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STAQS collected data over cities like Los Angeles, New York City, and Chicago during the summer of 2023. NASA G-V and G-III aircraft were equipped with remote sensing sensors such as GEOstationary Coastal and Air Pollution Events (GEO-CAPE) Airborne Simulator (GCAS), Airborne Visible InfraRed Imaging Spectrometer - Next Generation (AVIRIS-NG), and High Altitude Lidar Observatory (HALO) to measure aerosols and greenhouse gases. These measurements were complemented by ground-based observations from TOLNet and Pandora. 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GCPEx had one deployment during the boreal winter of 2012 across southern Ontario and the northern United States. Multiple aircraft collected remote sensing and in situ measurements of snow and cloud microphysics. Additional ground-based observations were also gathered using several radars, disdrometers, and radiometers. 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KORUS-AQ carried out one deployment over South Korea from April to June 2016. Several aircraft, including NASA's DC-8, were used to collect remote sensing and in situ measurements of aerosols and trace gases. Ground-based and ship-based observations were also gathered. 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of Microphysics and Precipitation for Atlantic Coast-Threatening Snowstorms (IMPACTS) was a NASA-led campaign that investigated how snow bands form and develop in the eastern United States. IMPACTS included three deployments during the winter seasons of 2020, 2022, and 2023. NASA\u2019s ER-2, equipped with various remote sensing tools such as the ER-2 X-band Doppler Radar (EXRAD) and the Conical Scanning Microwave Imaging Radiometer (CoSMIR), along with NASA\u2019s P-3 aircraft, which carried in situ sensors, flew routes to sample frontal systems and their associated snow bands across the Eastern and Midwestern United States. Aircraft measurements were complemented by ground instruments, including rawinsondes launched by NOAA and several universities, rain gauge systems, and the Micro Rain Radar (MRR). 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CARAFE included two deployments in September 2016 and May 2017 across the eastern U.S. NASA\u2019s C-23 Sherpa was equipped with several in situ sensors to collect atmospheric chemistry and meteorological measurements. CARAFE was funded by NASA\u2019s Carbon Monitoring System Program, Goddard Space Flight Center\u2019s Internal Research and Development Program, and NASA HQ\u2019s Earth Science Division.", "start_date": "2016-09-07", "end_date": "2017-05-26", "region_description": "Eastern United States Coast, Mid-Atlantic Region", "focus_phenomena": "Greenhouse gases, carbon, methane, carbon flux, carbon cycle, atmospheric chemistry", "nasa_missions": "", "lead_investigator": "Randy Kawa", "technical_contact": "Gao Chen, Ali Aknan", "funding_agency": "NASA", "funding_program": "GSFC Internal Research and Development, NASA Carbon Monitoring System Program, NASA HQ Earth Science Division", "funding_program_lead": "Kenneth W. 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INTEX-B coordinated with the Megacity Initiative: Local and Global Research Observations (MILARGO) investigation.", "description_short": "The Intercontinental Chemical Transport Experiment - North America (INTEX-NA) was a NASA campaign aimed at studying the transport and transformation of aerosols and trace gases in the atmosphere. INTEX-NA included two deployments during the boreal summer of 2004 (INTEX-A) and the boreal spring of 2006 (INTEX-B). NASA\u2019s DC-8 and several other aircraft were equipped with various in situ and remote sensors to collect atmospheric chemistry and meteorological data over North America and its surrounding oceans. 