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831 results for “Partition”

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Respiration regimes in rivers: Partitioning source‐specific respiration from metabolism time series

<p>This repository hosts preprocessed input data and model codes of the paper:</p> <p>&quot;Respiration regimes in rivers: Partitioning source‐specific respiration from metabolism time series&quot;&nbsp;<br> Limonology and Oceanography, 2022.<br> DOI: 10.1002/lno.12207</p>

opencc-by-4.0Sep 2022View details →
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Figure 6. One chromosome from the population and the five chromosomes existing in the evaluation partition.-Genetic Algorithms Principles Towards Hidden Markov Model

<p>For example comparing the<br> chromosome given in Figure 6 with the first chromosome in the evaluation partition, the<br> difference between the relation Med-Med and Med-High as a pair is 0.0 and the difference<br> between the relation High-High and High-Med as a pair is 0.1. Similarly the difference between<br> the relation Med-Cold and Med-Hot as a pair is 0.1 and the difference between the relation<br> High-Cold and High-Hot as a pair is 0.2. We sum all these differences to get the value of<br> compare(i,j), the sum value is 0+0.1+0.1+0.2 = 0.4. Using the same approach we compute the<br> compare function with the other four chromosomes and we get values 0.4, 0.5,0.4 and 0.6. Now<br> we sum the five values 0.4 + 0.4 + 0.5+ 0.4 +0.6 = 2.3. The fitness value is then 1/ 2.3 = 0.434.<br> The highest is the fitness value, the better is the performance of the chromosome.</p>

opencc-by-4.0Jun 2011View details →
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Fig. 80 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 80. Waveforms of call notes of four species of Austrochaperina. A. A. derongo. B. A. guttata. C. A. rivularis. D. A. macrorhyncha. Scale markings are in 0.01-sec intervals.

opencc-by-4.0May 2000View details →
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Fig. 78 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 78. Audiospectrograms of calls of Liophryne and Oxydactyla recorded in Papua New Guinea. A. L. allisoni, recorded by Allen Allison on Mt. Missim, Morobe Prov., Feb. 4, 1982; complete call, 45-Hz filter, waveform in 12X time expansion, air 16.4°C, voucher specimen BPBM 9361, copy on AMNH Herpetology tape reel no. 244. B. O. coggeri, recorded by James Menzies at Kaironk, Schrader Range, Madang Prov. on Aug. 30, 1968; one complete call, 45-Hz filter, wave form in 6X time expansion, no temperature, voucher specimen UPNG 837, copy on AMNH Herpetology tape reel no. 253. C. L. dentata, recorded by James Menzies near Alotau, Milne Bay Prov., Oct. 8, 1969; partial call, successive parts graphed with 300-Hz and 45-Hz filters, waveform in 6X time expansion, temperature not noted, voucher specimen UPNG 1727, copy on AMNH Herpetology tape reel no. 253.

opencc-by-4.0May 2000View details →
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Fig. 77 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 77. Audiospectrograms of calls of five species of Austrochaperina, Liophryne, and Oxydactyla recorded in Papua New Guinea. A. L. rhododactyla, recorded by Allen Allison on Bulldog Road, Morobe Prov., April 30, 1982; 45-Hz filter, waveform in 3X time expansion, no voucher specimen or temperature, copy on AMNH Herpetology tape reel 244. B. L. similis, recorded at Myola Guest House, Northern Prov., Aug. 10, 1987; 45-Hz filter, waveform in 6X time expansion, air 12.8°C, voucher specimen AMNH A130570, AMNH Herpetology tape reel no. 253. C. O. crassa, recorded by James Menzies at Betamin, Mt. Dayman, Milne Bay Prov., July 1984; 45-Hz filter, waveform in 3X time expansion, no voucher specimen or temperature, copy on AMNH Herpetology tape reel no. 253. D. A. gracilipes, recorded at Wipim, Western Prov., Aug. 15, 1969; partial call, 45-Hz filter, wave form in 6X time expansion, air 24.0°C, voucher specimen AMNH A83070, AMNH Herpetology tape reel no. 189. E. A. brevipes, recorded at Myola Guest House, Northern Prov., Aug. 11, 1987; one complete call, initial notes graphed with 300-Hz filter, terminal notes with 45-Hz, waveform in 12X time expansion, air 12.9°C, no voucher specimen, AMNH Herpetology tape reel no. 253.

