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SeaWiFS Postlaunch Technical Report Series Cumulative Index

Stanford B. Hooker and Elaine R. Firestone · 2001

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Stanford B. Hooker and Elaine R. Firestone · about 85 minutes

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NASA/TM-2001-206892, Vol. 12 SeaWiFS Postlaunch Technical Report Series Stanford B. Hooker and Elaine R. Firestone, Editors Volume 12, SeaWiFS Postlaunch Technical Report Series Cumulative Index: Volumes 1-11 Elaine R. Firestone and Stanford B. Hooker National Aeronautics and Space Administration Goddard Space Flight Center Greenbelt, Maryland 2077 ! May 2001

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The NASA STI Program Office ... in Profile Since its founding, NASA has been dedicated to the advancement of aeronautics and space science. The NASA Scientific and Technical Information (STI) Program Office plays a key part in helping NASA maintain this important role. The NASA STI Program Office is operated by Langley Research Center, the lead center for NASA's scientific and technical information. The NASA STI Program Office provides access to the NASA STI Database, the largest collection of aeronautical and space science STI in the world. The Program Office is also NASA's institutional mechanism for disseminating the results of its research and development activities. These results are published by NASA in the NASA STI Report Series, which includes the following report types: • TECHNICAL PUBLICATION. Reports of completed research or a major significant phase of research that present the results of NASA programs and include extensive data or theoretical analysis. Includes compilations of significant scientific and technical data and information deemed to be of continuing reference value. NASA's counterpart of peer-reviewed formal professional papers but has less stringent limitations on manuscript length and extent of graphic presentations. • TECHNICAL MEMORANDUM. Scientific and technical findings that are preliminary or of specialized interest, e.g., quick release reports, working papers, and bibliographies that contain minimal annotation. Does not contain extensive analysis. CONTRACTOR REPORT. Scientific and technical findings by NASA-sponsored contractors and grantees. • CONFERENCE PUBLICATION. Collected papers from scientific and technical conferences, symposia, seminars, or other meetings sponsored or cosponsored by NASA. • SPECIAL PUBLICATION. Scientific, technical, or historical information from NASA programs, projects, and mission, often concerned with subjects having substantial public interest. TECHNICAL TRANSLATION. English-language translations of foreign scientific and technical material pertinent to NASA's mission. Specialized services that complement the STI Program Office's diverse offerings include creating custom thesauri, building customized databases, organizing and publishing research results... even providing videos. For more information about the NASA STI Program Office, see the following: • Access the NASA STI Program Home Page at http://www.sti.nasa.gov/STI-homepage.html • E-mail your question via the Internet to help@ sti.nasa.gov • Fax your question to the NASA Access Help Desk at (301) 621-0134 • Telephone the NASA Access Help Desk at (301) 621-0390 Write to: NASA Access Help Desk NASA Center for AeroSpace Information 7121 Standard Drive Hanover, MD 21076-1320

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NASA/TM-2001-206892, VOI. 12 SeaWiFS Postlaunch Technical Report Series Stanford B. Hooker, Editor NASA Goddard Space Flight Center, Greenbelt, Maryland Elaine R. Firestone, Senior Technical Editor SAIC General Sciences Corporation, Beltsville, Maryland Volume 12, SeaWiFS Postlaunch Technical Report Series Cumulative Index: Volumes 1-11 Elaine R. Firestone SAIC General Sciences Corporation, Beltsville, Maryland Stanford B. Hooker NASA Goddard Space Flight Center, Greenbelt, Maryland May 2001

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ISSN 1522-8789 Available from: NASA Center for AeroSpace Information 7121 Standard Drive Hanover, MD 21076-1320 Price Code: A 17 National Technical Information Service 5285 Port Royal Road Springfield, VA 22161 Price Code: A10

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E.R. Firestone and S.B. Hooker ABSTRACT The Sea-viewing Wide Field-of-view Sensor (SeaWiFS) is the follow-on ocean color instrument to the Coastal Zone Color Scanner (CZCS), which ceased operations in 1986, after an eight-year mission. SeaWiFS was launched on 1 August 1997, onboard the OrbView-2 satellite, built by Orbital Sciences Corporation (OSC). The SeaWiFS Project at the National Aeronautics and Space Administration (NASA) Goddard Space Flight Center (GSFC), undertook the responsibility of documenting all aspects of this mission, which is critical to the ocean color and marine science communities. The start of this documentation was titled the Sea WiFS Technical Report Series, which ended after 43 volumes were published. A follow-on series was started, titled the SeaWiFS Postlaunch Technical Report Series. This particular volume of the so-called Postlaunch Series serves as a reference, or guidebook, to the previous 11 volumes and consists of 5 sections including an errata, an addendum, an index to key words and phrases, a list of acronyms used, and a list of all references cited. The editors will publish a cumulative index of this type after every five volumes. 1. INTRODUCTION This is the second in a series of indexes, published as a separate volume in the Sea WiFS Postlaunch Technical Report Series, and includes information found in the previous 11 volumes of the series. The Sea WiFS Postlaunch Technical Report Series has been written under National Aeronautics and Space Administration (NASA) Technical Memorandum (TM) numbers 1998-206892, 1999-206892, 2000 206892, and 2001-206892, with the year part of the TM number changing with each calendar year of its existence. The voluule numbers, authors, and titles of the volumes covered in this index are: Vol. 10: McClain, C.R., R.A. Barnes, R.E. Eplee, Jr., Vol. 1: Johnson, B.C., J.B. Fowler, and C.L. Cromer, The Sea WiFS Transfer Radiometer (SXR). Vol. 2: Aiken, J., D.G. Cummings, S.W. Gibb, N.W. Rees, R. Woodd-Walker, E.M.S. Woodward, J. Woolfenden, S.B. Hooker, J-F. Berthon, Vol. 7: Johnson, B.C., H.W. Yoon, S.S. Bruce, P- S. Shaw, A. Thompson, S.B. Hooker, R.E. Eplee, Jr., R.A. Barnes, S. Maritorena, and J.L. Mueller, The Fifth Sea WiFS Intercalibration Round-Robin Experiment (SIRREX-5), July 1996. Vol. 8: Hooker, S.B., and G. Lazin, The SeaBOARR- 99 Field Campaign. Vol. 9: McClain, C.R., E.J. Ainsworth, R.A. Barnes, R.E. Eplee, Jr., F.S. Patt, W.D. Robinson, M. Wang, and S.W. Bailey, Sea WiFS Postlaunch Calibration and Validation Analyses, Part i. B.A. Franz, N.C. Hsu, F.S. Patt, C.M. Pietras, W.D. Robinson, B.D. Schieber, G.M. Schmidt, M. Wang, S.W. Bailey, and P.J. Werdell, Sea WiFS Postlaunch Calibration and Validation Analyses, Part 2. C.D. Dempsey, D.J. Suggett, P. Wood, C. Vol. 11: O'Reilly, J.E., and 24 Coauthors, SeaWiFS Donlon, N. Gonz_lez-Ben_tez, I. Huskin, M. Quevedo, R. Barciela-Fernandez, C. de Vargas, and C. McKee, AMT-5 Cruise Report. Postlauneh Calibration and Validation Analyses, Part 3. This volume serves as a reference, or guidebook, to the Vol. 3: Hooker, S.B., G. Zibordi, G. Lazin, and S. preceding volumes of the so-called Postlaunch Series. It McLean, The SeaBOARR-98 Field Campaign. consists of three main sections: a cumulative index to key Vol. 4: Johnson, B.C., E.A. Early, R.E. Eplee, Jr., words and phrases, a glossary of acronyms, and a bibli- R.A. Barnes, and R.T. Caffrey, The 1997 Pre- ography of all references cited in the series. An errata section has been added to address issues and needed corlaunch Radiometric Calibration of Sea WiFS. rections which have come to the editors' attention since the Vol. 5: Barnes, R.A., R.E. Eplec, Jr., S.F. Biggar, volumes were first published. In addition, an addendum K.J. Thome, E.F. Zalewski, P.N. Slater, and section has been added to include the revised SeaWiFS A.W. Holmes, The Sea WiFS Solar Radiation- Project In Situ Data Policy, which is too short in length Based Calibration and the Transfer-to-Orbit to warrant a separate volume within the series. Experiment. The nomenclature of the index section is a familiar one, Vol. 6: Firestone, E.R., and S.B. Hooker, SeaWiFS in the sense that it is a sequence of alphabetical entries, but Postlaunch Technical Report Series Cumula- it. uses a unique format because multiple volumes are intive Index: Volumes 1 5. volved. Unless indicated otherwise, the index entries refer 1

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SeaWiFS Postlaunch Technical Report 180 ° 150"W120°W 90"W 60"W 30"W 80=N 60=N 40°N 200N 0o 20°S 40"S 60=S ,,. 80°S 180" 150"W120"W 90"W 60"W 30"W Fig. 29. The map of current station to some aspect of the SeaWiFS Project or instrument. An index entry is composed of a keyword or phrase followed by an entry field that directs the reader to the possible locations where a discussion of the keyword can be found. The entry field is normally made up of a volume identifier is document because of a printing error. The appropriate shown in bold face, followed by a page identifier, which always enclosed in parentheses: keyword, volume(pages). If an entry is the subject of an entire volume, the volume field is shown in slanted type without a page field: keyword, Vol. #. An entry can also be the subject of a complete chapter. In this instance, both the volume number and chapter number appear without a page field: keyword, volume(ch. #). Figures or tables that provide particularly important summary information are also indicated as separate entries in the page field (even if they fall within an already specified page range). In this case, the figure or table number is given with the page number on which it appears. keyword, volume(Fig. # p. #). OF keyword, volume(Table # p. #). 2 Series Cumulative Index: Volumes 1 11 0" 30"E 60°E 90"E 120"E 150"E 180" 80"N 60"N 40"N 20°N 0 o \ 20'S 40"S 60"S 80°S 0" 30°E 60"E 90°E 120°E 150"E 180" locations in the final match-up data set. 2. ERRATA In Volume 10, page 51, the table should be labeled "Table 13" instead of "Table 3." Figure 29 in Volume 10 did not appear in the published figure and caption appears above. Note: Since the issuance of previous volumes, a number of the references cited have changed their publication status, e.g., they have gone from "submitted," "accepted," or "in press" to printed matter. In other instances, some part (or parts) of the citation, e.g., the title or year, has changed. Listed below are the references in question as they were cited in one or more of the first ll volumes in the series, along with how they now appear in the references section of this volume. Original Citation Biggar, S.F., 1999: A method for correcting the irradiance of standards of spectral irradiance (lamps) operated at non-standard distances. Opt. Photonics News, (accepted). Revised Citation Biggar, S.F., 2001: A method for correcting the irradiance of standards of spectral irradiance (lamps) operated at non-standard distances. Opt. Photonics News, (withdrawn).