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WISC-T2000 included a single deployment in Madison, Wisconsin, from February to March 2000. The NASA ER-2 aircraft was equipped with remote-sensing instruments, including the MODIS Airborne Simulator (MAS), the Airborne Multi-angle Imaging Spectrometer (AirMISR), and the Cloud Lidar System (CLS), to collect data on cloud and snow properties and atmospheric conditions in the Upper Midwest for Terra validation. The ER-2 also flew over the Department of Energy (DoE) Atmospheric Radiation Measurements (ARM) User Facility in Oklahoma, where ground-truth measurements were obtained. 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AIIE carried out a single deployment in March-April 2009 over Ottawa, Canada. The National Research Council (NRC) Convair-580 aircraft was equipped with multiple cloud probes to measure the concentration, size, and habit of small ice particles. 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AVE-SESAME was a continuation of NASA\u2019s AVE Program and supported the NCAR-led SESAME campaign. It involved a single deployment across the central United States, with multiple intensive operational periods from April to June 1979. A network of rawinsonde stations was utilized to collect vertical profiles of temperature, humidity, pressure, and wind. 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IceBridge involved multiple deployments from 2009 to 2021 across Greenland, Alaska, Antarctica, and the Arctic Sea. More than 1,000 aircraft surveys were conducted using various remote sensors, such as the Airborne Topographic Mapper (ATM), the Digital Mapping System (DMS), and the Land Vegetation and Ice Sensor (LVIS), to map sea ice and topography in polar coastal regions. 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ABoVE began in 2017 and has completed six deployments during the boreal summer and fall across Alaska and northwestern Canada. Several aircraft have been used with remote sensing instruments such as the Airborne Visible InfraRed Imaging Spectrometer - Next Generation (AVIRIS-NG), Uninhabited Aerial Vehicle Synthetic Aperture Radar (UAVSAR), and Land Vegetation and Ice Sensor (LVIS) to map vegetation across the ABoVE study area. Complementary ground-based measurements from carbon flux towers were also collected. 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HS3 included three deployments from late summer to early fall between 2012 and 2014 across the Gulf of Mexico and the Subtropical Atlantic Ocean. The primary aircraft used were two Global Hawk Uncrewed Aerial Systems (UAS) equipped with remote sensors to gather various storm and environmental data. 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CPEX involved a single deployment over the Gulf of Mexico and the Caribbean Sea from May to June 2017. NASA's DC-8 aircraft gathered profile data on wind, temperature, and water vapor and also provided dual-frequency radar imagery. CPEX was funded by NASA's Atmospheric Dynamics Program.", "start_date": "2017-05-25", "end_date": "2017-06-25", "region_description": "North Atlantic, Gulf of Mexico, Caribbean Oceanic region", "focus_phenomena": "convection, cloud dynamics, cold