opencc-by-4.0May 2000View details →
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Fig. 76 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 76. Audiospectrograms of calls of Sphenophryne cornuta recorded in Western Province, Papua New Guinea. A. Possible territorial calls recorded at Finalbin, July 27, 1987 (see text); 300-Hz filter, time scale of wave forms 6X that of spectrogram, air 20.3°C, voucher specimen AMNH A130549, AMNH Herpetology tape reel no. 252. B. One complete advertisement call recorded by Ian Redmond at the junction of the Strickland and Rentoul rivers, Nov. 14, 1979; 300-Hz filter, no temperature, voucher specimen BMNH 1980.673, British Library of Wildlife Sounds No. 12274.

opencc-by-4.0May 2000View details →
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Fig. 75 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 75. Superficial mandibular musculature (right side). A. Oxydactyla stenodactyla. B. Sphenophryne cornuta. C. Liophryne schlaginhaufeni. Scale bars marked in millimeters.

opencc-by-4.0May 2000View details →
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Fig. 79 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 79. Audiospectrograms of calls of Liophryne and Austrochaperina. A. L. schlaginhaufeni, recorded near Mabimap Village, Adelbert Mountains, Madang Prov., Papua New Guinea, by James Menzies, voucher specimen UPNG 7246 (see table 9), copy of recording on AMNH Herpetology tape reel 286. B. A. rivularis, recorded by Stephen Richards on Mt. Stolle, 1600 m, West Sepik (Sanduan) Prov., Papua New Guinea, on July 4, 1993, temperature not recorded, voucher specimen QM J67247. C. A. guttata, recorded by S. Richards at Ivimka Field Station, 5.5 km S, 5.6 km W of Tekadu Airstrip, Gulf Prov., Papua New Guinea, on Nov. 19, 1996; voucher specimen QM J67256, air temperature 26.3°C. In all figures the audiospectrograms were made with a 59-Hz filter and the waveforms, representing notes 1–N, are in 2X expansion. Copies of S. Richards recordings are on AMNH Herpetology tape reel no. 284.

opencc-by-4.0May 2000View details →
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Fig. 74 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 74. Right lateral view of jaw musculature of Oxydactyla stenodactyla. Scale bar marked in millimeters.

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Fig. 73 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 73. Outline drawings of sacral regions of Austrochaperina and Sphenophryne in dorsal view; scale bars marked in millimeters. A. A. rivularis, AMNH A88445. B. A. basipalmata, AMNH A129495. C. A. palmipes, AMNH A92805. D. A. derongo, AMNH A92794. E. A. blumi, UPNG 9959. F. S. cornuta, AMNH A92803.

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Fig. 72 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 72. Outline drawings of sacral regions of Oxydactyla, Austrochaperina, and Liophryne in dorsal view; scale lines marked in millimeters. A. O. stenodactyla, AMNH A92799. B. O. alpestris, AMNH A65299. C. O. coggeri, AMNH A140874. D. A. brevipes, AMNH A130527. E. L. allisoni, BPBM 9631. F. L. rhododactyla, BPBM 9793. G. L. dentata, UPNG 2641. H. L. schlaginhaufeni, AMNH A78183. I. A. gracilipes, AMNH A90407.

