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299 results for “New York”

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Distribution. Bismarck Archipelago (New Ireland, Duke of York, Mioko, New Britain, Tolokiwa, Umboi, and Dyaul Is); probably also on Sakar and Lavongai Is. in Pteropodidae

Distribution. Bismarck Archipelago (New Ireland, Duke of York, Mioko, New Britain, Tolokiwa, Umboi, and Dyaul Is); probably also on Sakar and Lavongai Is.

opennotspecifiedOct 2019View details →
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Distribution. SE Canada (S Ontario and S Quebec) and NE USA (W Maine, New Hampshire, Vermont, New York, Massachusetts, N Connecticut, N Rhode Island, Ohio, Pennsylvania, N New Jersey, West Virginia, NW Maryland, W Virginia, E Kentucky, E Tennessee, W North Carolina, extreme NE Georgia, and extreme NW South Carolina). in Talpidae

Distribution. SE Canada (S Ontario and S Quebec) and NE USA (W Maine, New Hampshire, Vermont, New York, Massachusetts, N Connecticut, N Rhode Island, Ohio, Pennsylvania, N New Jersey, West Virginia, NW Maryland, W Virginia, E Kentucky, E Tennessee, W North Carolina, extreme NE Georgia, and extreme NW South Carolina).

opennotspecifiedJul 2018View details →
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Subspecies and Distribution. S.f.fumeusG.S.Miller,1895—SECanada(SOntarioandSQuebec)andEUSA(NEMinnesota,NewEngland,exceptmostofMaine,NVermont,andNNewHamnsire,SIndiana,Ohio,Pennsylvania,WestVirginia,Maryland,WNewJersey,Kentucky,N&WVirginia,ETennessee,WNorthCarolina,NEGeorgia,andNWSouthCarolina). S. f. umbrosus H. H. T. Jackson, 1917 — SE Canada (SE Quebec, New Brunswick, and Nova Scotia) and NE USA (NE New York, N Vermont, N New Hampshire, and most of Maine). in Soricidae

Subspecies and Distribution. S.f.fumeusG.S.Miller,1895—SECanada(SOntarioandSQuebec)andEUSA(NEMinnesota,NewEngland,exceptmostofMaine,NVermont,andNNewHamnsire,SIndiana,Ohio,Pennsylvania,WestVirginia,Maryland,WNewJersey,Kentucky,N&WVirginia,ETennessee,WNorthCarolina,NEGeorgia,andNWSouthCarolina). S. f. umbrosus H. H. T. Jackson, 1917 — SE Canada (SE Quebec, New Brunswick, and Nova Scotia) and NE USA (NE New York, N Vermont, N New Hampshire, and most of Maine).

opennotspecifiedJul 2018View details →
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On following pages: 695. Spiny Seram Island Rat (Rattus feliceus); 696. Hainald's Flores Island Rat (Rattus hainaldi); 697. Halmahara Rat (Rattus morotaiensis); 698. Timor Forest Rat (Rattus timorensis); 699. Philippine Forest Rat (Rattus everett): 700. Mindoro Mountain Rat (Rattus mindorensis); 701. Tawitawi Forest Rat (Rattus tawitawiensis); 702. Vogelkop Mountain Rat (Rattus arfakiensis); 703. Western New Guinea Mountain Rat (Rattus arrogans); 704. Manus Island Spiny Rat (Rattus detentus); 705. Mount Giluwe Rat (Rattus giluwensis); 706. Yapen Island Rat (Rattus jobiensis); 707. Eastern New Guinea Rat (Rattus mordax); 708. Eastern New Guinea Mountain Rat (Rattus niobe); 709. Papua New Guinea Rat (Rattus novaeguineae); 710. Arianus''s New Guinea Mountain Rat (Rattus omichlodes); 711. Pocock's New Guinea Highland Rat (Rattus pococki); 712. Large New Guinea Spiny Rat (Rattus praetor); 713. Richardson's New Guinea Mountain Rat (Rattus richardsoni); 714. Stein's New Guinea Rat (Rattus steini); 715. Van Deusen's New Guinea Mountain Rat (Rattus vandeusen); 716. New Guinea Slender Rat (Rattus verecundus); 717. Australian Dusky Rat (Rattus colletti); 718. Australian Bush Rat (Rattus fuscipes); 719. Cape York Rat (Rattus leucopus); 720. Australian Swamp Rat (Rattus lutreola); 721. Canefield Rat (Rattus sordidus); in Muridae

