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13 results for “TOPSIS”

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zenodo40/100

Supplementary Material - Maritime Cargo Prioritisation during a prolonged pandemic lockdown using an integrated TOPSIS-Knapsack technique

<p>Supplementary Material - Maritime Cargo Prioritisation during a prolonged pandemic lockdown using an integrated TOPSIS-Knapsack technique: A Case Study on Small Island Developing States &ndash; the Rodrigues Island</p> <p>Results and Sensitivity analysis</p>

opencc-byAug 2020View details →
zenodo40/100

TOPSIS method application on sustainability indicators of Higher Education Institutions of Brazilian municipalities

<p>TOPSIS method application on sustainability indicators of Higher Education Institutions of Brazilian municipalities</p>

opencc-by-4.0Jul 2021View details →
zenodo36/100

Validación de criterios en Selección de variables para el tratamiento con células madres en la seudoartrosis con el empleo de Fuzzy TOPSIS

<p>Validaci&oacute;n de criterios de cinco expertos realizada en la selecci&oacute;n de variables para el tratamiento con c&eacute;lulas madres en la seudoartrosis con el empleo de Fuzzy TOPSIS. Se valoraron las variables: tiempo de consolidaci&oacute;n, grado de consolidaci&oacute;n, tipo de terapia empleada, causas de la seudoartrosis, trazo de la fracturas, complicaciones, tiempo de evoluci&oacute;n, tipo de seudoartrosis, sitio de fracturas, sexo y grupo de edad.</p>

opencc-by-4.0Apr 2023View details →
dryad32/100

Data from: Avoiding topsy-turvy: how Anna's Hummingbirds (Calypte anna) fly through upward gusts

Flying organisms frequently confront the challenge of maintaining stability when moving within highly dynamic airflows near the Earth's surface. Either aerodynamic or inertial forces generated by appendages and other structures, such as the tail, may be used to offset aerial perturbations, but these responses have not been well characterized. To better understand how hummingbirds modify wing and tail motions in response to individual gusts, we filmed Anna's Hummingbirds as they negotiated an upward jet of fast moving air. Birds exhibited large variation in wing elevation, tail pitch, and tail fan angles among transits as they repeatedly negotiated the same gust, and often exhibited a dramatic decrease in body angle (28 ± 6 degrees) post-transit. After extracting three-dimensional kinematic features, we identified a spectrum of control strategies for gust transit, with one extreme involving continuous flapping, no tail fanning, and little disruption to body posture (23 ± 3 degrees downward pitch), and the other extreme characterized by dorsal wing pausing, tail fanning, and greater downward body pitch (38 ± 4 degrees). The use of a deflectable tail on a glider model transiting the same gust resulted in enhanced stability and can easily be implemented in design of aerial robots.

opencc-zeroDec 2017View details →
zenodo32/100

Figure 7 in A preliminary inquiry into an Asian topsy-turvy Dom, Allobathynella with the description of a new species from South Korea and redescription of A. japonica (Crustacea, Syncarida, Parabathynellidae)

Figure 7. Allobathynella shinjongieei sp. nov. (": holotype, register-no.: NIBR IV0000100002). (A) Left thoracopod III (frontal); (B) left thoracopod IV (frontal); (C) left thoracopod V (frontal); (D) pleopod I (ventral); (E) pleotelson, furcal rami and uropod (lateral); (F) pleotelson, furcal rami and uropod (dorsal). Scale bars50.05 mm.

opennotspecifiedJan 2008View details →
zenodo32/100

Figure 6 in A preliminary inquiry into an Asian topsy-turvy Dom, Allobathynella with the description of a new species from South Korea and redescription of A. japonica (Crustacea, Syncarida, Parabathynellidae)

Figure 6. Allobathynella shinjongieei sp. nov. (": holotype, register-no.: NIBR IV0000100002). (A) Right antennule (dorsal); (B) right antenna (dorsal); (C) labrum (ventral); (D) left mandible (ventral); (E) right maxillule (dorsal); (F) right maxilla (dorsal); (G) left thoracopod I; (H) left thoracopod II. Scale bars50.05 mm.