opencc-by-4.0May 2000View details →
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Fig. 71 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 71. Terminal phalanges of third fingers of Austrochaperina, Liophryne, Oxydactyla and Sphenophryne; scale lines marked in 0.1-mm intervals. A. O. stenodactyla, AMNH A92801. B. O. alpestris, AMNH A65299. C. O. brevicrus, AMNH A43761. D. O. coggeri, AMNH A140874. E. A. brevipes, AMNH A130527. F. L. allisoni, BPBM 9631. G. L. rhododactyla, BPBM 9793. H. L. dentata, UPNG 2641. I. L. schlaginhaufeni, AMNH A78183. J. A. gracilipes, AMNH A90407. K. A. novaebritanniae, AMNH A88569. L. A. blumi, UPNG 9559. M. S. cornuta, AMNH A92804. N. A. basipalmata, AMNH A129495. O. A. rivularis, AMNH A88445. P. A. palmipes, AMNH A92807. Q. A. derongo, AMNH A145507.

opencc-by-4.0May 2000View details →
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Fig. 70 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 70. Lateral view of left posteromedial process of the hyoid of Liophryne allisoni, BPBM 9631, with the ventromedian process projecting from its anterior end. The right (posterior) end of the posteromedial process angles toward the view- er. Scale line marked in millimeters.

opencc-by-4.0May 2000View details →
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Fig. 69 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 69. Hyoids of Oxydactyla, Austrochaperina, and Liophryne in ventral view. Light stipple indicates cartilage, denser stipple mineralization. Proportions of bony posteromedial processes, which pass into the plane of the drawing, are distorted by foreshortening. A. O. stenodactyla, AMNH A66049. B. A. brevipes, AMNH A130527. C. L. rhododactyla, BPBM 9793. Scale lines marked in millimeters.

opencc-by-4.0May 2000View details →
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Fig. 68 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 68. Dorsal (upper) and ventral views of skulls of Austrochaperina and Liophryne. A. A. rivularis, AMNH A84445. B. L. rhododactyla, BPBM 9793. C. L. allisoni, BPBM 9631. Scale bars measure 5 mm.

opencc-by-4.0May 2000View details →
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Fig. 64 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 64. Left premaxillae of Austrochaperina and Sphenophryne in ventral view. Scale lines indicate 1 mm unless otherwise stated. A. A. gracilipes, AMNH A90407 (scale 0.5 mm). B. A. novaebritanniae, AMNH A88569 (scale 0.5 mm). C. A. blumi, UPNG 9559. D. S. cornuta, AMNH A92804. E. A. basipalmata, AMNH A129495. F. A. rivularis, AMNH A88445. G. A. palmipes, AMNH A92807. H. A. derongo, AMNH A145507.

opencc-by-4.0May 2000View details →
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Fig. 57 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 57. Lower surfaces of feet and hands of Austrochaperina. A. A. yelaensis, AMNH A135406. B. A. novaebritanniae, AMS R29351. C. A. gracilipes, AMS R62053. D. A. mehelyi, UPNG 7241. E. A. brevipes, AMNH A120523. Scale bars marked in 1-mm intervals.

opencc-by-4.0May 2000View details →
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Fig. 67 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 67. Dorsal (upper) and ventral views of skulls of Oxydactyla and Austrochaperina. A. O. stenodactyla, AMNH A92802. B. O. coggeri, AMNH A140874. C. A. brevipes, AMNH A130527. Scale bars measure 4 mm.

opencc-by-4.0May 2000View details →
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Fig. 61 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 61. Changes of proportions relative to body size in five species: 1, Oxydactyla stenodactyla; 2, Austrochaperina derongo; 3, Sphenophryne cornuta; 4, Liophryne schlaginhaufeni; 5, Austrochaperina palmipes.

opencc-by-4.0May 2000View details →
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Fig. 66 in Partition Of The Australopapuan Microhylid Frog Genus Sphenophryne With Descriptions Of New Species

Fig. 66. Dorsal (upper) and ventral views of skull of Sphenophryne cornuta, AMNH A92804; scale bar measures 5 mm.

opencc-by-4.0May 2000View details →

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Allen Brain Atlas

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Annotated Behaviour and Observability Dataset (ABODe)

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DANDI Archive for NWB datasets

DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.

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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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Last verified 2026-04-29Open record

OpenNeuro

OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.

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neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record