Commit bc973073563bc2e70ece2f272298aeb9fe6385e9
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4e56d480
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corrections on PSP SPANAi and ISOIS
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13 changed files
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165 additions
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16 deletions
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NumericalData/CDPP-AMDA/PSP/SPI/psp-spi-Hmom.xml
@@ -91,21 +91,95 @@ | @@ -91,21 +91,95 @@ | ||
91 | </Parameter> | 91 | </Parameter> |
92 | <Parameter> | 92 | <Parameter> |
93 | <Name>t_temp_rtn</Name> | 93 | <Name>t_temp_rtn</Name> |
94 | - <ParameterKey>psp_spc_Hwt</ParameterKey> | 94 | + <ParameterKey>psp_spi_Hwt</ParameterKey> |
95 | <Description>Temperature Tensor in RTN frame</Description> | 95 | <Description>Temperature Tensor in RTN frame</Description> |
96 | <Units>eV</Units> | 96 | <Units>eV</Units> |
97 | + <CoordinateSystem> | ||
98 | + <CoordinateRepresentation>Cartesian</CoordinateRepresentation> | ||
99 | + <CoordinateSystemName>RTN</CoordinateSystemName> | ||
100 | + </CoordinateSystem> | ||
97 | <RenderingHints> | 101 | <RenderingHints> |
98 | <DisplayType>TimeSeries</DisplayType> | 102 | <DisplayType>TimeSeries</DisplayType> |
99 | </RenderingHints> | 103 | </RenderingHints> |
104 | + <Structure> | ||
105 | + <Size>6</Size> | ||
106 | + <Element> | ||
107 | + <Name>Txx</Name> | ||
108 | + <Index>1</Index> | ||
109 | + <ParameterKey>psp_spi_Hwt(0)</ParameterKey> | ||
110 | + </Element> | ||
111 | + <Element> | ||
112 | + <Name>Tyy</Name> | ||
113 | + <Index>2</Index> | ||
114 | + <ParameterKey>psp_spi_Hwt(1)</ParameterKey> | ||
115 | + </Element> | ||
116 | + <Element> | ||
117 | + <Name>Tzz</Name> | ||
118 | + <Index>3</Index> | ||
119 | + <ParameterKey>psp_spi_Hwt(2)</ParameterKey> | ||
120 | + </Element> | ||
121 | + <Element> | ||
122 | + <Name>Txy</Name> | ||
123 | + <Index>4</Index> | ||
124 | + <ParameterKey>psp_spi_Hwt(3)</ParameterKey> | ||
125 | + </Element> | ||
126 | + <Element> | ||
127 | + <Name>Txz</Name> | ||
128 | + <Index>5</Index> | ||
129 | + <ParameterKey>psp_spi_Hwt(4)</ParameterKey> | ||
130 | + </Element> | ||
131 | + <Element> | ||
132 | + <Name>Tyz</Name> | ||
133 | + <Index>6</Index> | ||
134 | + <ParameterKey>psp_spi_Hwt(5)</ParameterKey> | ||
135 | + </Element> | ||
136 | + </Structure> | ||
100 | </Parameter> | 137 | </Parameter> |
101 | <Parameter> | 138 | <Parameter> |
102 | <Name>t_temp_sc</Name> | 139 | <Name>t_temp_sc</Name> |
103 | - <ParameterKey>psp_spc_Hwt_sc</ParameterKey> | 140 | + <ParameterKey>psp_spi_Hwt_sc</ParameterKey> |
104 | <Description>Temperature Tensor in SC frame</Description> | 141 | <Description>Temperature Tensor in SC frame</Description> |
105 | <Units>eV</Units> | 142 | <Units>eV</Units> |
143 | + <CoordinateSystem> | ||
144 | + <CoordinateRepresentation>Cartesian</CoordinateRepresentation> | ||
145 | + <CoordinateSystemName>SC</CoordinateSystemName> | ||
146 | + </CoordinateSystem> | ||
106 | <RenderingHints> | 147 | <RenderingHints> |
107 | <DisplayType>TimeSeries</DisplayType> | 148 | <DisplayType>TimeSeries</DisplayType> |
108 | </RenderingHints> | 149 | </RenderingHints> |
150 | + <Structure> | ||
151 | + <Size>6</Size> | ||
152 | + <Element> | ||
153 | + <Name>Txx</Name> | ||
154 | + <Index>1</Index> | ||
155 | + <ParameterKey>psp_spi_Hwt_sc(0)</ParameterKey> | ||
156 | + </Element> | ||
157 | + <Element> | ||
158 | + <Name>Tyy</Name> | ||
159 | + <Index>2</Index> | ||
160 | + <ParameterKey>psp_spi_Hwt_sc(1)</ParameterKey> | ||
161 | + </Element> | ||
162 | + <Element> | ||
163 | + <Name>Tzz</Name> | ||
164 | + <Index>3</Index> | ||
