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MyAssays Ltd desktop pro software
Desktop Pro Software, supplied by MyAssays Ltd, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/desktop+pro+software/pmc07060271__42003_2020_835_MOESM4_ESM-9-17-19?v=MyAssays+Ltd
Average 90 stars, based on 1 article reviews
desktop pro software - by Bioz Stars, 2026-07
90/100 stars

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( a ) The result of AHP assessment; ( b ) Comprehensive susceptibility map based on the AHP assessment. (This figure was created using ArcGIS Pro software. Desktop GIS Software|Mapping <t>Analytics|ArcGIS</t> Pro (esri.com)).
Desktop Gis Software|Mapping Analytics|Arcgis Pro, supplied by Esri inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Location of the study area (This figure was created using <t>ArcGIS</t> Pro software. <t>Desktop</t> <t>GIS</t> Software | Mapping Analytics | ArcGIS Pro (esri.com)) (Map image is the intellectual property of Esri and is used herein under license. Copyright © 2020 Esri and its licensors. All rights reserved. Esri, NASA, NGA, USGS, Sources: Esri, USGS, Esri, © OpenStreetMap contributors, TomTom, Garmin, FAO, NOAA, USGS.)
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Location of the study area (This figure was created using <t>ArcGIS</t> Pro software. <t>Desktop</t> <t>GIS</t> Software | Mapping Analytics | ArcGIS Pro (esri.com)) (Map image is the intellectual property of Esri and is used herein under license. Copyright © 2020 Esri and its licensors. All rights reserved. Esri, NASA, NGA, USGS, Sources: Esri, USGS, Esri, © OpenStreetMap contributors, TomTom, Garmin, FAO, NOAA, USGS.)
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Location of the study area in northwestern China. ( a ) Extent of Qin and Han Great Wall segments across northern China. ( b ) Site locations in Gansu and Xinjiang: (1) Han Dynasty Great Wall segment; (2) Beacon tower near Site 1; (3) Beacon tower near Guazhou town; (4) Xijiandun Beacon Tower; (5) Cang Ting Sui Beacon Tower at Yumenguan; (6) Great Wall Heritage Site; (7) Majuanwan Great Wall segments; (8) Milan Castle Heritage Site; (9) Buddha Tower, south end of the Yingpan City Heritage Site; (10) City wall, north end of the Yingpan City Heritage Site; (11) Yakelun Beacon Tower; (12) Sunji Beacon Tower; (13) Tahaqi Beacon Tower; (14) Sishilidadun Beacon Tower. Circles date to the Han Dynasty, hexagons to the Jin Dynasty, squares to the Tang Dynasty, and triangles to the Song Dynasty. Maps were created using <t>ArcGIS</t> Pro desktop <t>GIS</t> software developed by Esri.
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Location of the study area in northwestern China. ( a ) Extent of Qin and Han Great Wall segments across northern China. ( b ) Site locations in Gansu and Xinjiang: (1) Han Dynasty Great Wall segment; (2) Beacon tower near Site 1; (3) Beacon tower near Guazhou town; (4) Xijiandun Beacon Tower; (5) Cang Ting Sui Beacon Tower at Yumenguan; (6) Great Wall Heritage Site; (7) Majuanwan Great Wall segments; (8) Milan Castle Heritage Site; (9) Buddha Tower, south end of the Yingpan City Heritage Site; (10) City wall, north end of the Yingpan City Heritage Site; (11) Yakelun Beacon Tower; (12) Sunji Beacon Tower; (13) Tahaqi Beacon Tower; (14) Sishilidadun Beacon Tower. Circles date to the Han Dynasty, hexagons to the Jin Dynasty, squares to the Tang Dynasty, and triangles to the Song Dynasty. Maps were created using <t>ArcGIS</t> Pro desktop <t>GIS</t> software developed by Esri.
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Location of the study area in northwestern China. ( a ) Extent of Qin and Han Great Wall segments across northern China. ( b ) Site locations in Gansu and Xinjiang: (1) Han Dynasty Great Wall segment; (2) Beacon tower near Site 1; (3) Beacon tower near Guazhou town; (4) Xijiandun Beacon Tower; (5) Cang Ting Sui Beacon Tower at Yumenguan; (6) Great Wall Heritage Site; (7) Majuanwan Great Wall segments; (8) Milan Castle Heritage Site; (9) Buddha Tower, south end of the Yingpan City Heritage Site; (10) City wall, north end of the Yingpan City Heritage Site; (11) Yakelun Beacon Tower; (12) Sunji Beacon Tower; (13) Tahaqi Beacon Tower; (14) Sishilidadun Beacon Tower. Circles date to the Han Dynasty, hexagons to the Jin Dynasty, squares to the Tang Dynasty, and triangles to the Song Dynasty. Maps were created using <t>ArcGIS</t> Pro desktop <t>GIS</t> software developed by Esri.