On following pages: 695. Spiny Seram Island Rat (Rattus feliceus); 696. Hainald's Flores Island Rat (Rattus hainaldi); 697. Halmahara Rat (Rattus morotaiensis); 698. Timor Forest Rat (Rattus timorensis); 699. Philippine Forest Rat (Rattus everett): 700. Mindoro Mountain Rat (Rattus mindorensis); 701. Tawitawi Forest Rat (Rattus tawitawiensis); 702. Vogelkop Mountain Rat (Rattus arfakiensis); 703. Western New Guinea Mountain Rat (Rattus arrogans); 704. Manus Island Spiny Rat (Rattus detentus); 705. Mount Giluwe Rat (Rattus giluwensis); 706. Yapen Island Rat (Rattus jobiensis); 707. Eastern New Guinea Rat (Rattus mordax); 708. Eastern New Guinea Mountain Rat (Rattus niobe); 709. Papua New Guinea Rat (Rattus novaeguineae); 710. Arianus''s New Guinea Mountain Rat (Rattus omichlodes); 711. Pocock's New Guinea Highland Rat (Rattus pococki); 712. Large New Guinea Spiny Rat (Rattus praetor); 713. Richardson's New Guinea Mountain Rat (Rattus richardsoni); 714. Stein's New Guinea Rat (Rattus steini); 715. Van Deusen's New Guinea Mountain Rat (Rattus vandeusen); 716. New Guinea Slender Rat (Rattus verecundus); 717. Australian Dusky Rat (Rattus colletti); 718. Australian Bush Rat (Rattus fuscipes); 719. Cape York Rat (Rattus leucopus); 720. Australian Swamp Rat (Rattus lutreola); 721. Canefield Rat (Rattus sordidus);

opennotspecifiedNov 2017View details →
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Subspecies and Distribution. P d. delicatulus Gould, 1842 — monsoonal NW & NC Australia, from Pilbara to far NW Queensland, and including the islands of Tent, Augustus, Bigge, Sir Graham Moore, Bathurst, Melville, Marchinbar, Groote Eylandt, and Sir Edward Pellew Group (West, South West, North, and Vanderlin). P. d. pumilus Troughton, 1936 — NE & CE Australia from Cape York S to NE New South Wales, including Fraser I; also reported from Trans Fly plains in S New Guinea. in Muridae

Subspecies and Distribution. P d. delicatulus Gould, 1842 — monsoonal NW & NC Australia, from Pilbara to far NW Queensland, and including the islands of Tent, Augustus, Bigge, Sir Graham Moore, Bathurst, Melville, Marchinbar, Groote Eylandt, and Sir Edward Pellew Group (West, South West, North, and Vanderlin). P. d. pumilus Troughton, 1936 — NE & CE Australia from Cape York S to NE New South Wales, including Fraser I; also reported from Trans Fly plains in S New Guinea.

opennotspecifiedNov 2017View details →
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Figure 3 in A new peacock spider from the Cape York Peninsula (Araneae: Salticidae: Euophryini: Maratus Karsch 1878)

Figure 3. Automontage image of left paturon showing

opencc-by-nd-4.0Jan 2019View details →
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Figure 1. Male Heliophanus kochii. A, Dorsal. B. Palp retrolateral. C in First records for the jumping spiders Heliophanus kochii in the Americas and Myrmarachne formicaria in New York State (Araneae: Salticidae)

Figure 1. Male Heliophanus kochii. A, Dorsal. B. Palp retrolateral. C. Palp ventral.

opencc-by-nd-4.0Apr 2016View details →
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Figure 2. Myrmarachne formicaria. A, Male dorsal. B, Female dorsal. C in First records for the jumping spiders Heliophanus kochii in the Americas and Myrmarachne formicaria in New York State (Araneae: Salticidae)

Figure 2. Myrmarachne formicaria. A, Male dorsal. B, Female dorsal. C, Female epigyne

opencc-by-nd-4.0Apr 2016View details →
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Statue of Liberty, New York, NY, USA

Statue of Liberty, New York, NY, USA Source: Objaverse 1.0 / Sketchfab

opencc-byDec 2021View details →
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Supplementary material 1 from: Ang Y, Rajaratnam G, Su KFY, Meier R (2017) Hidden in the urban parks of New York City: Themira lohmanus, a new species of Sepsidae described based on morphology, DNA sequences, mating behavior, and reproductive isolation (Sepsidae, Diptera). ZooKeys 698: 95-111. https://doi.org/10.3897/zookeys.698.13411

Aligned COI sequences for Themira putris, T. biloba, and Themira 'biloba-like' (i.e., T. lohmanus n. sp.) specimens : Data type: Fasta file

opencc-zeroJan 2018View details →
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FIGURE 3 in A new species of bandy-bandy (Vermicella: Serpentes: Elapidae) from the Weipa region, Cape York, Australia