165 | + <ParameterKey>psp_spi_Hwt_sc(2)</ParameterKey> | ||
166 | + </Element> | ||
167 | + <Element> | ||
168 | + <Name>Txy</Name> | ||
169 | + <Index>4</Index> | ||
170 | + <ParameterKey>psp_spi_Hwt_sc(3)</ParameterKey> | ||
171 | + </Element> | ||
172 | + <Element> | ||
173 | + <Name>Txz</Name> | ||
174 | + <Index>5</Index> | ||
175 | + <ParameterKey>psp_spi_Hwt_sc(4)</ParameterKey> | ||
176 | + </Element> | ||
177 | + <Element> | ||
178 | + <Name>Tyz</Name> | ||
179 | + <Index>6</Index> | ||
180 | + <ParameterKey>psp_spi_Hwt_sc(5)</ParameterKey> | ||
181 | + </Element> | ||
182 | + </Structure> | ||
109 | </Parameter> | 183 | </Parameter> |
110 | <Parameter> | 184 | <Parameter> |
111 | <Name>v_rtn</Name> | 185 | <Name>v_rtn</Name> |
NumericalData/CDPP-AMDA/PSP/SPI/psp-spi-amom.xml
@@ -91,21 +91,95 @@ | @@ -91,21 +91,95 @@ | ||
91 | </Parameter> | 91 | </Parameter> |
92 | <Parameter> | 92 | <Parameter> |
93 | <Name>t_temp_rtn</Name> | 93 | <Name>t_temp_rtn</Name> |
94 | - <ParameterKey>psp_spc_awt</ParameterKey> | 94 | + <ParameterKey>psp_spi_awt</ParameterKey> |
95 | <Description>Temperature Tensor in RTN frame</Description> | 95 | <Description>Temperature Tensor in RTN frame</Description> |
96 | <Units>eV</Units> | 96 | <Units>eV</Units> |
97 | + <CoordinateSystem> | ||
98 | + <CoordinateRepresentation>Cartesian</CoordinateRepresentation> | ||
99 | + <CoordinateSystemName>RTN</CoordinateSystemName> | ||
100 | + </CoordinateSystem> | ||
97 | <RenderingHints> | 101 | <RenderingHints> |
98 | <DisplayType>TimeSeries</DisplayType> | 102 | <DisplayType>TimeSeries</DisplayType> |
99 | </RenderingHints> | 103 | </RenderingHints> |
104 | + <Structure> | ||
105 | + <Size>6</Size> | ||
106 | + <Element> | ||
107 | + <Name>Txx</Name> | ||
108 | + <Index>1</Index> | ||
109 | + <ParameterKey>psp_spi_awt(0)</ParameterKey> | ||
110 | + </Element> | ||
111 | + <Element> | ||
112 | + <Name>Tyy</Name> | ||
113 | + <Index>2</Index> | ||
114 | + <ParameterKey>psp_spi_awt(1)</ParameterKey> | ||
115 | + </Element> | ||
116 | + <Element> | ||
117 | + <Name>Tzz</Name> | ||
118 | + <Index>3</Index> | ||
119 | + <ParameterKey>psp_spi_awt(2)</ParameterKey> | ||
120 | + </Element> | ||
121 | + <Element> | ||
122 | + <Name>Txy</Name> | ||
123 | + <Index>4</Index> | ||
124 | + <ParameterKey>psp_spi_awt(3)</ParameterKey> | ||
125 | + </Element> | ||
126 | + <Element> | ||
127 | + <Name>Txz</Name> | ||
128 | + <Index>5</Index> | ||
129 | + <ParameterKey>psp_spi_awt(4)</ParameterKey> | ||
130 | + </Element> | ||
131 | + <Element> | ||
132 | + <Name>Tyz</Name> | ||
133 | + <Index>6</Index> | ||
134 | + <ParameterKey>psp_spi_awt(5)</ParameterKey> | ||
135 | + </Element> | ||
136 | + </Structure> | ||
100 | </Parameter> | 137 | </Parameter> |
101 | <Parameter> | 138 | <Parameter> |
102 | <Name>t_temp_sc</Name> | 139 | <Name>t_temp_sc</Name> |
103 | - <ParameterKey>psp_spc_awt_sc</ParameterKey> | 140 | + <ParameterKey>psp_spi_awt_sc</ParameterKey> |
104 | <Description>Temperature Tensor in SC frame</Description> | 141 | <Description>Temperature Tensor in SC frame</Description> |
105 | <Units>eV</Units> | 142 | <Units>eV</Units> |
143 | + <CoordinateSystem> | ||
144 | + <CoordinateRepresentation>Cartesian</CoordinateRepresentation> | ||
145 | + <CoordinateSystemName>SC</CoordinateSystemName> | ||
146 | + </CoordinateSystem> | ||
106 | <RenderingHints> | 147 | <RenderingHints> |
107 | <DisplayType>TimeSeries</DisplayType> | 148 | <DisplayType>TimeSeries</DisplayType> |
108 | </RenderingHints> | 149 | </RenderingHints> |
150 | + <Structure> | ||
151 | + <Size>6</Size> | ||
152 | + <Element> | ||
153 | + <Name>Txx</Name> | ||
154 | + <Index>1</Index> | ||
155 | + <ParameterKey>psp_spi_awt_sc(0)</ParameterKey> | ||
156 | + </Element> | ||
157 | + <Element> | ||