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Location of the study area in northwestern China. ( a ) Extent of Qin and Han Great Wall segments across northern China. ( b ) Site locations in Gansu and Xinjiang: (1) Han Dynasty Great Wall segment; (2) Beacon tower near Site 1; (3) Beacon tower near Guazhou town; (4) Xijiandun Beacon Tower; (5) Cang Ting Sui Beacon Tower at Yumenguan; (6) Great Wall Heritage Site; (7) Majuanwan Great Wall segments; (8) Milan Castle Heritage Site; (9) Buddha Tower, south end of the Yingpan City Heritage Site; (10) City wall, north end of the Yingpan City Heritage Site; (11) Yakelun Beacon Tower; (12) Sunji Beacon Tower; (13) Tahaqi Beacon Tower; (14) Sishilidadun Beacon Tower. Circles date to the Han Dynasty, hexagons to the Jin Dynasty, squares to the Tang Dynasty, and triangles to the Song Dynasty. Maps were created using <t>ArcGIS</t> Pro desktop <t>GIS</t> software developed by Esri.
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Location of the study area in northwestern China. ( a ) Extent of Qin and Han Great Wall segments across northern China. ( b ) Site locations in Gansu and Xinjiang: (1) Han Dynasty Great Wall segment; (2) Beacon tower near Site 1; (3) Beacon tower near Guazhou town; (4) Xijiandun Beacon Tower; (5) Cang Ting Sui Beacon Tower at Yumenguan; (6) Great Wall Heritage Site; (7) Majuanwan Great Wall segments; (8) Milan Castle Heritage Site; (9) Buddha Tower, south end of the Yingpan City Heritage Site; (10) City wall, north end of the Yingpan City Heritage Site; (11) Yakelun Beacon Tower; (12) Sunji Beacon Tower; (13) Tahaqi Beacon Tower; (14) Sishilidadun Beacon Tower. Circles date to the Han Dynasty, hexagons to the Jin Dynasty, squares to the Tang Dynasty, and triangles to the Song Dynasty. Maps were created using <t>ArcGIS</t> Pro desktop <t>GIS</t> software developed by Esri.
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Location of the study area in northwestern China. ( a ) Extent of Qin and Han Great Wall segments across northern China. ( b ) Site locations in Gansu and Xinjiang: (1) Han Dynasty Great Wall segment; (2) Beacon tower near Site 1; (3) Beacon tower near Guazhou town; (4) Xijiandun Beacon Tower; (5) Cang Ting Sui Beacon Tower at Yumenguan; (6) Great Wall Heritage Site; (7) Majuanwan Great Wall segments; (8) Milan Castle Heritage Site; (9) Buddha Tower, south end of the Yingpan City Heritage Site; (10) City wall, north end of the Yingpan City Heritage Site; (11) Yakelun Beacon Tower; (12) Sunji Beacon Tower; (13) Tahaqi Beacon Tower; (14) Sishilidadun Beacon Tower. Circles date to the Han Dynasty, hexagons to the Jin Dynasty, squares to the Tang Dynasty, and triangles to the Song Dynasty. Maps were created using <t>ArcGIS</t> Pro desktop <t>GIS</t> software developed by Esri.
World Geocoding Service In Arc Gis Pro Desktop Software, supplied by Esri inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Location of the study area in northwestern China. ( a ) Extent of Qin and Han Great Wall segments across northern China. ( b ) Site locations in Gansu and Xinjiang: (1) Han Dynasty Great Wall segment; (2) Beacon tower near Site 1; (3) Beacon tower near Guazhou town; (4) Xijiandun Beacon Tower; (5) Cang Ting Sui Beacon Tower at Yumenguan; (6) Great Wall Heritage Site; (7) Majuanwan Great Wall segments; (8) Milan Castle Heritage Site; (9) Buddha Tower, south end of the Yingpan City Heritage Site; (10) City wall, north end of the Yingpan City Heritage Site; (11) Yakelun Beacon Tower; (12) Sunji Beacon Tower; (13) Tahaqi Beacon Tower; (14) Sishilidadun Beacon Tower. Circles date to the Han Dynasty, hexagons to the Jin Dynasty, squares to the Tang Dynasty, and triangles to the Song Dynasty. Maps were created using <t>ArcGIS</t> Pro desktop <t>GIS</t> software developed by Esri.
Desktop Pro Software, supplied by MyAssays Ltd, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/desktop+pro+software/pmc07060271__42003_2020_835_MOESM4_ESM-9-17-19?v=MyAssays+Ltd
Average 90 stars, based on 1 article reviews
desktop pro software - by Bioz Stars, 2026-07
90/100 stars
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Image Search Results


( a ) The result of AHP assessment; ( b ) Comprehensive susceptibility map based on the AHP assessment. (This figure was created using ArcGIS Pro software. Desktop GIS Software|Mapping Analytics|ArcGIS Pro (esri.com)).

