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<HSTProposal
   Phase1ID="415"
   Phase2ID="11276"
   Phase="Phase I"
   AptVersion="Version 16.0.3 ">
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   <!--This file is automatically generated and should not be edited by hand. Editing this file directly is at your own risk.-->
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         <SubmissionData
            AptVersion="Version 16.0.3 "
            SubmissionCounter="1"
            SubmissionSuccessCounter="0"
            HasErrors="true"
            Cycle="16"
            IncludeSysInfo="false"
            NotificationAddress="dproga@physics.unlv.edu"
            AssignedID="415">
            
            <SystemInformation
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            <SubmissionComments />
            
            <SubmissionLog>  Assigned ID: 415
----- Attempting Submission 1 (Fri Jan 26 13:13:39 PST 2007) -----
</SubmissionLog>
            
            <DiagnosticJustification>In this theory proposal, we listed relevant data sets in Analysis Plan.</DiagnosticJustification>
         </SubmissionData>
      </ToolDataItem>
   </ToolData>
   
   <ProposalInformation
      Category="AR"
      PureParallelProposal="false"
      Cycle="16"
      STScIEditNumber="0">
      
      <Title>Hydrodynamical models of Narrow Line Regions in Seyfert Galaxies</Title>
      
      <Abstract>We propose to study large-scale outflows from Seyfert galaxies (SG).
We will explore our hydrodynamical model of flows influenced by the
gravitational and radiation fields of the central part of SG. The
model predicts an outflow in the polar region which is driven by
thermal and radiation pressures and is confined by a very hot ambient
gas accreting on to a central black hole.  Our preliminary calculation
shows that this model promises to explain the kinematics of winds in
the Narrow Line Regions of SG.  We will apply the model to 
NGC 1068, NGC 4151, and Mrk 3 where winds were spatially 
resolved by HST. In particular, we will compute, based on our 
wind model, synthetic images and position-dependent line profiles 
(i.e., for many positions along a given slit) for direct comparison 
with the data from the Space Telescope Imaging Spectrograph. 
A similar model can be apply to outflows from other Active Galactic
Nuclei and accreting systems.</Abstract>
      
      <PrincipalInvestigator
         Honorific="Dr."
         FirstName="Daniel"
         LastName="Proga"
         ESAMember="false"
         UniqueID="3981"
         AddressVerifiedCycle="16">
         
         <Address
            Institution="University of Nevada - Las Vegas"
            USState="NV"
            Country="USA" />
      </PrincipalInvestigator>
      
      <CoInvestigator
         Honorific="Dr."
         FirstName="Ryuichi"
         LastName="Kurosawa"
         ESAMember="false"
         AdminUSPI="false"
         Contact="false"
         AddressVerifiedCycle="16">
         
         <Address
            Institution="University of Nevada - Las Vegas"
            USState="NV"
            Country="USA" />
      </CoInvestigator>
      
      <Questions>
         
         <Phase2Questions>
            
            <ObservingDescription />
            
            <RealtimeJustification />
            
            <CalibrationJustification />
            
            <AdditionalComments />
         </Phase2Questions>
      </Questions>
      
      <Orbits
         ThisCycle2GyroPrimary="1"
         ThisCycle2GyroParallel="0"
         NextCycle2GyroPrimary="0"
         NextCycle2GyroParallel="0"
         AfterNext2GyroPrimary="0"
         AfterNext2GyroParallel="0" />
      
      <Phase1ProposalInformation
         TotalTargets="1"
         Attachment="/Users/dproga/Desktop/nl.pdf">
         
         <ScientificCategory>AGN/QUASARS</ScientificCategory>
         
         <ScientificKeyword1
            Keyword="AGN PHYSICS" />
         
         <ScientificKeyword2
            Keyword="DYNAMICS" />
         
         <ScientificKeyword3
            Keyword="SEYFERT GALAXIES" />
         
         <ScientificKeyword4
            Keyword="WINDS/OUTFLOWS/MASS-LOSS" />
         
         <ProprietaryPeriod>12</ProprietaryPeriod>
         
         <Budget>65000</Budget>
         
         <CalibProp>false</CalibProp>
         
         <SpitzerHours>0.0</SpitzerHours>
         
         <Treasury>false</Treasury>
         
         <Legacy>false</Legacy>
         
         <Theory>true</Theory>
         
         <LargeProgram>false</LargeProgram>
         
         <Spitzer>false</Spitzer>
         
         <Survey>false</Survey>
      </Phase1ProposalInformation>
      
      <Phase2ProposalInformation
         PCFlag="false">
         
         <Availability>SUPPORTED</Availability>
      </Phase2ProposalInformation>
   </ProposalInformation>
   
   <Targets />
   
   <Observations />
   
   <Datasets />
   
   <Patterns />
   
   <Visits />
</HSTProposal>