158 | + <Name>Tyy</Name> | ||
159 | + <Index>2</Index> | ||
160 | + <ParameterKey>psp_spi_awt_sc(1)</ParameterKey> | ||
161 | + </Element> | ||
162 | + <Element> | ||
163 | + <Name>Tzz</Name> | ||
164 | + <Index>3</Index> | ||
165 | + <ParameterKey>psp_spi_awt_sc(2)</ParameterKey> | ||
166 | + </Element> | ||
167 | + <Element> | ||
168 | + <Name>Txy</Name> | ||
169 | + <Index>4</Index> | ||
170 | + <ParameterKey>psp_spi_awt_sc(3)</ParameterKey> | ||
171 | + </Element> | ||
172 | + <Element> | ||
173 | + <Name>Txz</Name> | ||
174 | + <Index>5</Index> | ||
175 | + <ParameterKey>psp_spi_awt_sc(4)</ParameterKey> | ||
176 | + </Element> | ||
177 | + <Element> | ||
178 | + <Name>Tyz</Name> | ||
179 | + <Index>6</Index> | ||
180 | + <ParameterKey>psp_spi_awt_sc(5)</ParameterKey> | ||
181 | + </Element> | ||
182 | + </Structure> | ||
109 | </Parameter> | 183 | </Parameter> |
110 | <Parameter> | 184 | <Parameter> |
111 | <Name>v_rtn</Name> | 185 | <Name>v_rtn</Name> |
NumericalData/CDPP-AMDA/PSP/SPI/psp-spi-asp.xml
@@ -77,7 +77,7 @@ | @@ -77,7 +77,7 @@ | ||
77 | </Description> | 77 | </Description> |
78 | <Units>eV/cm2-s-ster-eV</Units> | 78 | <Units>eV/cm2-s-ster-eV</Units> |
79 | <RenderingHints> | 79 | <RenderingHints> |
80 | - <DisplayType>TimeSeries</DisplayType> | 80 | + <DisplayType>Spectrogram</DisplayType> |
81 | </RenderingHints> | 81 | </RenderingHints> |
82 | </Parameter> | 82 | </Parameter> |
83 | <Parameter> | 83 | <Parameter> |
@@ -88,7 +88,7 @@ | @@ -88,7 +88,7 @@ | ||
88 | </Description> | 88 | </Description> |
89 | <Units>eV/cm2-s-ster-eV</Units> | 89 | <Units>eV/cm2-s-ster-eV</Units> |
90 | <RenderingHints> | 90 | <RenderingHints> |
91 | - <DisplayType>TimeSeries</DisplayType> | 91 | + <DisplayType>Spectrogram</DisplayType> |
92 | </RenderingHints> | 92 | </RenderingHints> |
93 | </Parameter> | 93 | </Parameter> |
94 | <Parameter> | 94 | <Parameter> |
@@ -99,7 +99,7 @@ | @@ -99,7 +99,7 @@ | ||
99 | </Description> | 99 | </Description> |
100 | <Units>eV/cm2-s-ster-eV</Units> | 100 | <Units>eV/cm2-s-ster-eV</Units> |
101 | <RenderingHints> | 101 | <RenderingHints> |
102 | - <DisplayType>TimeSeries</DisplayType> | 102 | + <DisplayType>Spectrogram</DisplayType> |
103 | </RenderingHints> | 103 | </RenderingHints> |
104 | </Parameter> | 104 | </Parameter> |
105 | 105 |
NumericalData/CDPP-AMDA/PSP/epiHi/psp-let2-1hr.xml
@@ -15,7 +15,7 @@ | @@ -15,7 +15,7 @@ | ||
15 | (~3 micron silicon equivalent). The 12, 25, and 500 micron thick disks are all separated into five active elements in the | 15 | (~3 micron silicon equivalent). The 12, 25, and 500 micron thick disks are all separated into five active elements in the |
16 | same way as the HET for positional determination. LET2 is similar to LET1 but does not have the end 12, 25, and 500 micron disks. | 16 | same way as the HET for positional determination. LET2 is similar to LET1 but does not have the end 12, 25, and 500 micron disks. |
17 | The Low-Energy Telescopes can measure protons and heavy ions from approximately | 17 | The Low-Energy Telescopes can measure protons and heavy ions from approximately |
18 | - 1 MeV to greater than 20 MeV/n and electrons from about 0.5 MeV to 2 MeV. | 18 | + 1 MeV to greater than 20 MeV/n and electrons from about 0.5 MeV to 2 MeV. LET2 telescope, unlike LET1 and HET, is single sided, with its only side called C, oriented at +135° from the sunward direction. |
19 | </Description> | 19 | </Description> |
20 | <Acknowledgement> | 20 | <Acknowledgement> |
21 | Please acknowledge the National Aeronautics and Space Administration, NASA | 21 | Please acknowledge the National Aeronautics and Space Administration, NASA |
NumericalData/CDPP-AMDA/PSP/epiHi/psp-let2-1min.xml
@@ -16,6 +16,7 @@ | @@ -16,6 +16,7 @@ | ||
