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	<Who>
		<!-- Data pertaining to curation: observer, telescope, instrument, planner, tohbans, ... -->
		<Date>2007-07-28T23:11:08.000Z</Date>    <!-- Time VOEvent was generated. -->
		<PublisherID>http://sot.lmsal.com</PublisherID>

		<Contact>
			<Name>Ed DeLuca</Name>
			<Institution>SAO</Institution>
			<Communication>
				<Uri>http://hea-www.harvard.edu</Uri>
				<AddressLine>MS 58, 60 Garden St, Cambridge, MA 02138</AddressLine>
				<Telephone>+1-617-496-7725</Telephone>
				<Email>edeluca@cfa.harvard.edu</Email>
			</Communication>		</Contact>

		<lmsal:Telescope>Hinode</lmsal:Telescope>
		<lmsal:Instrument>XRT</lmsal:Instrument>
		<lmsal:Tohbans></lmsal:Tohbans>
		<lmsal:ChiefPlanner>Sterling, A.</lmsal:ChiefPlanner>
		<lmsal:ChiefObserver>Nishida, Keisuke</lmsal:ChiefObserver>
	</Who>


	<What>
		<!-- Data pertaining to what was observed, measured, ...   Some of these tags might move into Who section. -->
		<lmsal:obsId></lmsal:obsId>
		<lmsal:OBS_NUM>10</lmsal:OBS_NUM>
		<lmsal:JOP_ID>0</lmsal:JOP_ID>
		<lmsal:JOP></lmsal:JOP>
		<lmsal:JOIN_SB>null</lmsal:JOIN_SB>    <!-- S=SOT, X=XRT, E=EIS, SX=SOT+XRT, EX=EIS+XRT -->
		<lmsal:OBSTITLE>Backup: Synoptics</lmsal:OBSTITLE>
		<lmsal:SCI_OBJ>FS, SYN</lmsal:SCI_OBJ>     <!--  Scientific objectives -->
		<lmsal:SCI_OBS></lmsal:SCI_OBS>     <!-- Objects being observed -->
		<lmsal:NOAA_NUM></lmsal:NOAA_NUM>
		<lmsal:TARGET>FS</lmsal:TARGET>
		<lmsal:slotNumber>0</lmsal:slotNumber>
	</What>


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		<!-- Space and Time Coordinates. -->
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	<Why>
		<!-- Why was observation performed.  Initial scientific assessment, hypothesized mechanisms, classifications, ... -->
		<Concept>
			<lmsal:Goal>Joint Observation of the Solar Corona between Hinode EIS and NAOJ Norikura Observatory for nonthermal line broadening in the coronal emission</lmsal:Goal>
			<lmsal:Purpose>Backup_Synoptics_Open+Al/Mesh</lmsal:Purpose>
		</Concept>