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E.R.FirestoneandS.B.Hooker Original Citation Biggar, S.F., P.N. Slater, J.M. Palmer, and K.J. Thome, 2000: Unified approach to absolute radiometric calibration in the solar-reflective range. Remote Sens. Environ., (accepted). Revised Citation Biggar, S.F., P.N. Slater, J.M. Palmer, and K.J. Thome, 2001: Unified approach to absolute radiometric calibration in the solar-reflective range. Remote Sens. Environ., (accepted). Original Citation Early E.A., P.Y. Barnes, B.C. Johnson, J.J. Butler, C.J. Bruegge, S.F. Biggar, P.R. Spyak, and M.M. Pavlov, 1999: Bidirectional reflectance round-robin in support of the Earth Observing System Program. J. Atmos. Oceanic Tech., (accepted). Revised Citation Early E.A., P.Y. Barnes, B.C. Johnson, J.J. Butler, C.J. Bruegge, S.F. Biggar, P.R. Spyak, and M.M. Pavlov, 2000: Bidirectional reflectance round-robin in support of the Earth Observing System Program. J. Atmos. Oceanic Tech., 17, 1,077-1,091. Original Citation Morel, A., and S. Maritorena, 2000: Bio-optical properties of oceanic waters: a reappraisal. J. Geophys. Res., (submitted). Revised Citation Morel, A., and S. Maritorena, 2001: Bio-optical properties of oceanic waters: a reappraisal. J. Geophys. Res., 106, 7,163-7,180. Original Citation Subramaniam, A., R.R. Hood, C.W. Brown, E.J. Carpenter, and D.G. Capone, 2000: A classification algorithm for mapping Trichodesmium blooms using SeaWiFS. Deep-Sea Res., (submitted). Revised Citation Subramaniam, A., R.R. Hood, C.W. Brown, E.J. Carpenter, and D.G. Capone, 2001: Detecting Tvichodesmium blooms in SeaWiFS imagery. Deep-Sea Res., (in press). 3

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ReportSeries Cumulative Index: Volumes 1 11 SeaWiFSPostlaunchTechnical 3. ADDENDUM Sea WiF8 Project In Situ Data Policy This policy provides the guidelines for data collected under the NASA Reserach Announcement (NRA) Biological Oceanography Program and SeaWiFS Project field collaborations for inclusion ill the calibration and validation database. The in situ data is to be submitted to the Sea- WiFS Bio-optieal Archive and Storage System (SeaBASS) [Hooker et al. 1994c, Fargion and Mueller 2000, and Fargion and McClain 2001]? The SeaBASS database is comanaged by the Sensor Intercomparison and Merger for Biological and Interdisciplinary Oceanic Studies (SIMBIOS) and SeaWiFS Projects at Goddard Space Flight Center (GSFC). The purpose of SeaBASS is to ensure that a userfriendly, searchable database of in situ and airborne biooptical measurements is readily available to the NASA Ocean Color Science Team members and to other approved individuals (members of other ocean color instrument teams, vohmtary data contributors, etc.) for advanced algorithm development and data product validation purposes. In addition, SeaBASS contains a variety of data collected using different methods (e.g., subsurface and abovesurface reflectance, high performance liquid chromatography, and fluorometric chlorophyll a) which are usefifl for measurement protocol evaluation purposes (Mueller and Austin 1995, Hooker et al. 1999b, and Fargion and Mueller 2000). This policy supercedes the SeaWiFS Project 1991 policy (Appendix A in Hooker et al. 1993b). Submission: Ocean color algorithm development is essentially observation limited, and rapid turnaround and access to such data are crucial for progress. Principal Investigators (PIs) supported under the SIMBIOS and Sea- WiFS Programs must meet a 6-month data submission deadline. Bio-optical data collected under fimding from the NASA Ocean Biology Program, however, must be submitred within 1 year. International Science Team members and meinbers of other ocean color instrument teams who are making snitable observations for algorithm development and validation are encouraged to provide their data as well, to foster collaboration. Formats and Metadata: Data should be provided in the currently agreed-upon format, along with relevant information describing collection conditions, instrument specifications, instrmnent performance and calibration, and statements of data accuracy. The currently used data format specifications and examples are posted on the SeaBASS Web site (http ://seabass. gsfc. nasa. gov/-seabass/ seabass/html/seabass.html). The provider should use FCItECK, which is an automated format checker program, t Note that all citations given in this addendum are listed in their entirety in the References section of this Technical Memorandum. to test the format validity of SeaBASS data files via return e-mail. Appropriate instrument information, cruise reports, and calibration histories are expected from each data provider. For data providers supported by the Sea- WiFS Project Office, submission of the above infornmtion is mandatory. Data values shall be in appropriate units (e.g., providing volts together with conversion coefficients and drift data is unacceptable). High level data sets, such as normalized water-leaving radiance spectra, are encouraged together with descriptions or citations of the procedures used to derive the valnes. Descriptions of data should be segmented into logical groupings, e.g., by station, date, parameter, etc. Data quality, calibration traceability and history, instrument drift, and sampling protocols may be in text format. Future recommended format modifications may be proposed during NASA Ocean Color Science Team meetings and then discussed for approval and implementation. Data Delivery and Access: Researchers, who are supported by the SeaWiFS Project Office, will be required to deliver data to the SeaWiFS Project Office within six months of data collection. For a period of three years following data collection, access to the digital data will be limited to the NASA Ocean Color Science Team and other approved users as agreed upon by the SeaWiFS Project Office and data providers unless earlier access is granted by individual data providers. Data providers can declare their data sets available for open access anytime prior to the three-year anniversary. The SeaWiFS and SIMBIOS Project Offices will grant access to international science team members on a case-by-case basis according to ongoing collaboration efforts. Other investigators from the ocean color conmmnity will be able to query SeaBASS for information about the data (i.e., parameters, locations, dates, and investigators), but will not have access to the data itself. If the investigators are interested in obtaining the data, they will be referred to the appropriate provider. After the third-year anniversary of data collection, all restricted data will change to an open status, and a copy of the data will be given to the National Oceanographic Data Center (NODC) for distribution. Exceptions to this plan may be made with the approval of the Ocean Color Science Team. For example, some special data sets for algorithm development may be made available to the research community without restrictions. Use Conditions: Prior to the three-year data collection anniversary, users of data will be required to provide proper credit and acknowledgment of the provider. A citation should also be made of the data archive. Users of data are encouraged to discuss relevant findings with the provider early in the research. The user is required to give all providers of the data being used a copy of any manuscript resulting from use of the data prior to the initial submission for publication, thus giving the data provider an opportunity to comment on the paper. The

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E.R. Firestone and S.B. Hooker provider(s) shall have the right to be named as a co-author. of the updates. It will be the provider's responsibility to All users and providers are requested to report possible ensure that the current data in the archive is identical to data errors or mislabeling found in the database, to the the data used in the provider's most recent publications SeaBASS administration. or current research. When an investigator has determined Updates and Corrections: A major purpose of the Sea- that the data sets are final, a written certification of data BASS database is to facilitate comparisons between in situ quality is mandatory. Distribution: After receiving the final data, the Seaobservations (regionally, temporally, by technique, by investigator, etc.), as well as between in situ and remotely WiFS Project Office will forward the data at the approsensed observations. Updates and corrections to submit- priate time to NODC for open distribution. A courtesy ted data sets are encouraged. Records will be maintained citation, naming the provider and the funding agency, will of updates and corrections; summaries of updates will be accompany the data. The SeaWiFS Project will not be posted on a database board, and users shall be notified held responsible for any data errors or misuse. 5