16 | same way as the HET for positional determination. LET2 is similar to LET1 but does not have the end 12, 25, and 500 micron disks. | 16 | same way as the HET for positional determination. LET2 is similar to LET1 but does not have the end 12, 25, and 500 micron disks. |
17 | The Low-Energy Telescopes can measure protons and heavy ions from approximately | 17 | The Low-Energy Telescopes can measure protons and heavy ions from approximately |
18 | 1 MeV to greater than 20 MeV/n and electrons from about 0.5 MeV to 2 MeV. | 18 | 1 MeV to greater than 20 MeV/n and electrons from about 0.5 MeV to 2 MeV. |
19 | + LET2 telescope, unlike LET1 and HET, is single sided, with its only side called C, oriented at +135° from the sunward direction. | ||
19 | </Description> | 20 | </Description> |
20 | <Acknowledgement> | 21 | <Acknowledgement> |
21 | Please acknowledge the National Aeronautics and Space Administration, NASA | 22 | Please acknowledge the National Aeronautics and Space Administration, NASA |
NumericalData/CDPP-AMDA/PSP/epiLo/psp-loic-omc.xml
@@ -4,7 +4,7 @@ | @@ -4,7 +4,7 @@ | ||
4 | <NumericalData> | 4 | <NumericalData> |
5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-loic-omc</ResourceID> | 5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-loic-omc</ResourceID> |
6 | <ResourceHeader> | 6 | <ResourceHeader> |
7 | - <ResourceName>omni chan. C</ResourceName> | 7 | + <ResourceName>omni channel C</ResourceName> |
8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> | 8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> |
9 | <Description> | 9 | <Description> |
10 | Ion composition mode channel C. The available spectras are obtained by summing over all directions. | 10 | Ion composition mode channel C. The available spectras are obtained by summing over all directions. |
NumericalData/CDPP-AMDA/PSP/epiLo/psp-loic-omd.xml
@@ -4,7 +4,7 @@ | @@ -4,7 +4,7 @@ | ||
4 | <NumericalData> | 4 | <NumericalData> |
5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-loic-omd</ResourceID> | 5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-loic-omd</ResourceID> |
6 | <ResourceHeader> | 6 | <ResourceHeader> |
7 | - <ResourceName>omni chan. D</ResourceName> | 7 | + <ResourceName>omni channel D</ResourceName> |
8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> | 8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> |
9 | <Description> | 9 | <Description> |
10 | Ion composition mode channel D. The available spectras are obtained by summing over all directions. | 10 | Ion composition mode channel D. The available spectras are obtained by summing over all directions. |
NumericalData/CDPP-AMDA/PSP/epiLo/psp-loic-omp.xml
@@ -4,7 +4,7 @@ | @@ -4,7 +4,7 @@ | ||
4 | <NumericalData> | 4 | <NumericalData> |
5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-loic-omp</ResourceID> | 5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-loic-omp</ResourceID> |
6 | <ResourceHeader> | 6 | <ResourceHeader> |
7 | - <ResourceName>omni chan. P</ResourceName> | 7 | + <ResourceName>omni channel P</ResourceName> |
8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> | 8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> |
9 | <Description> | 9 | <Description> |
10 | Ion composition mode channel P. The available spectras are obtained by summing over all directions. | 10 | Ion composition mode channel P. The available spectras are obtained by summing over all directions. |
NumericalData/CDPP-AMDA/PSP/epiLo/psp-loic-omr.xml
@@ -4,7 +4,7 @@ | @@ -4,7 +4,7 @@ | ||
4 | <NumericalData> | 4 | <NumericalData> |
5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-loic-omr</ResourceID> | 5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-loic-omr</ResourceID> |
