19 |
</li></ul> |
</li></ul> |
20 |
|
|
21 |
<ul><li> |
<ul><li> |
22 |
|
P. Duarte, P. Assmy, H. Hop, G. Spreen, S. Gerland, and S. Hudson, |
23 |
|
2015: <a href="http://ecco2.org/manuscripts/2015/Duarte2015.pdf"> The |
24 |
|
importance of vertical resolution in sea ice algae production models.</a> |
25 |
|
J. Mar. Syst., 145, 69-90. |
26 |
|
</li></ul> |
27 |
|
|
28 |
|
<ul><li> |
29 |
M.M. Flexas, M. Schodlok, L. Padman, D. Menemenlis, and A. Orsi, 2015: |
M.M. Flexas, M. Schodlok, L. Padman, D. Menemenlis, and A. Orsi, 2015: |
30 |
<a href="http://ecco2.org/manuscripts/2015/Flexas2015.pdf"> |
<a href="http://ecco2.org/manuscripts/2015/Flexas2015.pdf"> |
31 |
Role of tides on the formation of the Antarctic Slope Front at the |
Role of tides on the formation of the Antarctic Slope Front at the |
74 |
|
|
75 |
<ul><li> |
<ul><li> |
76 |
C. Piecuch, I. Fukumori, R. Ponte, and O. Wang, 2015: Vertical |
C. Piecuch, I. Fukumori, R. Ponte, and O. Wang, 2015: Vertical |
77 |
structure of ocean pressure fluctuations with application |
structure of ocean pressure fluctuations with application to |
78 |
to satellite-gravimetric observations. J. Atmos. Oce. Tech., in revision. |
satellite-gravimetric observations. J. Atmos. Oce. Tech., in press. |
79 |
</li></ul> |
</li></ul> |
80 |
|
|
81 |
<ul><li> |
<ul><li> |
87 |
<ul><li> |
<ul><li> |
88 |
N. Vinogradova, R. Ponte, K. Quinn, M. Tamisiea, J. Campin, |
N. Vinogradova, R. Ponte, K. Quinn, M. Tamisiea, J. Campin, |
89 |
and J. Davis, 2015: Dynamic adjustment of the ocean circulation to |
and J. Davis, 2015: Dynamic adjustment of the ocean circulation to |
90 |
self-attraction and loading effects, J. Phys. Oceanogr., in revision. |
self-attraction and loading effects, J. Phys. Oceanogr., in press. |
91 |
</li></ul> |
</li></ul> |
92 |
|
|
93 |
<ul><li> |
<ul><li> |