Journal: Scientific Reports

Article Title: Susceptibility assessment of multi-hazards using random forest—back propagation neural network coupling model: a Hangzhou city case study

doi: 10.1038/s41598-024-71053-7

Figure Lengend Snippet: ( a ) The result of AHP assessment; ( b ) Comprehensive susceptibility map based on the AHP assessment. (This figure was created using ArcGIS Pro software. Desktop GIS Software|Mapping Analytics|ArcGIS Pro (esri.com)).

Article Snippet: Desktop GIS Software|Mapping Analytics|ArcGIS Pro (esri.com)).

Techniques: Software

Location of the study area (This figure was created using ArcGIS Pro software. Desktop GIS Software | Mapping Analytics | ArcGIS Pro (esri.com)) (Map image is the intellectual property of Esri and is used herein under license. Copyright © 2020 Esri and its licensors. All rights reserved. Esri, NASA, NGA, USGS, Sources: Esri, USGS, Esri, © OpenStreetMap contributors, TomTom, Garmin, FAO, NOAA, USGS.)

Journal: Scientific Reports

Article Title: Susceptibility assessment of multi-hazards using random forest—back propagation neural network coupling model: a Hangzhou city case study

doi: 10.1038/s41598-024-71053-7

Figure Lengend Snippet: Location of the study area (This figure was created using ArcGIS Pro software. Desktop GIS Software | Mapping Analytics | ArcGIS Pro (esri.com)) (Map image is the intellectual property of Esri and is used herein under license. Copyright © 2020 Esri and its licensors. All rights reserved. Esri, NASA, NGA, USGS, Sources: Esri, USGS, Esri, © OpenStreetMap contributors, TomTom, Garmin, FAO, NOAA, USGS.)

Article Snippet: Desktop GIS Software | Mapping Analytics | ArcGIS Pro (esri.com)) (Map image is the intellectual property of Esri and is used herein under license.

Techniques: Software

( a ) The result of AHP assessment; ( b ) Comprehensive susceptibility map based on the AHP assessment. (This figure was created using ArcGIS Pro software. Desktop GIS Software|Mapping Analytics|ArcGIS Pro (esri.com)).

Journal: Scientific Reports

Article Title: Susceptibility assessment of multi-hazards using random forest—back propagation neural network coupling model: a Hangzhou city case study

doi: 10.1038/s41598-024-71053-7

Figure Lengend Snippet: ( a ) The result of AHP assessment; ( b ) Comprehensive susceptibility map based on the AHP assessment. (This figure was created using ArcGIS Pro software. Desktop GIS Software|Mapping Analytics|ArcGIS Pro (esri.com)).

Article Snippet: Desktop GIS Software | Mapping Analytics | ArcGIS Pro (esri.com)) (Map image is the intellectual property of Esri and is used herein under license.

Techniques: Software

Comprehensive susceptibility map using overlay evaluation method. (This figure was created using ArcGIS Pro software. Desktop GIS Software | Mapping Analytics | ArcGIS Pro (esri.com)) (Map image is the intellectual property of Esri and is used herein under license. Copyright © 2020 Esri and its licensors. All rights reserved. Esri, NASA, NGA, USGS, Sources: Esri, USGS, Esri, © OpenStreetMap contributors, TomTom, Garmin, FAO, NOAA, USGS.)

Journal: Scientific Reports

Article Title: Susceptibility assessment of multi-hazards using random forest—back propagation neural network coupling model: a Hangzhou city case study

doi: 10.1038/s41598-024-71053-7

Figure Lengend Snippet: Comprehensive susceptibility map using overlay evaluation method. (This figure was created using ArcGIS Pro software. Desktop GIS Software | Mapping Analytics | ArcGIS Pro (esri.com)) (Map image is the intellectual property of Esri and is used herein under license. Copyright © 2020 Esri and its licensors. All rights reserved. Esri, NASA, NGA, USGS, Sources: Esri, USGS, Esri, © OpenStreetMap contributors, TomTom, Garmin, FAO, NOAA, USGS.)

Article Snippet: Desktop GIS Software | Mapping Analytics | ArcGIS Pro (esri.com)) (Map image is the intellectual property of Esri and is used herein under license.