pools, downdrafts, wind, temperature, moisture, rain, humidity, boundary layer, mesoscale convective systems, tropical cyclones", "nasa_missions": "", "lead_investigator": "Ed Zipser", "technical_contact": "", "funding_agency": "NASA", "funding_program": "Atmospheric Dynamics Program", "funding_program_lead": "Ramesh Kakar", "campaign_doi": "http://dx.doi.org/10.5067/CPEX/DATA101", "ongoing": false, "nasa_led": true, "data_volume": "", "logo": "f45b8173-f57a-49be-9c61-45d64f176ffe", "seasons": ["1e4626e1-1cca-491d-817d-6741bdb56521"], "focus_areas": ["4f11cba8-8970-463b-a0b3-9aaf59cc1629"], "geophysical_concepts": ["1a6ab70d-4bf1-4dab-8600-fbd67327f564", "5c7fa512-4539-48c3-91be-5d69971c9ff3", "01588d13-383c-4f4c-b79b-102da1c24cae", "7dbb57a4-6e32-40e9-acf1-da50347b6bbe", "14051781-0eb5-453c-86d3-60f2c2e19f74"], "gcmd_projects": ["395b0142-af9c-46db-9e32-91c7e464f7db"], "platform_types": ["151675b5-a761-4704-9bd9-06449ca5c8f0", "c4a8ea37-bcad-4575-b0d6-40f6a439da22", "03558f02-e923-4431-bf3f-6c3c03d0ed57", "d8dbe741-4312-4e73-9253-901b486cbca3"], "partner_orgs": [], "repositories": ["488d2add-7e0e-4980-b5aa-f7f3f2527730", "86c43273-ed17-4472-89f7-d7b17184146f"]}, {"uuid": "7490ae29-d258-4a43-b1c9-0fb6e2990317", "aliases": [], "dois": ["5712f024-7d84-4e1a-98db-52db2597470e", "0107d082-a507-4629-84e0-b125bf315042", "60adad59-e3c9-4849-bb96-9d4a37447a46", "8c2ae210-31e3-44eb-babd-1de4d004bf45", "625e7a61-20b3-45d1-9eb5-64d9bac03ca9", "e88b4c82-e6bd-4c05-be6b-1266c058ad66", "b838864e-d6a9-4506-9fea-7a403cd0e864", "6f1951f1-f7cd-44dc-bca5-72d72d79dd6a", "b64ecd9a-e4ba-41a1-8e23-4204f4df218e", "e421240d-1c19-4b35-9fde-b06945b2f2a8"], "deployments": ["e976cc0a-7b06-44b1-b40e-88b95c98a97c"], "websites": ["03143339-058b-4a51-9217-a030d87fd872", "1011bf8f-9285-4fac-bbf8-d611b7d986fc", "8ae3ad63-dbc7-4101-aca7-bd9b00eadb49", "4586ce83-233d-42c1-9c5c-da3eacce2388"], "significant_events": ["55ba4053-62fd-4800-843e-dec48b9108a4"], "iops": ["ea407e06-8fde-46c5-b1c2-fea8f3aa8e36"], "number_ventures": 40, "number_data_products": 10, "number_deployments": 1, "instruments": ["5d70a9f5-cb2a-4e6a-9c2a-ecd2218ad2af", "315de6a9-378c-479c-95d6-709d97bd6554", "8c5a15c6-436c-4842-b3f3-28cade272faf", "e542a5ad-3d51-4136-9852-dc3731c56853", "ae85df2a-5c80-4fd1-acf6-114e6aa7609a", "68356bcb-3b67-4089-8293-239c20b8b3a4"], "platforms": ["80155bc3-2cde-4978-932e-5c69fd13212d", "973491bf-0994-4a99-9e51-635f3f87e81c"], "short_name": "CPEX-AW", "long_name": "Convective Processes Experiment \u2013 Aerosols & Winds", "notes_public": "The base of operations for the NASA DC-8 for the CPEX-AW campaign was out of St. Croix in the U.S. Virgin Islands. St. Croix was chosen after COVID-19 restrictions prevented international travel to Cabo Verde, the base of operations for the European Space Agency (ESA) components of the larger airborne science mission.", "description_short": "The Convective Processes Experiment - Aerosols & Winds (CPEX-AW) was a follow-up to the 2017 CPEX campaign. CPEX-AW focused on post-launch calibration and validation of the Atmospheric Dynamics Mission-Aeolus (ADM-AEOLUS) satellite, as well as studying the dynamics and microphysics of the Saharan Air Layer, African Easterly Waves and Jets, the Tropical Easterly Jet, and deep convection in the Intertropical Convergence Zone (ITCZ). CPEX-AW included a single deployment during fall 2021 from St. Croix, U.S. Virgin Islands. NASA's DC-8 collected airborne remotely sensed measurements of aerosol and wind properties. CPEX-AW was a collaborative effort