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SeaWiFS Post launch Technical Report Series Cumulative Index: Volumes 1-11 CUMULATIVE INDEX Unless otherwise indicated, the index entries that follow referto some aspect of the SeaWiFS instrument or project. A aerosol index, lO(ch. 1). Case-2 water, 10(5). potential applications, 10(5). sensitivity studies, 10(3 5, Table 1 p. 4, Fig. 1 p. 4). aerosol optical thickness, 9(ch. 9); lO(ch. 6). preliminary results, lO(Fig. 26 p. 43, 44, Table 11 p. 44). procedures, 10(40-41, Table 9 p. 41, Fig. 25 p. 42, Table 10 p. 43, 44). algorithms: atmospheric correction, 9(oh. 8). chlorophyll a, ll(ch. 1, ch. 2). coccolithophore, 9(oh. 7). data processing, 9(5). along-scan effects, 10(oh. 5). atmospheric, 10(34, Figs. 19-21 pp. 35-36, 38). scan angle, lO(Figs. 22-24 pp. 36-37, 38). AMT-5, Vol. 2; 3(11). ammonium uptake, 2(36-37). biogasses, 2(37-39, Fig. 20 p. 38). biogenic sulphur, 2(39, Fig. 21 p. 40). bottle log, 2(Table C2 p. 57-65). bridge log, scientific, 2(Table B1 pp. 48-56). CHN sample log, 2(Table M1 p. 94). crew members, 2(Table A1 p. 47). cruise participants, 2(108-109). cruise report, Vol. 2, cruise strategy, 2(2-4, Table l p. 3). cruise track, 2(4 8, Fig. I p. 5). CTD station, 2(Table CI p. 57). DOC buffer log, 2(Table O1 pp. 95-107). FRRF, 2(27, Table HI pp. 78-85). GuaT_idinium buffer log, 2(Table 02 p. 107). instrumentation, 2(19 25, 27). in-water optics, 2(19-24, Fig. 14 p. 23). LoCNESS station log, 2(Table E3 p. 72). microzooplankton, 2(41-43, Fig. 22 p. 42, Table N1 p. 95). nitrate uptake, 2(36 -37, Table K1 p. 92). nutrients, 2(35-36, Table J1 p. 92). OPC sample log, 2(Table L1 pp. 92-93). physical oceanography, 2(8-13, Figs. 2-9 pp. 9-12). phytoplankton pigment distributions, 2(31-32, Fig. 18 p. 33). primary productivity, 2(32, 35). research reports, 2(8-43). ROSSA, 2(14, 16-19, Fig. 12 p. 16, Fig. 13 p. 18). SeaFALLS station log, 2(Table E2 pp. 69-71). SeaOPS station log, 2(Table E1 pp. 67--69). seawater filtration, 2(27, 31, Table I1 p. 78). SeaWiFS, calibration and validation of, 2(43-46, Fig. 23 pp. 45 46). station filtration log, 2(Table I2 pp. 85-91). AMT-5, cont. sun photometer, 2(25-27, Figs. 16-17 pp. 28-30, Table F1 pp. 73-77). surface optics, 2(24-25, Fig. 15 p. 25). TOPEX, 2(13-14, Figs. 10-11 p. 15). UOR optics, 2(27). XBT casts, 2(Table D1 pp. 65--67). XOBT cast log, 2(Table G1 p. 77). zooplankton, 2(39-41, Table M1 p. 94). archived products, 9(Table 2 pp. 8-9). Atlantic Meridional Transect, see AMT-5. atmospheric correction: aerosol look-up tables, 9(58-60, Table 13 p. 58, Fig. 35 p. 59, Table 14 p. 60, Fig. 36 p. 61). algorithm, 9(57-58). algorithm updates, 9(ch. 8). /ngstr6m exponent, 9(62-63, Fig. 37 p. 62). Rayleigh tables, 9(62). transmittance tables, 9(60). whitecap contributions, 9(60, 62). atmospheric transmittance, 5(9, Figs. 4-5 pp. 10-11). diffuser, 5(9-11, Tables 1- 4 pp. 11-12). _ band 7: band 8 accuracy, 9(39, Table 10 p. 39). calibration method, 9(40-41, Fig. 26 p. 40, Figs. 27 28 p. 41). vicarious calibration, 9(ch. 5). bilinear gain knee calibration, 9(ch. 2, Fig. 4 p. 15, Tables 3-4 p. 16). C calibration, Vol. 7; Vol. 9; Vol. I0; Vol. 11. A/D, 7(Table 3 p. 7, 47, 49, Fig. 30 p. 50). band 7, 9( ch. 5). bilinear gain knee, 9(ch. 2). chronology and methods, 9(Fig. 1 p. 10). coefficients, 7(66). field, 7(25-26, Fig. 16 p. 26, 32-34, Fig. 22 p. 33, Table 24 p. 35). lamp, 7(49-50, Fig. 31 p. 51). lunar, 9(ch. 3). near infrared, 9(44). NIST, 7(50-63, Table 35 p. 52, Tables 36-49 pp. 54-57, Tables 50-53 p. 58, Table 54 p. 59, Figs. 32-35 pp. 60-62, Table 55 p. 63). overview, 9(ch. 1). solar, 9(ch. 4). time series, 9(24, Figs. 10-13 pp. 25-26, 29). vicarious, 9(ch. 5, ch. 6). visible band, 9(44-50, Figs. 29-31 pp. 46-49, Table ll p. 49). see also AMT-5, SeaWiFS. Calibration and Validation Team, see CVT. chlorophyll a algorithm, ll(ch. 1 ch. 2). initial, updated [OC2v2], ll(ch. 1).

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E.R. Firestone and S.B. Hooker chlorophyll a algorithm, cont. instrumentation, cont. in situ data set, 11(10-15, Table 2 pp. 11-12, Tables 3-4 pp. 12-14, Fig. 5 p. 14, Figs. 6-7 p. 16, Fig. 8 p. 17, Tables 5-7 p. 20). SeaBOARR-99, 8(3-14, Table 1 p. 3, Tables 2--3 p. 4, Fig. 1 p. 5, Figs. 2-3 p. 6, Fig. 4 p. 7, Figs. 5-6 p. 8, Figs. 7-8 p. 9, Fig. 9 p. 10, Fig. 10 p. 11, Figs. ll 12 p. 12, Fig. 13 p. 15). OC2 and OC4, 11(15, Figs. 8-9 pp. 17-18, 19, Figs. 10 14 integrating sphere sources, Vol. 1; Vol. 4. pp. 21 23). see also SXR. revised [OC4v4], ll(ch. 2). intercalibration, Vol. 7. SeaBAM data set, 11(3-7, Figs. 1--3 pp. 4-5, Table 1 p.6, interference filter, see SXR. 7 8, Fig. 4 p.7). in-water studies, 7(8-13, Fig. 1 p. 9, Table 5 p. 10, Fig. 2 p. 11, chlorophyll a match-up analysis, 10(ch. _. methods, 10(46-52, Fig. 27 p. 47, Fig. 28 pp. 49 50, Tables 12-14 pp. 50 51). irradiance, 7(59, Table 54 p. 59). clear-water: irradiance field source, 7(25-34). analyses, 10(cb. 4). radiance, 10(29, Table 9 p. 29, Fig. 12 p. 30). time-series, 10(Figs. 12-18 pp. 30-33, 33). cloud-top radiance, 9(ch. 2, Fig. 3 p. 14). coccolithophore: algorithm, updated, 9(ch. 7). tests, 9(51 56, Table 12 p. 52, Figs. 32-34 pp. 53-55). CVT, 9(_h. 1). Fig. 3 p. 13, Table 6 p. 13). results, 7(12 13). field calibrator, 7(25 26, Fig. 16 p. 26, Table 23 p. 33). irradiance values, 7(Table 17 p. 27). results, 7(27 34, Tables 18 19 p. 28, Fig. 17 p. 29, Table 20 p. 29, Fig. 18 p. 30, Table 21 p. 30, Figs. 19-21 p. 32, Table 22 p. 32, Fig. 22 p. 33, Table 23 p. 33). see also calibration, field. -Kactivities, 9(Table 1 pp. 6-8). K(490), see diffuse attenuation coefficient. D, E, F, G- -L-- DalBOSS, 3(11-13, Figs. 10-11 p. 12, Fig. 13 p. 15, Table G1 LoCNESS, 8(3 6, Table 1 p.3, Table 2 p.4, Fig. 1 p. 5, 7-8, pp. 34 35); 8(3, Table 1 p. 3, Fig. 1 p. 5, 12 13, Figs. 11-12 p. 12, 15, Fig. 13 p. 15). deployment log, 8(Table 131 pp. 25 27). DalSAS, 3(10-11, Fig. 9 p. 11, Table F1 pp. 33-34). lunar calibration, see calibration, lunar. data analysis: lunar data analysis, 9(ch. 3). MOBY, 9(ch. 6). detector-based radiometry, see SXR. diffuse attenuation coefficient, ll(ch. 3). data and methods, 11(25). results, 11(25, Figs. 15-16 p. 26). global clear-water analyses, lO(ch. 4). Marine Environmental Radiometer, see MER. glossary: MER, ll(ch. 4). cumulative, 6(5 7). ground measurements, 5(11-12). -I,Jin-air studies, 7(13-25, Figs. 4-5 p. 14, Fig. 6 p. 17, Tables 7 10 p. 18, Figs. 7-12 pp. 19-21, Tables 11 16 pp.22 26, Figs. 13-15 pp. 23-24). analysis, 7(17-18). MOBY: measurement principles, 7(15-16). results, 7(18-22, Tables 7-10 p. 18, Figs. 7-12 pp. 19-21, Tables 11-16 pp. 22-26, Figs. 13 15 pp. 23--24). index entries, 6(3 4). index volumes, Vol. 6. normalized water-leaving radiance, lO(ch. 7). instrumentation: AMT cruise, 2(19-25, 27). SeaBOAKR-98, 3(2 17, Table 1 p. 3, Fig. 1 p. 4, Table 2 p. 4, Fig. 4 p. 7, 16, Fig. 14 p. 19). deployment log, 8(Table C1 pp. 27--29). station log, 2(Tabte E3 p. 72). normalizing factors, 9(18-20, Figs. 6-8 pp. 21 22, Fig. 9 p. 23). time corrections, 9(24, Figs. 10 13 pp. 25 26). -M- ICESS facility and methods, 11(28-33, Fig. 17 p. 30, Table 8 p. 31, Fig. 18 p. 32, Table 9 p. 33). immersion effects, 11(43, Table 15 p. 44, Fig. 26 p. 44). long-term averages, 11(41-43, Tables 12-13 p. 42, Table 14 p. 43). plaque aging, ll(Fig. 24 p. 40, 43, 45). quality control measures, 11(45, Fig. 27 p. 45). results, 11(33-41, Fig. 19 p. 34, Fig. 20 p. 36, Table 10 p. 37, Figs. 21-24 pp. 38-40, Fig. 25 p. 41, Table 11 p. 41). data analysis, 9( ch. 6). see also calibration. -N- -O- Fig. 2 p. 5, Fig. 3 p. 6, Figs. 4-5 p. 7, Figs. 6 7 pp. 8-9, operational SeaWiFS processing, lO(ch. 3). Figs. 8-9 pp. 10-11, Figs. 10-12 pp. 12-13, Fig. 13 p. 15, Figs. 14-15 p. 17). second reprocessing, 10(12-18, Table 3 p. 13, Fig. 5 p. 16, Fig. 6 p. 17, Table 7 p. 24). 7