		<Description>
			Tim File-OBS_DEC:  Synoptics Open+Al/Mesh (181/4096) - Backup Period; Daily Note:  none; Request to XRT HOP Number 0010:  The sequence that was run previously is used. No strong request.; Other Instruments:  Norikura: High dispersion spectra of Fe X6374 and Fe XIV5303 are obtained. High-acuracy Doppler velocity and line width are given. Independent Fe XIV 5303 imaging observations provide high-cadence imaging and Doppler informaiton.  Bi-products: andlt;This is the most important for EIS team.andgt; : By the simultaneous observations with Norikura Solar Observatory, EIS line width of instrumental origin is absolutely calibrated. In EIS bandpass there are Fe X lines in the short wavelength band and Fe XIV lines in the long wavelength band. These are calibrated with Fe X 6374 and Fe XIV 5303 emission lines. Norikura Solar Observatory is going to support this campaign observation with a high priority.;  Scientific Objectives:  To understand the origin of non-thermal line broadening in coronal emission lines Daily Note:  none; Request to XRT HOP Number 0010:  The sequence that was run previously is used. No strong request.; Other Instruments:  Norikura: High dispersion spectra of Fe X6374 and Fe XIV5303 are obtained. High-acuracy Doppler velocity and line width are given. Independent Fe XIV 5303 imaging observations provide high-cadence imaging and Doppler informaiton.  Bi-products: andlt;This is the most important for EIS team.andgt; : By the simultaneous observations with Norikura Solar Observatory, EIS line width of instrumental origin is absolutely calibrated. In EIS bandpass there are Fe X lines in the short wavelength band and Fe XIV lines in the long wavelength band. These are calibrated with Fe X 6374 and Fe XIV 5303 emission lines. Norikura Solar Observatory is going to support this campaign observation with a high priority.;  Scientific Objectives:  To understand the origin of non-thermal line broadening in coronal emission lines Daily Note:  none; Request to XRT HOP Number 0010:  The sequence that was run previously is used. No strong request.; Other Instruments:  Norikura: High dispersion spectra of Fe X6374 and Fe XIV5303 are obtained. High-acuracy Doppler velocity and line width are given. Independent Fe XIV 5303 imaging observations provide high-cadence imaging and Doppler informaiton.  Bi-products: andlt;This is the most important for EIS team.andgt; : By the simultaneous observations with Norikura Solar Observatory, EIS line width of instrumental origin is absolutely calibrated. In EIS bandpass there are Fe X lines in the short wavelength band and Fe XIV lines in the long wavelength band. These are calibrated with Fe X 6374 and Fe XIV 5303 emission lines. Norikura Solar Observatory is going to support this campaign observation with a high priority.;  Scientific Objectives:  To understand the origin of non-thermal line broadening in coronal emission lines Daily Note:  none; Request to XRT HOP Number 0010:  The sequence that was run previously is used. No strong request.; Other Instruments:  Norikura: High dispersion spectra of Fe X6374 and Fe XIV5303 are obtained. High-acuracy Doppler velocity and line width are given. Independent Fe XIV 5303 imaging observations provide high-cadence imaging and Doppler informaiton.  Bi-products: andlt;This is the most important for EIS team.andgt; : By the simultaneous observations with Norikura Solar Observatory, EIS line width of instrumental origin is absolutely calibrated. In EIS bandpass there are Fe X lines in the short wavelength band and Fe XIV lines in the long wavelength band. These are calibrated with Fe X 6374 and Fe XIV 5303 emission lines. Norikura Solar Observatory is going to support this campaign observation with a high priority.;  Scientific Objectives:  To understand the origin of non-thermal line broadening in coronal emission lines Daily Note:  none; Request to XRT HOP Number 0010:  The sequence that was run previously is used. No strong request.; Other Instruments:  Norikura: High dispersion spectra of Fe X6374 and Fe XIV5303 are obtained. High-acuracy Doppler velocity and line width are given. Independent Fe XIV 5303 imaging observations provide high-cadence imaging and Doppler informaiton.  Bi-products: andlt;This is the most important for EIS team.andgt; : By the simultaneous observations with Norikura Solar Observatory, EIS line width of instrumental origin is absolutely calibrated. In EIS bandpass there are Fe X lines in the short wavelength band and Fe XIV lines in the long wavelength band. These are calibrated with Fe X 6374 and Fe XIV 5303 emission lines. Norikura Solar Observatory is going to support this campaign observation with a high priority.;  Scientific Objectives:  To understand the origin of non-thermal line broadening in coronal emission lines Daily Note:  none; Request to XRT HOP Number 0010:  The sequence that was run previously is used. No strong request.; Other Instruments:  Norikura: High dispersion spectra of Fe X6374 and Fe XIV5303 are obtained. High-acuracy Doppler velocity and line width are given. Independent Fe XIV 5303 imaging observations provide high-cadence imaging and Doppler informaiton.  