between NASA and the European Space Agency (ESA).", "start_date": "2021-08-20", "end_date": "2021-10-02", "region_description": "St. Croix, U.S. Virgin Islands; Western Atlantic and Caribbean Sea", "focus_phenomena": "winds, aerosols, convective cloud systems, convective processes, tropospheric winds, African dust, dust transport, air quality", "nasa_missions": "", "lead_investigator": "Ed Zipser, Shuyi Chen", "technical_contact": "Svetla M. Hristova-Veleva", "funding_agency": "NASA", "funding_program": "Science Mission Directorate", "funding_program_lead": "Gail Skofronick Jackson, Aaron Pina", "campaign_doi": "http://dx.doi.org/10.5067/CPEXAW/DATA101", "ongoing": false, "nasa_led": true, "data_volume": "", "logo": "7ed20133-52ce-4a1f-8ec5-38c913cf54f6", "seasons": ["6a0f610e-cf94-453b-a071-232b068c416a", "1e4626e1-1cca-491d-817d-6741bdb56521"], "focus_areas": ["bfc1f1e2-e86a-4b39-bd29-39feedfe79d1", "4f11cba8-8970-463b-a0b3-9aaf59cc1629"], "geophysical_concepts": ["1eeb9fa8-e993-4b99-82b3-28e12466382a", "d27ec267-8941-4b21-909d-5fe45e001fee", "5c7fa512-4539-48c3-91be-5d69971c9ff3"], "gcmd_projects": [], "platform_types": ["151675b5-a761-4704-9bd9-06449ca5c8f0", "c4a8ea37-bcad-4575-b0d6-40f6a439da22", "d8dbe741-4312-4e73-9253-901b486cbca3"], "partner_orgs": ["d96a25a7-b262-4293-a13e-a8179d8f6d1a"], "repositories": ["488d2add-7e0e-4980-b5aa-f7f3f2527730", "86c43273-ed17-4472-89f7-d7b17184146f"]}, {"uuid": "76563b4f-be41-42cf-93a9-7027a18fbafa", "aliases": ["ceb2f953-e83f-4e88-bd8d-5c2502b5a7f0"], "dois": [], "deployments": ["17837b2a-975f-413e-853c-657e9d7f4eb1"], "websites": ["11065a8c-ab30-437a-9fa4-96afc864b732"], "significant_events": [null], "iops": ["75d4df92-b13e-4675-b3df-1ffe826652d3"], "number_ventures": 30, "number_data_products": 0, "number_deployments": 1, "instruments": ["14bd7cd7-ef63-435f-977b-3289e808fefb", "3966c5f5-87b6-4fff-b22c-66c4ab912bc2", "94880304-b980-4842-a07f-f59b2772db7e", "c9dd81ed-656b-4c6a-83b3-9c48442abb21", "98b60a02-c6eb-414e-a837-09aa7f653450", "99697630-c12e-447f-84a9-79764f5f6162", "e542a5ad-3d51-4136-9852-dc3731c56853", "b6b40429-5643-4a9e-afcf-20534edf5ca7", "be05a966-2534-43f8-b9a6-4f8f51cb518c", "545a4f81-bbb6-4822-831b-4df222edb52f", "f21696de-7343-4241-85d2-e08293aa53d3", "515cb67b-890e-473b-aa61-4cdb7dbaf5ba", "e436a0c8-bf09-4897-9111-5b04b39c619c", "2e39ee0f-4d9b-4009-9529-57f8f22479fd", "0c5003db-c1b1-45fb-880a-8982a07a3498", "41dea82f-e33f-401c-9151-980b8820832b", "a3ef511e-47d5-4019-be48-3b77d9ad6102", "f6fc0790-805b-4566-81ed-201127ce0aa6", "82c24a40-588e-43a2-9da6-3ae50fa5f1cb", "f1014508-fc9a-4e5e-8e9c-3e2710804cfa", "a6145be2-38c7-497a-bb00-9a47b5972ae1", "c21147c2-ecb6-4d8e-b23a-10ea136d6fd6", "2d2feee0-3f56-475a-ac2b-05780268d404", "75b319ca-af55-41d2-bafa-e2d52e002cc1", "354ef301-8875-4e02-9d30-b7a0ea5dbfa6", "e48ee0e4-9bdd-4537-a95e-6fab0852aaee", "38acb068-e75a-4db3-982f-9ca368a3d278", "ad97d8a0-1c98-4446-b38d-8b7a83c9d6a8", "c3781f01-89fc-4983-b871-cd3aae2ad29b", "cb06f75b-2f53-4f40-91ce-f75706c6063a", "18a20313-9412-4305-9809-badd2d12141c", "2f2ef67f-5cc7-48d2-98c5-b5b6f883bb20", "17b9c784-dfe5-4f82-a4ab-81330a4d2e45"], "platforms": ["4c473b42-8e87-43ab-9552-9b98ecb602ca", "70ca6522-bc1d-4727-a298-c28cfbc9e5b3", "773a3b53-c3ef-498b-8af7-eb2dc8eea68c", "973491bf-0994-4a99-9e51-635f3f87e81c", "ab5d06b5-933e-4d37-800b-6691e8ce4606", "eafadae9-5e1b-41a4-bf25-3448e2d39b31"], "short_name": "MAST", "long_name": "Monterey Area Ship Track", "notes_public": "", "description_short": "The Monterey Area Ship Track (MAST) experiment was a field investigation led primarily by the Office of Naval Research (ONR). MAST aimed to investigate the effects of ship emissions on the microphysics and radiative properties of marine stratocumulus clouds. It involved one deployment off the California coast in June 1994. Multiple aircraft, including NASA ER-2, conducted in situ and remote observations of aerosol and cloud properties within ship tracks. Additional shipborne and sonde measurements were also collected. 