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SeaWiFSPostlaunchTechnicalReportSeriesCumulative Index: Volumes 1-11 operational SeaWiFS processing, cont. third reprocessing, 10(18-28, Table 4 p. 19, Table 5 p. 23, Table 6 p. 23, Table 7 p. 27, Figs. 7 9 pp. 25-26, Figs. 10-11 p. 27). optics: in-water, 2(19-24, Fig. 14 p. 23); 7(8 13, Fig. 1 p. 9, Table 5 p. 10, Fig. 2 p. 11, Fig. 3 p. 13, Table 6 p. 13). surface, 2(24-25, Fig. 15 p. 25). ozone, see TOMS ozone. _ phytoplankton pigment distributions, 2(31 32, Fig. 18 p. 33). plaque lab, 7(34-46). results, 7(36-46, Tables 25 27 p. 37, Fig. 23 p. 38, Tables 28- 30 p. 39, Figs. 24-27 pp. 40 43, Tables 31-32 p. 44, Fig. 28 p. 45, Table 33 p. 46, Table 34 p. 47). see also SIRREX-5. primary productivity, 2(32, 35). product: archived, 9(Table 2 pp. 8-9). evaluations, 9(9). quality control (QC), 9(11). validation, 9(10 11). see also QC products. -Q QC products, 9(11). __ radiance, 7(59). cloud-top, 9(ch. 2, Fig. 3 p. 14). normalized water-leaving, lO(ch. 7). radiometer, Vol. 7. see also SXR. radiometric calibration, Vol. 4; Vol. 5; Vol. 7. 1993 calibration, 4(2-6, Tables 1-3 p. 3, Table 4 p. 4); 5(13, Table 5 p. 13, Figs. 6-7 p. 15, Table 15 p. 18). 1997 calibration, 5(13, Table 5 p. 13, Figs. 6-7 p. 15, Table 15 p. 18). measurement procedures, 4(9-14, Table 8 p. 13). SeaWiFS results, 4(21-38, Tables 14-15 pp. 24-25, Tables 16-17 pp. 26-27, Figs. 6-8 pp. 29-30, Tables 18-21 pp. 31-- 33, Tables 22-23 p. 35, Figs. 9-11 pp. 36 38). SXR, 4(6 7, Table 6 p. 7, 10, 12-17, Figs. 1-2 pp. 15-16, Table 10 p. 17, Fig. 3 p. 18, 18-19). test equipment, 4(6-9, Table 6 p. 7, Table 7 p. 8). uncertainty analysis, 4(39-43, Tables 24-29 pp.40-43, Figs. 12--13 pp. 45 46). references: cumulative, 6(9-13). reflectance equations: band-averaged center wavelength, 5(5-6). band-averaged spectral radiance, 5(5). BRDF, 5(3 4, Fig. 1 p.4). SBRC basic equation, 5(6, Fig. 2 p. 7). solar radiation-based calibration, 5(3-6). spectral response, 5(4-5). 8 reflectance equations, cont. transfer-to-orbit experiment, 5(22, Tables 19-20 p. 23). round-robin experiment, Vol. 7. see also SIRREX. -S- SeaBOARR, Vol. 3, Vol. 8. DalBOSS, 3(11 13, Figs. 10-11 p. 12, Fig. 13 p. 15, Table G1 pp. 34-35); 8(3, Table 1 p. 3, Fig. 1 p. 5, 12-13, Figs. 11-12 p. 12, 15, Fig. 13 p. 15, Table B1 pp. 25-27). DaISAS, 3(10-11, Fig. 9 p. ll, Table F1 pp. 33-34). instrumentation, 3(2-17, Table 1 p. 3, Fig. 1 p. 4, Table 2 p. 4, Fig. 2 p. 5, Fig. 3 p. 6, Figs. 4-5 p. 7, Figs. 6-7 pp. 8 9, Figs. 8-9 pp. 10 ll, Figs. 10-12 pp. 12 13, Fig. 13 p. 15, Figs. 14 15 p. 17); 8(3 14, Table 1 p. 3, Tables 2 3 p. 4, Fig. 1 p. 5, Figs. 2-3 p. 6, Fig. 4 p. 7, Figs. 5_i p. 8, Figs. 7 8 p. 9, Fig. 9 p. 10, Fig. 10 p. ll, Figs. ll 12 p. 12, Fig. 13 p. 15). methods, 3(18 -24, Fig. 16 p. 19, Table 3 p. 20, Table 4 p. 22); 8(14-19, Tables 4-5 p. 18). preliminary results, 3(24 26, Table 5 p.24, Fig. 17 p.25); 8(19-22, Fig. 14 p. 19, Table 6 pp. 2{21, Fig. 15 p. 21, Fig. 16 p. 22, Tables 7-8 p. 22, Fig. 17 p. 23). science team, 3(27); 8(24). SeaBOSS, 8(3--7, Table 1 p. 3, Table 3 p. 4, Table B1 pp. 25- 27). SeaFALLS, 2(Table E2 pp. 69-71); 8(3-7, Table 1 p. 3, Table 3 p. 4, Fig. 1 p. 5, Fig. 3 p. 6, Fig. 5 p. 8, Fig. 13 p. 15, 16, Fig. 14 p. 19, Table B1 pp. 25-27). SeaSAS, 3(7 8, Figs. 4 6 pp. 7-8, Table C1 pp. 30-31); 8(3-6, Table 1 p. 3, Table 2 p. 4, Fig. 1 p. 5, 8-9, Fig. 6 p. 8, Fig. 7 p. 9, 16-17, Table D1 pp. 30-36). SeaSHADE, 8(3-6, Table 1 p. 3, 8, 9, 11, Fig. 10 p. 11). SQM-II, 3(13 14, Fig. 13 p. 15, 23-24, Table H1 p. 35-36). SUnSAS, 8(3, Table 1 p. 3, Table 2 p. 4, Fig. 1 p. 5, 9-11, Fig. 8 p. 9, Fig. 9 p. 10, 16-17, Table E1 pp. 37-43). THOR, 3(6, Fig. 4 p. 7); 8(3, 7, Fig. 5 p. 8). WiSPER, 3(9-10, Figs. 7 8, pp. 9-10, 18, Fig. 16 p. 19, Table D1 p. 32). SeaBOSS, 8(3-7, Table 1 p. 3, Table 3 p. 4). deployment log, 8(Table B1 pp. 25-27). SeaFALLS, 8(3-7, Table 1 p. 3, Table 3 p. 4, Fig. 1 p. 5, Fig. 3 p. 6, Fig. 5 p. 8, Fig. 13 p. 15, 16, Fig. 14 p. 19). deployment log, 8(Table B1 pp. 25-27). station log, 2(Table E2 pp. 69-71). SeaOPS station log, 2(Table E1 pp. 67-69). SeaSHADE, 8(3_}, Table 1 p. 3, 8, 9, 11, Fig. 10 p. 11). SeaWiFS Bio-Optical Algorithm Round-Robin, see SeaBOARR. SeaWiFS Quality Monitor, see SQM. SeaWiFS Transfer Radiometer, see SXR. SIRREX, Vol. 7. SIRREX-1, 7(1-3). SIRREX-2, 7(1-3). SIRREX-3, 7(1-3). StRREX-4, 7(1-3). SIRREX-5, Vol. 7. agenda, 7(4-5, Table 1 p. 5). conclusions, 7(67).

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E.R.FirestoneandS.B.Hooker SIRREX-5,cont. SUnSAS, 8(3-6, Table 1 p. 3, Table 2 p. 4, Fig. 1 p. 5, 9 11, in-air studies, 7(13 25, Figs. 4-5 p. 14, Fig. 6 p. 17, Tables 7- 10 p. 18, Figs. 7-12 pp. 1921, Tables 11-16 pp. 22 26, Fig. 8 p.9, Fig. 9 p. 10, 16 47). deployment log, 8(Table E1 pp. 37 43). Figs. 13-15 pp. 23 24). SXR, Vol. 1; Vol. 4. instruments, 7(5 7, Table 2 p. 6, Tables 3 4 p. 7). in-water studies, 7(8 13, Fig. 1 p. 9, Table 5 p. 10, Fig. 2 p. 11, Fig. 3 p. 13, Table 6 p. 13). irradiance field source, 7(25-34). NIST calibrations, see calibrations, NIST. participants, 7(67 71). plaque lab, 7(34 46). see also plaque lab. solar data analysis, 9(ch. 4). calibration, 9(28-37, Figs. 15 24 pp. 30 34, Fig. 25 p. 36). solar irradiances, 5(7 9, Tables 10-16 pp. 17 19). 6S, 5(16, Table 12 p. 17, Table 13 p. 18, Table 16 p. 19). band-averaged, 5(16, Table 10 p. 17, Table 12 p. 17, Table 14 p. 18). Fraunbofer lines, 5(19 21, Fig. 9 p. 20, Table 18 p. 21). MODTRAN, 5(16, Tables 10- 11 p. 17, Table 16 p. 19). SeaWiFS, 5(Table 16 p. 19). Thuiller, 5(16, Tables 14 17 pp. 18 19, Table 17 p. 19). Wehrli, 5(13 16, Table 7 p. 14, Table 9 p. 14, Table 16 p. 19). solar radiation-ba,sed calibration, 5(1- 21). calibration coefficients, 5(13, Tables 5 9 pp. 13 14, Figs. 6 7 p. 15, Tables 10 15 pp. 17-18). reflectance equations, 5(3 6). risks and disadvantages, 5(2). spectral band-pass: analyses, lO(ch. 2). THOR, 3(6, Fig. 4 p. 7); 8(3, 7, Fig. 5 p. 8). corrections, lO(Fig. 4 pp. 9 10, 1(_11, Table 2 p. 11). TOMS ozone, 9(ch. 10). distribution, 10(Fig. 3 p. 8). effects, 10(8 10). response function, lO(Fig. 2 pp. _8). spectral radiance, 4(19 21, Fig. 3 p. 18, Figs. 4-5 p. 20, Tatransfer radiometer, Vol. 1; Vol. 4. bles 11 13 p. 21). see also SXR. description of, 1(1 2, Table 1 p. 2). electrical subsytems, 1(11 14, Table 3 p. 12, Fig. 9 p. 12, Tables 4 5 p. 13, Table 6 p. 14, Table 7 p. 15). instrument design, 1(2 16, Table 2 p. 3, Fig. 1 p. 3, Figs. 3 8 pp. 7-9, Fig. 9 p. 12, Table 3 p. 12, Tables 4 5 p. 13, Table 6 p. 14). mea.surement channels, 1(4 6, Fig. 2 p. 5). measurements, 1(50-52, Tables 17 18 p.52); 4(12 17, Figs. 1-2 pp. 15 16, Table 10 p. 17, Fig. 3 p. 18, 18 19). measurement wavelengths, 7(Table 27 p. 37). parts used, 1(Table A1 p. 55). performance analysis, 1(16 50). relative flux response, 1(38 43, Table 13 p. 39, Fig. 22 pp. 40 42). relative spatial response, 1(28 38, Figs. 16 21 pp. 29 37, Tables 11 12 pp. 38 39). relative spectral response, 1(19 27, Figs. 10-15 pp. 21 26, Tables 9 10 p. 27). signal voltage, l(Table 16 p. 46, Fig. 24 pp. 47-49). spectral radiance, l(Table 14 p. 44, Table 15 p. 45, Fig. 23 p. 45); 4(Table 6 p. 7, Table 10 p. 17, Fig. 3 p. 18, Fig. 4 p. 20). studies, 7(59, 63, Table 55 p. 63, Figs. 36 -38 pp. 64 65). T; Uchlorophyll comparison, 9(72, Figs. 44 45 pp. 72 73). new ozone scheme, 9(69.70, Figs. 41 42 p. 70). ozone comparison, 9(71 72, Fig. 43 p. 71). see also SXR. spectral response, 5(7, Fig. 3 p. 8, 19-21, Fig. 8 p. 19). transfer-to-orbit experiment, Vol. 5. SQM, 7(46 47, Fig. 29 pp. 48 49); 8(13-14, Fig. 13 p. 15, 18 19, 22 24, Fig. 17 p. 23, Table F1 pp. 43-44). SQM-II: see SeaBOARR. see SQM. sun glint contamination, 9(ch. 9). SeaWiFS mask, 9(65). validation, Vol. 9, Vol. 10, Vol. 11. wind speed data, 9(65, Fig. 38 p. 66). sun photometer, 2(25-27, Figs. 16 17 pp.28-30, Table F1 p. 73-77). concept, 5(21). in-flight measurements, 5(22 -25, Fig. 10 p. 24, Table 21 p. 25, Fig. 11 p. 25). reflectance equations, 5(22, Tables 19-20 p. 23). V, W, X, Y, Z overview, 9(ch. 1). product, 9(10-11). 9