6 | <ResourceHeader> | 6 | <ResourceHeader> |
7 | - <ResourceName>omni chan. R</ResourceName> | 7 | + <ResourceName>omni channel R</ResourceName> |
8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> | 8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> |
9 | <Description> | 9 | <Description> |
10 | Ion composition mode channel R. The available spectras are obtained by summing over all directions. | 10 | Ion composition mode channel R. The available spectras are obtained by summing over all directions. |
NumericalData/CDPP-AMDA/PSP/epiLo/psp-loic-omt.xml
@@ -4,7 +4,7 @@ | @@ -4,7 +4,7 @@ | ||
4 | <NumericalData> | 4 | <NumericalData> |
5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-loic-omt</ResourceID> | 5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-loic-omt</ResourceID> |
6 | <ResourceHeader> | 6 | <ResourceHeader> |
7 | - <ResourceName>omni chan. T</ResourceName> | 7 | + <ResourceName>omni channel T</ResourceName> |
8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> | 8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> |
9 | <Description> | 9 | <Description> |
10 | Ion composition mode channel T. The available spectras are obtained by summing over all directions. | 10 | Ion composition mode channel T. The available spectras are obtained by summing over all directions. |
NumericalData/CDPP-AMDA/PSP/epiLo/psp-lope-ome.xml
@@ -4,7 +4,7 @@ | @@ -4,7 +4,7 @@ | ||
4 | <NumericalData> | 4 | <NumericalData> |
5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-lope-ome</ResourceID> | 5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-lope-ome</ResourceID> |
6 | <ResourceHeader> | 6 | <ResourceHeader> |
7 | - <ResourceName>omni chan. E</ResourceName> | 7 | + <ResourceName>omni channel E</ResourceName> |
8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> | 8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> |
9 | <Description> | 9 | <Description> |
10 | Particle Energy mode channel E. The available spectras are obtained by summing over all directions. | 10 | Particle Energy mode channel E. The available spectras are obtained by summing over all directions. |
NumericalData/CDPP-AMDA/PSP/epiLo/psp-lope-omf.xml
@@ -4,7 +4,7 @@ | @@ -4,7 +4,7 @@ | ||
4 | <NumericalData> | 4 | <NumericalData> |
5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-lope-omf</ResourceID> | 5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-lope-omf</ResourceID> |
6 | <ResourceHeader> | 6 | <ResourceHeader> |
7 | - <ResourceName>omni chan. F</ResourceName> | 7 | + <ResourceName>omni channel F</ResourceName> |
8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> | 8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> |
9 | <Description> | 9 | <Description> |
10 | Particle Energy mode channel F. The available spectras are obtained by summing over all directions. | 10 | Particle Energy mode channel F. The available spectras are obtained by summing over all directions. |
NumericalData/CDPP-AMDA/PSP/epiLo/psp-lope-omg.xml
@@ -4,7 +4,7 @@ | @@ -4,7 +4,7 @@ | ||
4 | <NumericalData> | 4 | <NumericalData> |
5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-lope-omg</ResourceID> | 5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/PSP/epiLo/psp-lope-omg</ResourceID> |
6 | <ResourceHeader> | 6 | <ResourceHeader> |
7 | - <ResourceName>omni chan. G</ResourceName> | 7 | + <ResourceName>omni channel G</ResourceName> |
8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> | 8 | <ReleaseDate>2019-11-12T10:48:29Z</ReleaseDate> |
9 | <Description> | 9 | <Description> |
10 | Particle Energy mode channel G. The available spectras are obtained by summing over all directions. | 10 | Particle Energy mode channel G. The available spectras are obtained by summing over all directions. |