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NASA field campaign focused on measuring how surface properties, clouds, aerosols, and precipitation affect the Arctic summertime surface radiation budget and sea ice melt. ARCSIX included two deployments in Greenland from May to August 2024. The NASA P-3, G-III, and SPEC Learjet aircraft were equipped with both in situ and remote sensing sensors to gather radiation data and analyze aerosol and cloud properties across the Arctic. Additional ground-based observations were conducted at the Thule High Arctic Atmospheric Observatory (THAAO) in Pituffik, Greenland. 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AirMOSS conducted 34 deployments from 2012 to 2015, covering regions in Canada, the US, and Costa Rica. The airborne observations included P-band synthetic aperture radar (SAR) measurements along with carbon and other gas concentrations. AirMOSS was part of the NASA Earth Venture Suborbital 1 (EVS-1) program.", "start_date": "2012-09-18", "end_date": "2015-09-29", "region_description": "North America", "focus_phenomena": "carbon cycle, soil moisture, root zone soil moisture, carbon, carbon dioxide, soil chemistry, ecosystems, land surface", "nasa_missions": "Land & Vegetation, Climate", "lead_investigator": "Mahta Moghaddam", "technical_contact": "", "funding_agency": "NASA", "funding_program": "EVS-1", "funding_program_lead": "", "campaign_doi": "", "ongoing": false, "nasa_led": true, "data_volume": "", "logo": "fac4c9a2-4a3f-4b50-a3b1-1c498df7a8f4", "seasons": ["9f983005-3a6f-430b-9045-a6ac7d1d82ac"], "focus_areas": ["84550819-09b6-471c-ab6f-17e38d822d83", "5f94ba1b-ec12-4df0-87cd-e0715310a9af"], "geophysical_concepts": ["9e7e796a-e9d1-400e-a8f1-db562751b234", "32472be5-7057-4c11-8a31-4dff69740cf0", "3c7414fd-578f-4068-a2e6-3830e0e39c51", "2d0acd22-74c4-4f22-b7ad-208384bd5ee8", "276a5b0e-87c8-42f8-b0cc-fb5581873e98", 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African Monsoon Multidisciplinary Analyses (NAMMA) was a NASA-led campaign that expanded the international African Monsoon Multidisciplinary Analyses (AMMA) project. It aimed to study African easterly waves (AEWs), how the Saharan Air Layer (SAL) affects AEWs, and their potential to become tropical systems. NAMMA occurred between August and September 2006 around the Cape Verde Islands. Four aircraft and numerous ground-based instruments collected data on the SAL and storm environments during tropical cyclone formation. NAMMA was funded by NASA\u2019s Atmospheric Dynamics and Radiation Science programs and NOAA.", "start_date": "2006-08-15", "end_date": "2006-09-15", "region_description": "Cape Verde Islands, Atlantic Ocean", "focus_phenomena": "Hurricanes, African Easterly Waves, mesoscale convective systems, energy budget, aerosols, precipitation, Saharan Air Layer, hurricane development, hurricane evolution", "nasa_missions": "", "lead_investigator": "Edward Zipser", "technical_contact": "", "funding_agency": "NASA", "funding_program": "Atmospheric Dynamics Program, Radiation