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Sea_'lt',. Postlaunch Technical Ret)ort Series Cumulative Index: Vohmms 1 11 GLOSSARY 6S Not an acronym, but an atmospheric photochemical and radiative transfer model. -A- AAOT Acqua Alta Oceanographic Tower AC Alternating Current ACS Average Calibration Slope A/D Analog-to-Digital ADCP Acoustic Doppler Current Profiler AERONET Aerosol Robotic Network AI Absorbing Aerosol Index AI9901 Atlantic Indian Ocean Cruise, 1999 ALOHA A Long-term Oligotropilic Habitat Assessment AMT Atlantic Meridional Transect AMT-1 The First AMT Cruise AMT-2 The Second AMT Cruise AMT-5 The Fifth AMT Cruise AMT-8 The Eighth AMT Cruise AOP Apparent Optical Property AOT Aerosol Optical Thickness ASCII American Standard Code for Information Interchange ASD Analytical Spectral Devices ASTER Advanced Spaceborne Thermal Emission and Reflection Radiometer ASTM American Society for Testing and Materials ATA Ambient Temperature Plate Assembly ATSR Along-Track Scanning Radiometer AU Astronomical Unit AVHRR Advanced Very High Resolution Radiometer -B BAS British Antarctic Survey BATS Bermuda Atlantic Time-series Study BBOP Bermuda BioOptics Project BCD Binary Coded Decimal Ber95 Bering Sea Cruise, 1995 Ber96 Bering Sea Cruise, 1996 BNC Bayonet Nut Connector BNL Brookhaven National Laboratory BOPSII Bio-Optical Profiling System II (second generation) BPA Back Plate Assembly BRDF Bidirectional Reflectance Distribution F_nction BSI Biospherical Instruments, Inc. BSST Bulk Sea Surface Temperature BTBM Bernmda Test Bed Mooring -C CalCOFI California Cooperative Fisheries Institute CANIGO Canary Islands, Azores, Gibraltar Observations CARIACO Carbon Retention in a Colored Ocean CB-MAB Chesapeake Bay-Middle Atlantic Bight CC Cloud Cover CCAR Colorado Center for Astrodynamics Research CCD Charge-Coupled Device CCMS Centre for Coastal and Marine Studies CCN Cloud Condensation Nucleii CCPO Center for Coastal Physical Oceanography c/csc NOAA Coastal Services Center, Charleston, South Carolina 10 CDOM Colored Dissolved Organic Matter CEC Commission of the European Communities CERT Calibration Evaluation and Radiometric Testing C-FALLS Combined (software package for logging) Sea- FALLS data. CHN Carbon-Hydrogen-Nitrogen CHORS Center for Hydro-Optics and Remote Sensing C-mount Not an acronym, but a mounting system for camera lenses. CNR Consiglio Nazionale deUe Ricerche (National Research Council) COARE Coupled Ocean Atmosphere Response Experinlent COASTS Coastal Atmosphere and Sea Time Series CoBOP Coastal Benthic Optical Properties (Bahamas) C-OPS Combined (software package for logging) Sea- OPS data. COTS Commercial Off-The-Shelf CSC Coastal Service Center CSH UNIX "C-shell" (script programming utility) CT Cylindrical Tube or Conductivity and Temperature, depending on usage. CTD Conductivity, Temperature, and Depth CV Coeffacient of Variation CVE Calibration and Validation Element CVT Calibration and Validation Team CZCS Coastal Zone Color Scanner D DAAC Distributed Active Archive Center DMBOSS Dalhousie Buoyant Optical Surface Sensor DalSAS Dalhousie SeaWiFS Aircraft Simulator DARR Data Analysis Round-Robin DAR_94 The first DARR (1994) DAS Data Acquisition Sequence DATA Not an acronym, but a designator for the Satlantic, Inc., series of power and telemetry units. dc Direct Current DC Direct Current DCM Deep Chlorophyll Maximum DCP Data Collection Platform DIO Digital Input-Output DIR Not an acronym, but a designator for the Satlantic, Inc., series of directional units. DMA Dimethylamine DMM Digital Multimeter DMS Dinmthylsulflde DMSP Dimet hylsulphoniopropionate DMSPd Dissolved DMSP DMSPp DMSP within phytoplankton cells DNA Deoxyribonucleic Acid DOC Dissolved Organic Carbon DPA Detector Plate Assembly DU Dobson Unit (of total ozone) DUT Device Under Test DVM Digital Voltmeter E_ E East EcoHAB Ecology of Harmful Algal Blooms EDTA Ethylenediaminetetraacetic Acid EEZ Exclusive Economic Zone

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E.R.FirestoneandS.B.Hooker e-mailElectronicMail EOSEarthObservingSystem EPEntrancePupil EqPacEquatorialPacific ERS-2TheSecondEarthResourcesSatellite EU EuropeanUnion EUCEquatorialUnderCurrent -F- FARCAL Facility for Advanced Radiometric Calibrations FASCAL Facility for Automated Spectroradiometric Calibrations FEL Not an acronym, but a lamp designator. FET Field-Effect Transistor FIGD-IC Flow Injection Gas-Diffusion Coupled to Ion Chromatography FL-Cuba Florida-Cuba (cruise) F-mount Not an acronym, but a mounting system for camera lenses. FORTRAN Formula Translation (computer language) FRRF Fast Repetition Rate Fluorometer FS Field Stop FWHM Full-Width at Half-Maximum --G- GAC Global Area Coverage GF/F Not an acronym, but a specific type of glass fiber filter manufactured by Whatman. GLOBEC Global Ocean System Eco-Dynamics GMT Greenwich Mean Time GoA97 Gulf of Alaska 1997 (cruise) GoCal Gulf of California GOES-8 The Eighth Geostationary Operational Environmental Satellite GOM Gulf of Maine GPIB General Purpose Interface Bus GSE Ground Support Equipment GSFC Goddard Space Flight Center -H- HACR High-Accuracy Cryogenic Radiometer HDF Hierarchical Data Format HMS Her Majesty's Ship HOT Hawaii Optical Time-series HP Hewlett-Packard HPLC High Performance Liquid Chromatography HRPT High Resolution Picture Transmission HTCO High Temperature Catalytic Oxidation IAD Ion-Assisted Beam Deposition IC Integrated Circuit ICESS Institute for Computational Earth System Science ID Inside Diameter IDL International Date Line or Interactive Data Language (depending on usage). IEEE Institute of Electrical and Electronic Engineers IF Interference Filter ILX Not an acronym, but part of the name of ILX Lightwave Corporation of Bozeman, Montana. IMSL International Mathematical and Statistical Libraries IOP Inherent Optical Property IOS (SOC) Institute of Oceanographic Sciences ISDGM Istituto per lo Studio della Dmamica delle Grandi Masse (Italy) ISIC Integrating Sphere Irradiance Collector -J, K JCR (RRS) James Clark Ross JES9906 Japan East Sea Cruise, 1999-06 JGOFS Joint Global Ocean Flux Study JRC Joint Research Centre JUL98NAN A NOAA-sponsored cruise off Nantucket Island, Massachusetts in July 1998. L- LI Level-1 SeaWiFS data product LIA Level-la SeaWiFS data product with navigation information L2 Level-2 SeaWiFS data product L3 Level-3 SeaWiFS data product Lab96 Labrador Sea Cruise, 1996 Lab97 Labrador Sea Cruise, 1997 Lab98 Labrador Sea Cruise, 1998 LAC Local Area Coverage LANDSAT Land Satellite LLR Low Level Radiance LoCNESS Low-Cost NASA Environmental Sampling System LS Light Stability LSB Least Significant Bit LTER Long Term Ecological Research LXR LANDSAT Transfer Radiometer -M- MA Methylamine MBARI Monterey Bay Aquarium Research Institute MBR Maximum Band Ratio MCP Modified Cubic Polynomial MER Marine Environmental Radiometer MERIS Medium Resolution Imaging Spectrometer METEOSAT Meteorological Satellite MF0796 R/V Miller Freeman Cruise, 1996-07 MFR-6 Multi-Filter Rotating Shadow-Band Radiometer miniNESS miniature NASA Environmental Sampling System MISR Multiangle Imaging Spectroradiometer MLML Moss Landing Marine Laboratory MMA Mirror Mount Assembly or Monomethylamine, depending on usage. MOBY Marine Optical Buoy MOCE Marine Optical Characterization Experiment MODIS Moderate Resolution Imaging Spectroradiometer MODTRAN Not an acronym, but an atmospheric photochemical and radiative transfer model. MOS Modular Optoelectronic Scanner (spaceborne sensor) or Marine Optical Spectroradiometer (depending on usage) MSB Most Significant Bit MVDS Multichannel Visible Detector System 11