Bi-products: andlt;This is the most important for EIS team.andgt; : By the simultaneous observations with Norikura Solar Observatory, EIS line width of instrumental origin is absolutely calibrated. In EIS bandpass there are Fe X lines in the short wavelength band and Fe XIV lines in the long wavelength band. These are calibrated with Fe X 6374 and Fe XIV 5303 emission lines. Norikura Solar Observatory is going to support this campaign observation with a high priority.;  Scientific Objectives:  To understand the origin of non-thermal line broadening in coronal emission lines Daily Note:  none; Request to XRT HOP Number 0010:  The sequence that was run previously is used. No strong request.; Other Instruments:  Norikura: High dispersion spectra of Fe X6374 and Fe XIV5303 are obtained. High-acuracy Doppler velocity and line width are given. Independent Fe XIV 5303 imaging observations provide high-cadence imaging and Doppler informaiton.  Bi-products: andlt;This is the most important for EIS team.andgt; : By the simultaneous observations with Norikura Solar Observatory, EIS line width of instrumental origin is absolutely calibrated. In EIS bandpass there are Fe X lines in the short wavelength band and Fe XIV lines in the long wavelength band. These are calibrated with Fe X 6374 and Fe XIV 5303 emission lines. Norikura Solar Observatory is going to support this campaign observation with a high priority.;  Scientific Objectives:  To understand the origin of non-thermal line broadening in coronal emission lines Daily Note:  none; Request to XRT HOP Number 0010:  The sequence that was run previously is used. No strong request.; Other Instruments:  Norikura: High dispersion spectra of Fe X6374 and Fe XIV5303 are obtained. High-acuracy Doppler velocity and line width are given. Independent Fe XIV 5303 imaging observations provide high-cadence imaging and Doppler informaiton.  Bi-products: andlt;This is the most important for EIS team.andgt; : By the simultaneous observations with Norikura Solar Observatory, EIS line width of instrumental origin is absolutely calibrated. In EIS bandpass there are Fe X lines in the short wavelength band and Fe XIV lines in the long wavelength band. These are calibrated with Fe X 6374 and Fe XIV 5303 emission lines. Norikura Solar Observatory is going to support this campaign observation with a high priority.;  Scientific Objectives:  To understand the origin of non-thermal line broadening in coronal emission lines Daily Note:  none; Request to XRT HOP Number 0010:  The sequence that was run previously is used. No strong request.; Other Instruments:  Norikura: High dispersion spectra of Fe X6374 and Fe XIV5303 are obtained. High-acuracy Doppler velocity and line width are given. Independent Fe XIV 5303 imaging observations provide high-cadence imaging and Doppler informaiton.  Bi-products: andlt;This is the most important for EIS team.andgt; : By the simultaneous observations with Norikura Solar Observatory, EIS line width of instrumental origin is absolutely calibrated. In EIS bandpass there are Fe X lines in the short wavelength band and Fe XIV lines in the long wavelength band. These are calibrated with Fe X 6374 and Fe XIV 5303 emission lines. Norikura Solar Observatory is going to support this campaign observation with a high priority.;  Scientific Objectives:  To understand the origin of non-thermal line broadening in coronal emission lines Daily Note:  none; Request to XRT HOP Number 0010:  The sequence that was run previously is used. No strong request.; Other Instruments:  Norikura: High dispersion spectra of Fe X6374 and Fe XIV5303 are obtained. High-acuracy Doppler velocity and line width are given. Independent Fe XIV 5303 imaging observations provide high-cadence imaging and Doppler informaiton.  Bi-products: andlt;This is the most important for EIS team.andgt; : By the simultaneous observations with Norikura Solar Observatory, EIS line width of instrumental origin is absolutely calibrated. In EIS bandpass there are Fe X lines in the short wavelength band and Fe XIV lines in the long wavelength band. These are calibrated with Fe X 6374 and Fe XIV 5303 emission lines. Norikura Solar Observatory is going to support this campaign observation with a high priority.;  Scientific Objectives:  To understand the origin of non-thermal line broadening in coronal emission lines Daily Note:  none; Request to XRT HOP Number 0010:  The sequence that was run previously is used. No strong request.; Other Instruments:  Norikura: High dispersion spectra of Fe X6374 and Fe XIV5303 are obtained. High-acuracy Doppler velocity and line width are given. Independent Fe XIV 5303 imaging observations provide high-cadence imaging and Doppler informaiton.  Bi-products: andlt;This is the most important for EIS team.andgt; : By the simultaneous observations with Norikura Solar Observatory, EIS line width of instrumental origin is absolutely calibrated. In EIS bandpass there are Fe X lines in the short wavelength band and Fe XIV lines in the long wavelength band. These are calibrated with Fe X 6374 and Fe XIV 5303 emission lines. Norikura Solar Observatory is going to support this campaign observation with a high priority.;  Scientific Objectives:  To understand the origin of non-thermal line broadening in coronal emission lines
		</Description>
	</Why>

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