Science Program", "funding_program_lead": "Ramesh Kakar, Hal Maring", "campaign_doi": "http://dx.doi.org/10.5067/NAMMA/DATA101", "ongoing": false, "nasa_led": true, "data_volume": "", "logo": "62edad43-4c58-4cec-8cb2-e4798ba2e2d0", "seasons": ["6a0f610e-cf94-453b-a071-232b068c416a", "1e4626e1-1cca-491d-817d-6741bdb56521", "ba9407d6-cd89-4364-906f-9d78a0c93858"], "focus_areas": ["205df828-b591-4c02-878c-5758a5e50b80", "4f11cba8-8970-463b-a0b3-9aaf59cc1629"], "geophysical_concepts": ["1eeb9fa8-e993-4b99-82b3-28e12466382a", "7dbb57a4-6e32-40e9-acf1-da50347b6bbe", "14051781-0eb5-453c-86d3-60f2c2e19f74"], "gcmd_projects": ["3b2d4061-b24b-435e-a22f-8a7c1f9ff4f6"], "platform_types": ["151675b5-a761-4704-9bd9-06449ca5c8f0", "e5a44f55-b484-49a1-88a7-2a0692897a7a", "efc2a2e0-d51d-4f45-b8cd-801a649db07d", "c4a8ea37-bcad-4575-b0d6-40f6a439da22", "91c8a806-4de7-43fb-be61-029c18933fc0", "eb629f8d-a0ac-4c5a-b1db-60426cbf1d6a", "da93ebbb-8c5d-4feb-b94c-8aa10eb3c09c", "d8dbe741-4312-4e73-9253-901b486cbca3"], "partner_orgs": ["3b9de7bc-f21f-4293-b764-d3dd85160b35"], "repositories": ["86c43273-ed17-4472-89f7-d7b17184146f"]}, {"uuid": "b013a3cb-3313-40aa-8e59-4a0a9de6e566", "aliases": ["977ffa3b-2b40-442d-92d8-d5182512c896", "a648d18e-e115-4f9e-950d-525759d3f9dd"], "dois": [], "deployments": ["570cd40a-c3ed-400c-9bd3-1580ab16c08a"], "websites": ["b1e7ab38-4c14-4d1d-9f75-35e537c5fdb6", "7321c9d9-c64d-40d5-857e-0ddaef0f3b03", "c2757234-a30b-4395-ae4f-52871f30aeba"], "significant_events": ["2f5449a5-c010-42db-b4a6-f30a793567f0", "33034954-485b-4e93-9155-de3e52bfbc85"], "iops": ["96df5391-f3f4-4fd9-a009-6ef7f3e467ed"], "number_ventures": 37, "number_data_products": 0, "number_deployments": 1, "instruments": ["0f42f2ed-4d3d-4ac1-839e-e903a9b67144", "ec7f9f36-fd71-4949-8346-8bae81ad2d23", "5c9f20ee-e23d-4785-ade1-b4421e23eec4", "f21696de-7343-4241-85d2-e08293aa53d3", "18a20313-9412-4305-9809-badd2d12141c", "6e2077ed-845e-4951-888e-dc6d5340ef41", "5f186f90-e1e4-46f3-9261-21fd4b071002", "b923ebdb-d7bd-4a30-ba9f-9ebf7cca9154", "b896227b-e60e-40b7-8275-6abd2ecf8745", "67aeda5f-bd88-4622-a261-00c29f56a7c1", "878d26b4-c670-44ef-989a-380d9f9d82c9", "c720f935-35a4-4c5a-a53f-8e4800f55632", "6cbc8fb7-e2f8-4247-b9fc-ad89aa58806a", "6d901414-7208-4084-af7d-96043a0decf0", "e542a5ad-3d51-4136-9852-dc3731c56853", "c187b6ff-f626-42ad-9895-6ee141f69689"], "platforms": ["5b641473-5c2e-48f2-adca-76a641966da7", "7867ce72-1e68-47a1-9aa7-99656b9356bc", "973491bf-0994-4a99-9e51-635f3f87e81c"], "short_name": "MidCiX", "long_name": "Middle Latitude Cirrus Experiment", "notes_public": "", "description_short": "The WB-57 Middle Latitude Cirrus Experiment (MidCiX) was a NASA field investigation focused on analyzing the microphysical properties of cirrus clouds to improve satellite cloud property retrievals. MidCiX conducted one deployment over the south-central United States from April to May 2004. The NASA WB-57 aircraft was equipped with multiple in situ cloud probes to measure particle size distribution, mass, and habit. The aircraft flew near the Southern Great Plains (SGP) Atmospheric Radiation Measurement (ARM) central facility to collect correlative ground-based measurements. MidCiX was a collaborative effort with the Department of Energy (DoE) and was funded through NASA\u2019s Radiation Sciences program.", "start_date": "2004-04-14", "end_date": "2004-05-15", "region_description": "South-central United States", "focus_phenomena": "cirrus clouds, cloud properties, cloud microphysics, cloud particle mass, cloud