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SeaWiFS Postlaunch Technical Report Series Cumulative Index: Volumes 1-11 N N North NABENorth Atlantic Bloom Experiment NASANational Aeronautics and Space Administration NCEPNational Center for Environmental Prediction NCSA National Center for Supercomputing Applications NDVINormalized Difference Vegetation Index NECNot an acronym, but the present name for the Nippon Electric Company (Japan) NECCNorth Equatorial Counter Current NEGOMNortheast Gulf of Mexico NEUCNorth Equatorial Undercurrent NIR Near-Infrared NISTNational Institute of Standards and Technology NOAANational Oceanic and Atmospheric Administration NRLNaval Research Laboratory NRSRNormalized Remote Sensing Reflectance O OC2 Ocean Chlorophyll 2 (algorithm) OC2vl OC2 version 1 OC2v2OC2 version 2 OC4 Ocean Chlorophyll 4 (algorithm) OC4v2OC4 version 2 OC4v3OC4 version 3 OC4v4OC4 version 4 OCIOcean Color Irradiance (sensor) OCPOcean Color Profiler OCROcean Color Radiance (sensor) OCTS Ocean Color Temperature Scanner OD Outside Diameter OL Optronic Laboratories, Inc. OPC Optical Plankton Counter OrbView-2 Not an acronym, but the current name for the SeaStar satellite. ORINOCO Orinoco River Plume OSC Orbital Sciences Corporation •-- P. PAR Photosynthetically Available Radiation PC Personal Computer PCR Polymerase Chain Reaction PD Percent Difference PI Principal Investigator P-I Photosynthesis-Irradiance PID Proportional, Integral, Differential PIyMBODy Plymouth Marine Bio-Optical Data Buoy PM Particulate Matter PML Plymouth Marine Laboratory POC Particulate Organic Carbon PRIME Plankton Reactivity in the Marine Environment PROSOPE Productivitg des Syst_mes Ocdaniques Pdlagiques (Productivity of Pelagic Oceanic Systems) PRR Profiling Reflectance Radiometer PRT Platinum Resistance Temperature (sensor) PST Pacific Standard Time PSU Practical Salinity Units PTFE Polyfluorotet raethylene PVC Polyvinylchloride 12 -Q- QC Quality Control _ RAM Random Access Memory RE Ramsden Eyepiece RED9503 Red Tide Cruise, 1995-03 Res94 Resolute Cruise, 1994 Res95-2 Resolute Cruise, 1995 Res96 Resolute Cruise, 1996 Res98 Resolute Cruise, 1998 Relative Humidity RH Relay Lens RL RMS Root Mean Square Root Mean Square Difference RMSD ROAVERRS Research on Ocean-Atmosphere Variability and Ecosystem Response in the Ross Sea Radiometric Observations of the Sea Surface ROSSA and Atmosphere Royal Research Ship RRS RSG (PML) Remote Sensing Group RSMAS Rosenstiel School for Marine and Atmospheric Science RSR Relative Spectral Response RSS Root-Sum Square RTV Room Temperature Vulcanizing RVS (BAS) Research Vessel Services -S S South SACZ Sub-Antarctic Convergence Zone SAI Space Applications Institute SAS Surface Acquisition System SAS-II Satlantie Airborne Sensor Sea-Bird Electronics SBE SBRC Santa Barbara Research Center (Raytheon) SBRS Santa Barbara Remote Sensing (Hughes) SBUV Solar Baekscatter Ultraviolet Radiometer S/CSC Stennis (Space Center) Coastal Services Center SDSU San Diego State University SDY Sequential Day of the Year SeaACE SeaWiFS Atlantic Characterization Experiment SeaBAM SeaWiFS Bio-optical Algorithm Mini-workshop SeaBASS SeaWiFS Bio-Optical Archive and Storage System SeaBOARR SeaWiFS Bio-Optical Algorithm Round-Robin SeaBOARR-98 The First SeaBOARR (1998) SeaBOARR-99 The Second SeaBOARR (1999) SeaBOSS SeaWiFS Buoyant Optical Surface Sensor SeaDAS SeaWiFS Data Analysis System SeaFALLS SeaWiFS Pree-Falling Advanced Light Level Sensors SeaOPS SeaWiFS Optical Profiling System SeaPRISM SeaWiFS Photometer Revision for Incident Surface Measurement SeaSAS SeaWiFS Surface Acquisition System SeaSHADE SeaWiFS Shadow Band (radiometer) SeaStar Not an acronym, but the former name of the satellite on which SeaWiFS was launched, now known as OrbView-2. SeaSURF SeaW'iFS Square Underwater Reference Frame SeaWiFS Sea-viewing Wide Field-of-view Sensor

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E.R. Firestone and S.B. Hooker SECSouth Equatorial Current SEMScanning Electronic Microscopy SEUCSouth Equatorial Undercurrent SIMBIOSSensor Intercomparison and Merger for Biological and Interdisciplinary Oceanic Studies SIOScripps Institution of Oceanography SIRREXSeaWiFS Intercalibration Round-Robin Experiment SIRREX-1The First SIRREX (July 1992) SIRREX-2The Second SIRREX (June 1993) SIRREX-3The Third SIRREX (September 1994) SIRREX-4The Fourth SIRREX (May 1995) SIRREX-5The Fifth SIRREX (July 1996) SISSpherical Integrating Source SMABSouthern Mid-Atlantic Bight SMSRSeaWiFS Multichannel Surface Reference S/N Serial Number SNR Signal-to-Noise Ratio S/NRL Stennis Space Center, Naval Research Laboratory SOC Southampton Oceanography Centre SOMARE Sampling, Observations and Modelling of Atlantic Regional Ecosystems SOOP SeaWiFS Ocean Optics Protocols SOSSTR Ship of Opportunity Sea Surface Temperature Radiometer SPMR SeaWiFS Profiling Multichannel Radiometer SPO SeaWiFS Project Office SQM SeaWiFS Quality Monitor SQM-II The Second Generation SQM SRF Spectral Response Function SS Sea State SSE Size-of-Source Effect SSH Sea Surface Height SSM/I Special Sensor for Microwave/hnaging SSST Sea Surface Skin Temperature SUnSAS SeaWiFS Underway Surface Acquisition System SXR SeaWiFS Transfer Radiometer -T-- TAO Tropical Atmosphere-Ocean TEC Thermoelectric Cooler THOR Three-Headed Optical Recorder TIROS Television Infrared Observation Satellite TMA Trimethylamine TOA Top of the Atmosphere TOC Total Organic Carbon TOGA Tropical Ocean Global Atmosphere TOMS Total Ozone Mapping Spectrometer TOPEX Topography Experiment TOTO Tongue of the Ocean (Bahama.s) TOVS TIROS Operational Vertical Sounder TSG Thermosalinograph TSM Total Suspended Matter TTL Transistor Transistor Logic -U- UA University of Arizona UCSB University of California, Santa Barbara UIC Underway Instrumentation and Control UK United Kingdom UM University of Miami UNC Unified Course UOR Undulating Oceanographic Recorder UPS Uninterruptable Power Supply URL Universal Resource Locator USF University of South Florida USN United States Navy UTC Coordinated Universal Time (definition reflects actual usage instead of following the letters of the acronyn 0 UV Ultraviolet UVA Ultraviolet-A V VAFB Vandenberg Air Force Base VisSCF Visible Spectral Comparator Facility (NIST) VXR Visible Transfer Radiometer --W - W West WETLabs Western Environmental Technology Laboratories (Inc.) WiSPER Wire-Stabilized Profiling Environmental Radiometer WM Spherical Mirror Wedge Section WMO World Meteorological Organization WOCE World Ocean Circulation Experiment WS Wind Speed WSSC Washington Suburban Sanitary Commission XBT Expendable Bathythermograph XOTD Expendable Optical, Temperature, and Depth Y,Z YB71 Not an acronym, but a type of paint for solar diffusers. 13