opennotspecifiedJan 2008View details →
zenodo32/100

Figure 4 in A preliminary inquiry into an Asian topsy-turvy Dom, Allobathynella with the description of a new species from South Korea and redescription of A. japonica (Crustacea, Syncarida, Parabathynellidae)

Figure 4. Allobathynella japonica Morimoto and Miura, 1957 (all figures based on male, register-no.: NIBR IV0000100013). (A) Right thoracopod V (frontal); (B) right thoracopod VI (frontal); (C) right thoracopod VII. Scale bar50.1 mm.

opennotspecifiedJan 2008View details →
zenodo32/100

Figure 3 in A preliminary inquiry into an Asian topsy-turvy Dom, Allobathynella with the description of a new species from South Korea and redescription of A. japonica (Crustacea, Syncarida, Parabathynellidae)

Figure 3. Allobathynella japonica Morimoto and Miura, 1957 (all figures based on male, register-no.: NIBR IV0000100013: NSMSK-CR-P 0000013). (A) Right thoracopod II (frontal); (B) right thoracopod III (frontal); (C) right thoracopod IV. Scale bar50.1 mm.

opennotspecifiedJan 2008View details →
zenodo32/100

Figure 1 in A preliminary inquiry into an Asian topsy-turvy Dom, Allobathynella with the description of a new species from South Korea and redescription of A. japonica (Crustacea, Syncarida, Parabathynellidae)

Figure 1. Allobathynella japonica Morimoto and Miura, 1957 (all figures based on male, register-no.: NIBR IV0000100013). (A) Right antennule (dorsal); (B) right antenna (dorsal); (C) labrum; (D) right mandible (ventral); (E) left maxillule (dorsal); (F) left maxilla (dorsal); (G) right thoracopod I (frontal). Scale bar50.1 mm.

opennotspecifiedJan 2008View details →
dryad32/100

Data from: Avoiding topsy-turvy: how Anna's Hummingbirds (Calypte anna) fly through upward gusts

Open the record for dataset details and reuse information.

publicDec 2018View details →
zenodo20/100

Figure 8 in A preliminary inquiry into an Asian topsy-turvy Dom, Allobathynella with the description of a new species from South Korea and redescription of A. japonica (Crustacea, Syncarida, Parabathynellidae)

Figure 8. Allobathynella shinjongieei sp. nov. (": holotype, register-no.: NIBR IV0000100002; ♀: allotype register-no.: NIBR IV0000100003). (A) Left thoracopod VI (frontal); (B) left thoracopod VII (frontal); (C) left and right male thoracopod VIII (ventral); (D) left male thoracopod VIII (lateral); (E) right female thoracopod VIII (lateral); (F) right and left female thoracopods VIII (ventral). Scale bars50.05 mm.

opennotspecifiedJan 2008View details →
zenodo20/100

Figure 5 in A preliminary inquiry into an Asian topsy-turvy Dom, Allobathynella with the description of a new species from South Korea and redescription of A. japonica (Crustacea, Syncarida, Parabathynellidae)

Figure 5. Allobathynella shinjongieei sp. nov., general habitus of the holotype (", register-no.: NSMSK-CR-H-000002). Lateral.

opennotspecifiedJan 2008View details →
zenodo20/100

Figure 2 in A preliminary inquiry into an Asian topsy-turvy Dom, Allobathynella with the description of a new species from South Korea and redescription of A. japonica (Crustacea, Syncarida, Parabathynellidae)

Figure 2. Allobathynella japonica Morimoto and Miura, 1957 (all figures except D based on male, register-no.: NIBR IV0000100013). (A) Right male thoracopod VIII (ventral, slightly inner-lateral); (B) right male thoracopod VIII (ventral); (C) right male thoracopod VIII (outer lateral); (D) left and right female thoracopod VIII (ventral); (E) pleotelson, furca and uropod (dorsal); (F) left uropod (dorsal); (G) right furcal ramus (dorsal); (H) right furcal ramus without spines. Scale bars50.1 mm unless specified.

opennotspecifiedJan 2008View details →

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International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

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OpenNeuro

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