particle size distribution, particle habit, ice water content, water vapor", "nasa_missions": "Aqua, Terra", "lead_investigator": "Gerald Mace", "technical_contact": "", "funding_agency": "NASA", "funding_program": "Radiation Sciences Program", "funding_program_lead": "Hal Maring", "campaign_doi": "", "ongoing": false, "nasa_led": true, "data_volume": "", "logo": null, "seasons": ["3a6f6d82-cbcc-40af-868e-7b68e6761e05"], "focus_areas": ["4f11cba8-8970-463b-a0b3-9aaf59cc1629"], "geophysical_concepts": ["5c7fa512-4539-48c3-91be-5d69971c9ff3"], "gcmd_projects": [], "platform_types": ["151675b5-a761-4704-9bd9-06449ca5c8f0", "e5a44f55-b484-49a1-88a7-2a0692897a7a", "c4a8ea37-bcad-4575-b0d6-40f6a439da22", "eb629f8d-a0ac-4c5a-b1db-60426cbf1d6a"], "partner_orgs": ["75f19286-8e1b-417c-8823-8c56852043cd"], "repositories": ["181c995e-c1e5-4468-89ae-ca73b76a0982"]}, {"uuid": "4d744768-dd89-4e64-8dec-6768e1598784", "aliases": [], "dois": ["d05a0f67-e609-469f-8fc1-6100154e39fb", "bff2070f-a46b-4743-983c-c4cbea9545b9", "e27ceff5-284c-438d-92bd-8edc6eea07a7", "0ed9c922-f761-4222-b98b-a917cfa4e8ed", "2e4b87b5-b53c-49ff-ac7c-8afff7b60926", "382ea60b-67a8-402a-8a09-fb8d919532f3", "93d1c874-c1ec-4d56-b6e1-bd4c14378955", "5bc58e28-04bc-4223-a601-9d43859a5b35", "ab10fb3d-508d-44ac-899c-05571b310db7", "350ef0e7-1eca-4087-8b82-0588fe9cff98", "572037da-df69-477c-9d3e-959f190e8db2", "bf1b7683-7d33-491b-9450-5f5853bc1ba8", "f4eedaac-e157-4972-afe2-4a0e111c395e", "b37eb95f-cf1e-4f13-b909-5f6794566b41", "e32392ba-b9e7-46c3-9a5f-4bde0a550ac3"], "deployments": ["4f698062-961e-4875-84d4-c76e91241dcf"], "websites": ["d48bf3ba-fc76-452b-a021-7c6a71c927d2", "a8712db9-2247-43a9-9018-b39661ec526a", "405134be-71d9-4bef-8577-812dab3e1ca2", "3160081a-96ed-4e6a-b82f-9ba878167e89"], "significant_events": ["5208d9b6-1c9d-4f8f-8612-954266a1e9d5", "9afc634f-4722-46cd-87e1-5875f815342f", "9d780012-442b-4c5b-ac1e-0a1c13f12a69"], "iops": ["515bce95-1ce8-44bb-9fa1-9714103d6ba2"], "number_ventures": 55, "number_data_products": 15, "number_deployments": 1, "instruments": ["b923ebdb-d7bd-4a30-ba9f-9ebf7cca9154", "9e1bfeaa-def6-45e5-95a9-ded31bba7cb5", "517da2a6-d944-4aa8-87e5-486468f1357e", "1aa75017-f995-41de-bf03-d2dcd97172a7", "c9dd81ed-656b-4c6a-83b3-9c48442abb21", "0c5003db-c1b1-45fb-880a-8982a07a3498", "ab658c86-e5bb-4b78-a86c-0a5d7f13e457", "e9c8c202-fd04-4658-924e-64f41c9ccfd5", "d550d30e-a3d8-4e38-96f9-d478486cec53", "b29f2871-ea84-4f61-bdde-af93286adef0", "a5113e73-97cb-4fee-a36e-55db657f5adc", "fe2f2222-dcec-408c-92d6-094aeb0d2e2c", "a6145be2-38c7-497a-bb00-9a47b5972ae1", "4a8594e1-6ff4-4a7c-bad6-b21fffd528d8", "76fb0f86-8b5f-4911-9c88-bc67b93a81bf", "95c0cfb4-4498-4f3c-961e-12bf3aa01a56", "4db8b53e-f506-4a3c-a662-d998b9b0f93c", "d7fee8a1-b50a-4b64-9a65-41689d6b9c3e", "8637ff71-d3e6-4815-9a03-b1ef69abbfe4", "3465c20d-bddc-4896-9617-834cacc67ecd", "0fe71628-9deb-4aba-8c28-34ffbcd9ab94", "f9a377f8-01cc-4054-8c8a-cc0ea8366ff3", "de0aef5f-f59a-40c0-818c-25c7017f3eb7", "7265a562-2fc1-4572-a678-eef5c2a9a140", "effbcc6e-7b60-4194-87e4-3050975d1dba", "53c90600-a631-4f48-94b6-fae85d3f156e", "be05a966-2534-43f8-b9a6-4f8f51cb518c", "19927e8e-87a1-4484-90d3-8a6269341e04"], "platforms": ["23f4e196-9176-47b4-802c-e37583aecf8f", "429d9328-dd8c-4513-96e8-97bda333c76e", "7867ce72-1e68-47a1-9aa7-99656b9356bc", "9ddb9532-474b-45e1-b4da-0109b70fe348", "eafadae9-5e1b-41a4-bf25-3448e2d39b31"], "short_name": "PACE-PAX", "long_name": "Plankton, Aerosol, Cloud, ocean Ecosystem Postlaunch Airborne eXperiment", "notes_public": "", "description_short": "The