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SeaWiFS Postlaunch Technical Report REFERENCES --i- Aiken, J., G.F. Moore, and P.M. Holligan, 1992: Remotesensing of oceanic biology in relation to global climate change. J. Phycol., 28, 579-590. , D.G. Cummings, S.W. Gibb, N.W. Rees, R. Woodd- Walker, E.M.S. Woodward, J. Woolfenden, S.B. Hooker, J-F. Berthon, C.D. Dempsey, D.J. Suggett, P. Wood, C. Donlon, N. Gonz_lez-Benitez, I. Huskin, M. Quevedo, R. Barciela-Fernandez, C. de Vargas, and C. McKee, 1998: AMT-5 Cruise Report. NASA Tech. Memo. 1998-206892, Vol. 2, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, Greenbelt, Maryland, 113 pp. , N.W. Rees, S. Hooker, P. Holligan, A. Bale, D. Robins, G. Moore, R. Harris, and D. Pilgrim, 2000: The Atlantic Meridional Transect: overview and synthesis of data. Prog. Oceanogr., 45, 25_312. Ainsworth, E.J., and F.S. Patt, 2000: "Modifications to the TOMS ozone ancillary data interpolation." In: McClain, C.R., E.J. Ainsworth, R.A. Barnes, R.E. Eplee, Jr., F.S. Patt, W.D. 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Prouin, Eds., Proc. SPIE, 2963, 777 789. Stout, D.F., 1976: Handbook of Operational Amplifier Design, M. Kaufman, Ed., McGraw-Hill, New York, 317pp. Strickland, J.D.H., and T.R. Parsons, 1972: A Practical Hand- In: McClain, C.R., R.A. Barnes, R.E. Eplee, Jr., B.A. book of Sea Water Analysis. Fish. Res. Board. Canada, Franz, N.C. Hsu, F.S. Patt, C.M. Pietras, W.D. Robinson, B.D. Schieber, G.M. Schnfidt, M. Wang, S.W. Bailey, and P.J. Werdell, 2000: SeaWiFS Postlaunch Calibration anti Validation Analyses, Part 2. NASA Tech. Memo. 2000- 206892, Vol. It), S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, Greenbelt, Maryland. 12 28. S Sakuma, F., B.C. Johnson, S.F. Biggar, J.J. Butler, J.W. Coop- 310 pp. Subramaniam, A., R.R. Hood, C.W. Brown, E.J. Carpenter, and D.G. Capone, 2001: Detecting 7bichodesmium blooms in SeaWiFS imagery. Deep-Sea Res., (in press). T, U Tanr, D., C. Deroo, P. Duhaut, M. Herman, J.J. Morcrette, J. Perbos, and P.Y. Deschamps, 1990: Description of a computer code to sinmlate the satellite signal in the solar spectrum: The 5S code. Int. J. Remote Sens., 11, 656er, M. Hiramatsu, and K. Suzuki, 1996: EOS AM-1 pre- 668. flight radiometric measurement comparison using the Advanced Spaceborne Thermal Emission and Reflection radiometer (ASTER) visible/near-infrared integrating sphere. SPIE. 2820, 184 196. Saunders, R.D., and J.B. Shumaker, 1977: Optical Radiation Measurements: The 1973 NBS Scale of Spectral Irradiance. NBS Teeh. Note 59_-13, National Bureau of Standards, Gaithersburg, Maryland, 29 pp. , and ---, 1984: Automated radiometric linearity tester. Appl. Opt., 23, 3,5(t4 3,506. Shaw. P-S., B.C. Johnson, S.B. Hooker, and D. Lynch, 1997: The SeaWiFS Quality Monitor a portable field calibration light source. Proc. SPIE, 2963, 772 776. Shettle, E.P., and R.W. Fenn, 1979: Models for the Aerosols of the Lower Atmosphere and the Effects of Humidity Variations on Their Optical Properties. A FGL-TR-79- 0214, U.S. Air Force Geophysics Laboratory, Hanscom Air Force Ba.se. Massachusetts, 94 pp. Siegel, D.A., M.C. O'Brien, J.C. Sorensen, D.A. Konnoff, E.A. Brody, J.L. Mueller, C.O. Davis, W.J. Rhea, and S.B. Hooker, 1995: Results of the SeaWiFS Data Analysis Round-Robin (DARR-94), July 1994. NASA Tech. Memo. 104565, Vol. 26, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, Greenbelt, Maryland, 58 pp. , M. Wang, S. Maritorena, and W. Robinson, 2000: Atmospheric correction of satellite ocean color imagery: the black pixet assumption. Appl. Opt., 39, 3,582 3,591. Slatcr, P.N., and J.M. Palmer, 1991: Solar-diffuser panel and ratioing radiometer approach to satellite sensor on-board calibration. SPIE, 1493, 100 105. Smith, E.V.P., and D.M. Gottlieb, 1974: Solar flux and its variation. Space Sci. Rev., 16, 771 802. Smith, R.C., and K.S. Baker, 1981: Optical properties of the clearest natural waters (200 800 nm). Appl. Opt., 20, 177 184. 22 Tassan, S., and M. Ferrari, 1995: An alternative approach to absorption measurements of aquatic particles retained on filters. Limnol. Oeeanogr., 40, 1,358-1,368. Taylor, B.N., and C.E. Kuyatt, 1994: Guidelines for Evaluating and Expressing the Uncertainty of NIST Measurement Results. NIST Tech. Note 1297, U.S. Department of Commerce, National Institute of Standards and Technology, VVashington, DC, 20 pp. Tegen, i., and A.A. Lacis, 1996: Modeling of particle size distribution and its influence on the radiative properties of mineral dust aerosol, J. Geophys. Res., 101, 19,237 19,244. Thompson, A., and H-M. Chen, 1994: Beamcon III, a linearity measurement instrument for optical detectors. J. Res. NIST, 99, 751-755. Thuillier, G., M. Herse, P.C. Simon, D. Labs, H. Mandel, and D. Gillotay, 1998: Observation of the solar spectral irradiance from 200 to 870 nm during the ATLAS 1 and 2 missions by the SOLSPEC spectrometer. Metrologia, 35, 689-695. Tsai, B.K., and B.C. Johnson, 1998: Radiometric traceability for fundamental measurements: Estimation and evaluation of combined standard uncertainties, Metrologia, 35, 587- 593. V Vance, T.C., J.D. Schumacher, P.J. Stabeno, C.T. Baler, T. Wyllie-Echeverria, C.T. Tynan, R.D. Brodeur, J.M. Napp, K.O. Coyle, M.B. Decker, G.L. Hunt, Jr., D. Stockwell, T.E. Whitledge, M. Jump, and S. Zeeman, 1998: Aquamarine waters recorded for the first time in the Eastern Bering Sea. EOS, 7'9, 121 and 126. Van Neste, A., R.A. Duee, and C. Lee, 1987: Methylamines in the marine atmosphere. Geophys. Res. Lett., 14, 711-714. Verity, P.G., D.K. Stoeeker, M.E. Sieraeki, and J.R. Nelson, 1996: Microzooplankton grazing of primary production at 140°W in the equatorial Pacific. Deep-Sea Res. II, 43, 1,227-1,255.

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E.R.FirestoneandS.B.Hooker Vermote,E.F.,D. Tanre,J.L.Deuze,M. Herman,andJ-J. --, B.A. Franz, and R.A. Barnes, 2000: "Analysis of the Morcrette,1997:Secondsimulationofthesatellitesignalin thesolarspectrum,6S: An Overview. IEEE Trans. Geosci. Remote Sens., 35_ 675-686. Vigroux, E., 1953: Contribution d l'dtude expdrimentalc de l'absorption de l'ozone. Ann. Phys., 8_ 709-762. -W, X- SeaWiFS spectral band-pass effects." In: McClain, CAR., R.A. Barnes, R.E. Eplee, Jr., B.A. Franz, N.C. Hsu, F.S. Patt, C.M. Pietras, W.D. Robinson, B.D. Schieber, G.M. Schnfidt, M. Wang, S.W. Bailey, and P.J. Werdell, 2000: SeaWiFS Postlaunch Calibration and Validation Analyses, Part 2. NASA Tech. Memo. 2000--206892, Vol. 10, S.B. Hooker amt E.R. Firestone, Eds., NASA Goddard Space Flight Center, Greenbelt, Maryland, 6 11. Walker, J.H., R.D. Saunders, and A.T. Hattenburg, 1987a: Waters, K..I., R.C. Smith, and M.R. Lewis, 1990: Avoiding Spectral Radiance Calibrations. NBS Special Publication 250-1, U.S. Department of Commerce, National Institute of Standards and Technology, Washington, DC, 68 pp. Wehrli, C., 1985: Extraterrestrial Solar Spectrum, Publ. 615, , , J.K. Jackson, and D.A. McSparron, 1987b: Spectral Irradiance Calibrations. NBS Special Publication 2,50ship-induced light-field perturbation in the determination of oceanic optical properties, Oceanogr., 3, 18-21. Physikalisch-Meterologisches Observatorium World Radia, tion Center, Davos-Dorf, Switzerland, 23 pp. 20, U.S. Department of Commerce, National Institute of Welschmeyer, N.A., 1994: Fluorometric analysis of chlorophyll- Standards and Technology, V_ra.shington, DC, 37pp., plus Appendices. a in the presence of chlorophyll-b and pheopigments. Limnol. Oceanogr., 39_ 1,985 1,992. --, and A. Thompson, 1994: Improved automated current Woodward, R.H., R.A. Barnes, C.R. McClain, W.E. Esaias, control for standaxd lamps. J. Res. NIST, 99, 255 261. Wang, M., 1999a: Atmospheric correction of ocean color sensors: Computing atmospheric diffuse transmittance, Appl. Opt., 38, 451-455. --, 1999b: A sensitivity study of the SeaWiFS atmospheric _Yight, S.W., S.W..Jeffrey, R.F.C. Mantoura, C.A. Llewellyn, correction algorithm: Effects of spectral band variations. Remote Sens. Environ., 67, 348-359. --, 2000: "The SeaWiFS atmospheric correction algorithm updates." In: McClain, C.R., E.J. Ainsworth, R.A. Barnes, W.L. Barnes, and A.T. Mecherikunnel, 1993: Mo<teling of the SeaWiFS Solar and Lunar Observations. NASA Tcch. Memo. 104566, Vol. 10, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, Greenbelt, Maryland, 26 pp. T. Bjornland, D. Repeta, and N. Welschmeyer, 1991: Improved HPLC method for the analysis of chlorophylls and carotenoids from marine phytoplankton. Mar. Ecol. Prog. Set., 77, 183 196. R.E. Eplee, Jr., F.S. Patt, W.D. Robinson, M. Wang, and Wyatt, C.L., 1978: Radiometric Calibration: Theory and Meth- S.W. Bailey, 2000: SeaWiFS Postlaunch Calibration and Validation Analyses, Part 1. NASA Tech. Memo. 2000 --, 1987: Radiometric System Design, Maenfillan Publishing 206892, Vol. 9, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, Greenbelt, Maryland, 57 63. od.s, Academic Press, New York, 200 pp. Company, New York, 315 pp. Y --, and H.R. Gordon, 1994: A simple, moderately accu- Yang, H., and H.R. Gordon, 1997: Remote sensing of ocean rate, atmospheric correction algorithm for SeaWiFS. Remote Sens. Environ., 50, 231-239. --, and B. Franz, 2000: Comparing the ocean color meacolor: Assessraent of water-leaving radiance bidirectional effects on atmospheric diffuse transmittance. Appl. Opt., 36, 7,887-7,897. surements between MOS and SeaWiFS: A vicarious inter- Yeh, E-n., M. Darzi, and L. Kmnar, 1997: "SeaWiFS stray calibration approach for MOS..IEEE Trans. Geosci. Remote Sens., 38, 184 197. --, and S.W. Bailey, 2000: "Correction of the sun glint contamination on the SeaWiFS aerosol optical thickness retrievals." In: McClain, C.R., E.J. Ainsworth, R.A. Barnes, R.E. Eplee, Jr., F.S. Patt, W.D. Robinson, M. Wang, and S.W. Bailey, 2000: SeaWiFS Postlaunch Calibration and Young, A.T., 198(}: Revised depolarization correclions for at- Validation Analyses, Part 1. NASA Tech. Memo. 2000- 206892, Vol. 9, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Fright Center, Greenbelt, Maryland, 64 68. Zaneveld, J.R.V, J.C. Kitchen, A. Bricaud, and C. Moore, , , C.M. Pietras, and C.R. McClain, 2000: "SeaWiFS aerosol optical thickness match-up analyses." In: Mc- Claim C.R., R.A. Barnes, R.E. Eplee, Jr., B.A. Franz, Zibordi, G., and M. Ferrari, 1995: Instrmnent seff-shading N.C. Hsu, F.S. Patt, C.M. Pietras, W.D. Robinson, B.D. Schieber, G.M. Schmidt, M. Wang, S.W. Bailey, and P.J. Werdell, 2000: SeaWiFS Postlaunch Calibration and Valilight correction algorithm." In: Yeh, E-n., R.A. Barnes, M. Darzi, L. Kumar, E.A. Early, B.C. Johnson, .I.L. Mueller, and C.C. Trees, 1997: Case Studies for SeaWiFS Calibration and Validation, Part 4. NASA Tech. Memo. 10_566, Vol. 41, S.B. Hooker, and E.R. Firestone, Eds., NASA Goddard Space Flight Center, Greenbelt, Maryland, 24- 30. mospheric extinction. Appl. Opt., 19_ 3,427 3A2_. Z 1992: Analysis of in situ spectral absorption meter data. Ocean Optics XI, Proc. SPIE, 1750_ 187 200. in underwater optical measurements: Experimental data. Appl. Opt., 34, 2,750 2,754. dation Analyses, Part 2. NASA Tech. Memo. 2000 206892, --, J.P. Doyle, and S.B. Hooker, 1999: Offshore tower shad- Vol. I0, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, Greenbelt, Maryland, 39 44. ing effects on in-water optical measurements. J. Atmos. Oceanic Tech., 16, 1,767 1,779. 23

