewart, Andrew L., Adkins, Jess F., Ferrari, Raffaele, Jansen, Malte F., Thompson, Andrew F.“... circulation. This shoaled boundary lay above major topographic features associated with strong diapycnal...”
Published in Paleoceanography (2015)
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9by Burke, Andrea, Stewart, Andrew L., Adkins, Jess F., Ferrari, Raffaele, Jansen, Malte F., Thompson, Andrew F.“... circulation. This shoaled boundary lay above major topographic features associated with strong diapycnal...”
Published in Paleoceanography (2015)
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10by Burke, Andrea, Stewart, Andrew L., Adkins, Jess F., Ferrari, Raffaele, Jansen, Malte F., Thompson, Andrew F.“... circulation. This shoaled boundary lay above major topographic features associated with strong diapycnal...”
Published in Paleoceanography (2015)
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11by Burke, Andrea, Stewart, Andrew L., Adkins, Jess F., Ferrari, Raffaele, Jansen, Malte F., Thompson, Andrew F.“... circulation. This shoaled boundary lay above major topographic features associated with strong diapycnal...”
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12by Burke, Andrea, Stewart, Andrew L., Adkins, Jess F., Ferrari, Raffaele, Jansen, Mate F., Thompson, Andrew F.“... circulation (MOC). This shoaled boundary lay above major topographic features associated with strong diapycnal...”
Published in Paleoceanography (2015)
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13by Burke, Andrea, Stewart, Andrew L., Adkins, Jess F., Ferrari, Raffaele, Jansen, Mate F., Thompson, Andrew F.“...). This shoaled boundary lay above major topographic features associated with strong diapycnal mixing, isolating...”
Published in Paleoceanography (2016)
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14by Burke, Andrea, Stewart, Andrew L., Adkins, Jess F., Ferrari, Raffaele, Jansen, Mate F., Thompson, Andrew F.“... circulation (MOC). This shoaled boundary lay above major topographic features associated with strong diapycnal...”
Published in Paleoceanography (2015)
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15“... (Bermuda Rise, data of Poli et al. (2000)) shows that the DWBC shoals during glacial times in relation to a...”
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16“... the low greenhouse gas (GHG) concentrations cause a decrease in overturning strength and a shoaling...”
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17“... the low greenhouse gas (GHG) concentrations cause a decrease in overturning strength and a shoaling...”
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18“... the low greenhouse gas (GHG) concentrations cause a decrease in overturning strength and a shoaling...”
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19“... the low greenhouse gas (GHG) concentrations cause a decrease in overturning strength and a shoaling...”
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20“... the low greenhouse gas (GHG) concentrations cause a decrease in overturning strength and a shoaling...”
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