Plankton, Aerosol, Cloud, ocean Ecosystem Postlaunch Airborne eXperiment (PACE-PAX) was a NASA field campaign aimed at supporting data validation for the PACE satellite. PACE-PAX included a single deployment in September 2024 over Southern and Central California and nearby coastal regions. The NASA ER-2 was equipped with remote sensing sensors, and the CIRPAS Twin Otter had in situ sensors to collect measurements of ocean, aerosol, and cloud properties. Additional ground-based and shipborne measurements were also gathered. PACE-PAX was funded by NASA\u2019s Ocean Biology and Biogeochemistry Program.", "start_date": "2024-08-28", "end_date": "2024-09-30", "region_description": "Southern and Central California", "focus_phenomena": "ocean color, aerosols, clouds, ocean biogeochemistry, ocean ecology, aerosol properties, cloud properties, ocean properties, satellite validation", "nasa_missions": "PACE", "lead_investigator": "Kirk Knobelspiesse", "technical_contact": "Gao Chen, Michael Shook, Chris Proctor, Inia Soto Ramos", "funding_agency": "NASA", "funding_program": "Ocean Biology and Biogeochemistry Program", "funding_program_lead": "Lauren Lorenzoni", "campaign_doi": "10.5067/SUBORBITAL/PACE-PAX/DATA001", "ongoing": false, "nasa_led": true, "data_volume": "", "logo": "a6ccae5a-b6d0-4494-98c7-44382e68739d", "seasons": ["6a0f610e-cf94-453b-a071-232b068c416a"], "focus_areas": ["bfc1f1e2-e86a-4b39-bd29-39feedfe79d1", "84550819-09b6-471c-ab6f-17e38d822d83", "630b2833-ac8c-42bb-ac7f-525f5d1d6036"], "geophysical_concepts": ["1eeb9fa8-e993-4b99-82b3-28e12466382a", "32472be5-7057-4c11-8a31-4dff69740cf0", "5c7fa512-4539-48c3-91be-5d69971c9ff3", "d4bca0e9-4ee7-4aa2-861e-2b63e993d362"], "gcmd_projects": [], "platform_types": ["151675b5-a761-4704-9bd9-06449ca5c8f0", "c4a8ea37-bcad-4575-b0d6-40f6a439da22", "91c8a806-4de7-43fb-be61-029c18933fc0", "eb629f8d-a0ac-4c5a-b1db-60426cbf1d6a", "da93ebbb-8c5d-4feb-b94c-8aa10eb3c09c", "d8dbe741-4312-4e73-9253-901b486cbca3", "6fd35700-e15d-49e9-bf3f-6d7c4db7b82e", "31abeb07-3f68-49f8-a2d7-eece09289fa5"], "partner_orgs": ["3b9de7bc-f21f-4293-b764-d3dd85160b35", "b61fb4e1-9611-4172-8605-00a2b9a00349"], "repositories": ["488d2add-7e0e-4980-b5aa-f7f3f2527730"]}, {"uuid": "505e9f84-cc5e-45fc-802c-c4c098a573c2", "aliases": [], "dois": [], "deployments": ["cad1d9d4-bdd6-45e9-a1c6-f4ff8784e012"], "websites": ["31899c42-2c45-43a4-b90b-c4fd397bfe7c", "dafcadb7-6202-419c-a4a1-8d612a3578ae"], "significant_events": [null], "iops": ["17a53d31-f343-4b67-afd5-3bda3fac9354"], "number_ventures": 9, "number_data_products": 0, "number_deployments": 1, "instruments": ["e621e71a-0439-4561-8d12-13237a37896a", "e9c8c202-fd04-4658-924e-64f41c9ccfd5", "e97bef79-a32b-4e97-b076-177e2c95baad", "7d057cb7-485c-4fb1-8067-40a0bfa7553f", "75b319ca-af55-41d2-bafa-e2d52e002cc1", "be05a966-2534-43f8-b9a6-4f8f51cb518c"], "platforms": ["42118130-85b2-47d5-911b-afe2ef02fe88"], "short_name": "CASIE", "long_name": "Characterization of Arctic Sea Ice Experiment", "notes_public": "", "description_short": "The Characterization of Arctic Sea Ice Experiment (CASIE) was a field investigation that examined sea ice roughness and breakup, and how remote sensing can be used to monitor these phenomena. CASIE conducted a single deployment off the coast of Svalbard during the boreal summer of 2009. Sea ice was analyzed using remote sensing instruments on an uncrewed aerial vehicle, with satellite data supplementing these measurements. 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