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SeaWiFSPostlaunchTechnicalReportSeriesCumulativeIndex:Volumes1-11 THESEAWIFSPOSTLAUNCH TECHNICALREPORTSERIES Vol. 1 Johnson, B.C., J.B. Fowler, and C.L. Cromer, 1998: The Sea- WiFS Transfer Radiometer (SXR). NASA Tech. Memo. 1998-206892, Vol. 1, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, Greenbelt, Maryland, 58 pp. Vol. 2 Aiken, J., D.G. Cummings, S.W. Gibb, N.W. Rees, R. Woodd- Walker, E.M.S. Woodward, J. Woolfenden, S.B. Hooker, Vol. 7_ Johnson, B.C., H.W. Yoon, S.S. Bruce, P-S. Shaw, A. Thompson, S.B. Hooker, R.E. Eplee, Jr., R.A. Barnes, S. Maritorena, and J.L. Mueller, 1999: The Fifth SeaWiFS Intercalibration Round-Robin Experiment (SIRREX-5), July 1996. NASA Tech. Memo. 1999-206892, Vol. 7, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, 75 pp. I/ol. 8 Hooker, S.B., and G. Lazin, 2000: The SeaBOARR-99 Field Campaign. NASA Tech. Memo. 2000-206892, Vol. 8, S.B. J-F. Berthon, C.D. Dempsey, D.J. Suggett, P. Wood, C. Hooker and E.R. Firestone, Eds., NASA Goddard Space Donlon, N. Gonz_,lez-Benitez, I. Huskin, M. Quevedo, R. Barciela-Fernandez, C. de Vargas, and C. MeKee, 1998: AMT-5 Cruise Report. NASA Tech. Memo. 1998-206892, Vol. 2, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, Greenbelt, Maryland, 113 pp. Vol. 3 Hooker, S.B., G. Zibordi, G. Lazin, and S. McLean, 1999: The SeaBOARR-98 Field Campaign. NASA Tech. Memo. 1999 206892, Vol. 3, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, Greenbelt, Maryland, 40 pp. Vol. 4 Johnson, B.C., E.A. Early, R.E. Eplee, Jr., R.A. Barnes, and R.T. Caffrey, 1999: The 1997 Prelaunch Radiometric Calibration of SeaWiFS. NASA Tech. Memo. 1999-206892, Vol. 4, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, Greenbelt, Maryland, 51pp. Vol. 5 Barnes, R.A., R.E. Eplee, Jr., S.F. Biggar, K.J. Thome, E.F. Zalewski, P.N. Slater, and A.W. Hohnes 1999: The Sea- WiFS Solar Radiation-Based Calibration and the Transferto-Orbit Experiment. NASA Tech. Memo. 1999-206892, Vol. 5, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, 28 pp. VoL 6 Firestone, E.R., and S.B. Hooker, 2000: SeaWiFS Postlauneh Technical Report Series Cumulative Index: Volumes 1-5. NASA Tech. Memo. 2000-206892, Vol. 6, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, Greenbelt, Maryland, 14pp. 24 Flight Center, 46 pp. Vol. 9 MeClain, C.R., E.J. Ainsworth, R.A. Barnes, R.E. Eplee, Jr., F.S. Patt, W.D. Robinson, M. Wang, and S.W. Bailey, 2000: SeaWiFS Postlaunch Calibration and Validation Analyses, Part 1. NASA Tech. Memo. 2000-206892, goL 9, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, 82 pp. Vol. 10 McClain, C.R., R.A. Barnes, R.E. Eplee, Jr., B.A. Franz, N.C. Hsu, F.S. Part, C.M. Pietras, W.D. Robinson, B.D. Schieber, G.M. Schmidt, M. Wang, S.W. Bailey, and P.J. Werdell, 2000: SeaWiFS Postlannch Calibration and Validation Analyses, Part 2. NASA Tech. Memo. 2000 206892, Vol. 10, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, 57 pp. Vol. 11 O'Reilly, J.E., and 24 Coauthors, 2000: SeaWiFS Postlaunch Calibration and Validation Analyses, Part 3. NASA Tech. Memo. 2000 206892, Vol. 11, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, 49 pp. Vol. 12 Firestone, E.R., and S.B. Hooker, 2001: SeaWiFS Postlauneh Technical Report Series Cumulative Index: Volumes 1-11. NASA Tech. Memo. 2001 206892, Vol. 12, S.B. Hooker and E.R. Firestone, Eds., NASA Goddard Space Flight Center, Greenbelt, Maryland, 24 pp.

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Public reporting burden for this collection ot information is estimated to average 1 hour per response, including the time for reviewing instructions, searching existing data sources, gathering and maintaining the data needed, and completing and reviewing the collection of information, Send comments regarding this burden estimate or any other aspect of this collection of information, including suggestions for reducing this burden, to Washington Headquarters Services, D)rectorate for Intorrnation Operations and Reports, 1215 Jefferson Davis Highway, Suite 1204, Arlington, VA 22202-4302, and to the Office of Mana_lement and Bud_let, Paperwork Reduction Proiect (0704-0188_, Washir_ton, DC 20503, 1. AGENCY USE ONLY (Leave blank) 2. REPORT DATE May 2001 4. TITLE AND SUBTITLE SeaWiFS Postlaunch Technical Report Series Series Cumulative Code 970.2 Volume 12: The SeaWiFS Postlaunch Technical Report Index: Volumes 1-11 6. AUTHOR(S) Elaine R. Firestone and Stanford B. Hooker Series Editors: Stanford B. Hooker and Elaine R. Firestone 7. PERFORMING ORGANIZATION NAME(S) AND ADDRESS(ES) Laboratory for Hydrospheric Processes Goddard Space Flight Center Greenbelt, Maryland 20771 3. REPORT TYPE AND DATES COVERED Technical Memorandum 5. FUNDING NUMBERS 8. PERFORMING ORGANIZAllON REPORT NUMBER 2001--02422-0 NAME(S) AND ADDRESSEES) 10. SPONSORING/MONITORING 9. SPONSORING/MONITORING AGENCY National Aeronautics and Space Administration Washington, D.C. 20546--O001 11. SUPPLEMENTARY NOTES AGENCY REPORT NUMBER TM--2001-206892, Vol. 12 E.R. Firestone: SAIC General Sciences Corporation, Beltsville, Maryland 12a. DISTRIBUTION/AVAILABiUTY STATEMENT Unclassified-Unlimited Subject Category 48 12b. DISTRIBUTION CODE Report is available from the Center for AeroSpace Information (CASI), 7121 Standard Drive, Hanover, MD 21076-1320; (30 !) 621-0390. 13. ABSTRACT (Maximum 200 words) The Sea-viewing Wide Field-of-view Sensor (SeaWiFS) is the follow-on ocean color instrument to the Coastal Zone Color Scanner (CZCS), which ceased operations in 1986, after an eight-year mission. SeaWiFS was launched on 1 August 1997, onboard the OrbView-2 satellite, built by Orbital Sciences Corporation (OSC). The SeaWiFS Project at the National Aeronautics and Space Administration (NASA) Goddard Space Flight Center (GSFC), undertook the responsibility of documenting all aspects of this mission, which is critical to the ocean color and marine science communities. The start of this documentation was titled the SeaWiFS Technical Report Series, which ended after 43 volumes were published. A follow-on series was started, titled the SeaWiFS Postlaunch Technical Report Series. This particular volume of the so-called "Postlaunch Series" serves as a reference, or guidebook, to the previous 11 volumes and consists of 5 sections including an errata, an addendum, an index to key words and phrases, a list of acronyms used, and a list of all references cited. The editors will publish a cumulative index of this type after every five volumes. 14. SUBJECT TERMS SeaWiFS, Oceanography, Cumulative, Index, Glossary, 17. SECURITY CLASSlRCATION 18. SECURITY CLASSIFICATION OF REPORT OF THIS PAGE Unclassified Unclassified 15. NUMBER OF PAGES References, Postlaunch 24 16. PRICE CODE 19. SECURITY CLASSIFICATION 20. uMrrATION OF ABSTRACT OF ABSTRACT Unclassified Unlimited Prescribed bv ANSI td :I.IA 04-1no

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