Techniques: Software

Location of the study area in northwestern China. ( a ) Extent of Qin and Han Great Wall segments across northern China. ( b ) Site locations in Gansu and Xinjiang: (1) Han Dynasty Great Wall segment; (2) Beacon tower near Site 1; (3) Beacon tower near Guazhou town; (4) Xijiandun Beacon Tower; (5) Cang Ting Sui Beacon Tower at Yumenguan; (6) Great Wall Heritage Site; (7) Majuanwan Great Wall segments; (8) Milan Castle Heritage Site; (9) Buddha Tower, south end of the Yingpan City Heritage Site; (10) City wall, north end of the Yingpan City Heritage Site; (11) Yakelun Beacon Tower; (12) Sunji Beacon Tower; (13) Tahaqi Beacon Tower; (14) Sishilidadun Beacon Tower. Circles date to the Han Dynasty, hexagons to the Jin Dynasty, squares to the Tang Dynasty, and triangles to the Song Dynasty. Maps were created using ArcGIS Pro desktop GIS software developed by Esri.

Journal: Scientific Reports

Article Title: Ancient Great Wall building materials reveal environmental changes associated with oases in northwestern China

doi: 10.1038/s41598-022-27071-4

Figure Lengend Snippet: Location of the study area in northwestern China. ( a ) Extent of Qin and Han Great Wall segments across northern China. ( b ) Site locations in Gansu and Xinjiang: (1) Han Dynasty Great Wall segment; (2) Beacon tower near Site 1; (3) Beacon tower near Guazhou town; (4) Xijiandun Beacon Tower; (5) Cang Ting Sui Beacon Tower at Yumenguan; (6) Great Wall Heritage Site; (7) Majuanwan Great Wall segments; (8) Milan Castle Heritage Site; (9) Buddha Tower, south end of the Yingpan City Heritage Site; (10) City wall, north end of the Yingpan City Heritage Site; (11) Yakelun Beacon Tower; (12) Sunji Beacon Tower; (13) Tahaqi Beacon Tower; (14) Sishilidadun Beacon Tower. Circles date to the Han Dynasty, hexagons to the Jin Dynasty, squares to the Tang Dynasty, and triangles to the Song Dynasty. Maps were created using ArcGIS Pro desktop GIS software developed by Esri.

Article Snippet: Maps were created using ArcGIS Pro desktop GIS software developed by Esri.

Techniques: Northern Blot, Software

Carbon and nitrogen isoscapes. ( a ) Modern P. australis showing the sharp, 2.0‰ contrast in mean δ 13 C between eastern and western clusters and the two-tailed Student’s t-test p -value from Table . ( b ) Ancient Great Wall Phragmites have more homogenous δ 13 C values across eastern and western clusters, with western samples being 0.5‰ lighter than their eastern counterparts on average. Also shown is the two-tailed Student’s t-test p -value for all ancient Phragmites from eastern (Sites 1–7) and western (Sites 8–14) clusters. Although both p -values are < 0.05, ( a ) and ( b ) demonstrate the large 2.5 ‰ difference between modern and ancient samples from the western cluster following 21st Century warming. ( c ) Highly variable δ 15 N values likely suggest evidence of fertilization in some sites, specifically Milan Castle (Site 8) and Sishilidadun Tower (Site 14). Maps were created using the Kriging feature in ArcGIS Pro, whereby color variation in the surface reflects the spatial correlation between δ 13 C or δ 15 N values.

Journal: Scientific Reports

Article Title: Ancient Great Wall building materials reveal environmental changes associated with oases in northwestern China

doi: 10.1038/s41598-022-27071-4

Figure Lengend Snippet: Carbon and nitrogen isoscapes. ( a ) Modern P. australis showing the sharp, 2.0‰ contrast in mean δ 13 C between eastern and western clusters and the two-tailed Student’s t-test p -value from Table . ( b ) Ancient Great Wall Phragmites have more homogenous δ 13 C values across eastern and western clusters, with western samples being 0.5‰ lighter than their eastern counterparts on average. Also shown is the two-tailed Student’s t-test p -value for all ancient Phragmites from eastern (Sites 1–7) and western (Sites 8–14) clusters. Although both p -values are < 0.05, ( a ) and ( b ) demonstrate the large 2.5 ‰ difference between modern and ancient samples from the western cluster following 21st Century warming. ( c ) Highly variable δ 15 N values likely suggest evidence of fertilization in some sites, specifically Milan Castle (Site 8) and Sishilidadun Tower (Site 14). Maps were created using the Kriging feature in ArcGIS Pro, whereby color variation in the surface reflects the spatial correlation between δ 13 C or δ 15 N values.

Article Snippet: Maps were created using ArcGIS Pro desktop GIS software developed by Esri.

Techniques: Western Blot, Two Tailed Test