FIGURE 3. Localities of examined Uermicella specimens, including the new species Uermicella parscauda sp. nov.. Climatic zones outlined in yellow adapted from Marin et al. (2013), indicating geographic barriers and the Carpentarian Gap outlined in brown, as a potential geographic barrier to Cape York (Bowman et al. 2010).

opennotspecifiedJul 2018View details →
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FIGURE 2 in A new species of bandy-bandy (Vermicella: Serpentes: Elapidae) from the Weipa region, Cape York, Australia

FIGURE 2. Phylogeny of Uermicella estimated from concatenated mitochondrial 16S and ND4 sequences using (A) ML and (B) BI. Node support values on each branch represent SH-like support and posterior probabilities for the ML and BI trees respectively. The BI tree is a majority rule consensus of the posterior distribution, such that nodes with posterior probabilities Ṡ0.5 are collapsed. Branch lengths represent expected substitutions per site. The trees were rooted using Neelaps calonotos as a designated outgroup.

opennotspecifiedJul 2018View details →
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FIGURE 1 in A new species of bandy-bandy (Vermicella: Serpentes: Elapidae) from the Weipa region, Cape York, Australia

FIGURE 1. Dorsal and head view of Uermicella parscauda sp. nov. holotype QM J95678. Male collected from boat ramp weipa, Cape York, Queensland -12°31'53" S 141°50'51''E in August 2014 by FJ Vonk and BG Fry. Photos by FJ Vonk.

opennotspecifiedJul 2018View details →
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Barbara Thiers of the New York Botanical Garden and president of the Society for the Preservation of Natural History Collections is among those leading the effort to harness the explosion of data being digitized by collections around the globe. Photograph: New York Botanical Garden, Bronx, NY. in The Evolution of Natural History Collections

Barbara Thiers of the New York Botanical Garden and president of the Society for the Preservation of Natural History Collections is among those leading the effort to harness the explosion of data being digitized by collections around the globe. Photograph: New York Botanical Garden, Bronx, NY.

opennotspecifiedMar 2019View details →
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Figure 2 in Macroinvertebrate and vertebrate fauna of temporary pools, Hudson River Valley, New York, USA

Figure 2. Ternary diagram of the major cation composition of pool water expressed as the percentage of the total cations (in milliequivalents per litre). Calcium is the dominant cation type for most of the pools, reflecting local geology. Sodium is the dominant cation in Pools 15 and 20, both bordering public roads.

opennotspecifiedJul 2024View details →
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Figure 1 in Macroinvertebrate and vertebrate fauna of temporary pools, Hudson River Valley, New York, USA

Figure 1. Northern Dutchess and Ulster counties, Hudson Valley, New York, USA. Locations of temporary pools sampled in this study are indicated by black circles.

opennotspecifiedJul 2024View details →
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Figure 3 in Macroinvertebrate and vertebrate fauna of temporary pools, Hudson River Valley, New York, USA

Figure 3. Random forest regression plot of the relative importance of environmental variables (predictors) on total taxon richness. Direction (positive or negative) of the relationships is indicated by the + or – sign on the x-axis; direction is not strongly indicated for all the weaker predictors.

opennotspecifiedJul 2024View details →
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FIGURE 1. Nepenthes parvula A in Nepenthes parvula (Nepenthaceae), a new species from Cape York, Queensland, Australia

FIGURE 1. Nepenthes parvula A habit with upper pitchers; B lower pitcher showing alae with fimbriae; C female flower, showing nectar glands on adaxial surface of tepals; D male flower; E section of peristome showing teeth on inner margin; F lid of upper pitcher, lower surface. A,B,C,E,F from Wilson & Venter 724 (CNS-138857), D from Wilson & Venter 745 (CNS-140326). Drawings by I. Noziac.

opennotspecifiedSep 2016View details →
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FIGURE 3. Nepenthes parvula A in Nepenthes parvula (Nepenthaceae), a new species from Cape York, Queensland, Australia

FIGURE 3. Nepenthes parvula A habit with upper pitchers; B male plant with inflorescence with receptive flowers (l) and opened flowers (r); C female inflorescence; D male inflorescence. Images by S. Venter.

opennotspecifiedSep 2016View details →
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FIGURE 2 in Nepenthes parvula (Nepenthaceae), a new species from Cape York, Queensland, Australia

FIGURE 2. The habitat association of four species of Nepenthes in the eight transects at Jardine Swamp Cape York, Queensland (data summed for analysis). Type 1: Dry Acacia-dominated with Melaleuca sp. Shrubland or Low Woodland with scattered Hakea pedunculata, Banksia dentata and Asteromyrtus lysicephala on siliceous sands on sand sheets and slight rises; Type 2: Seasonally inundated ecotone with scattered Hakea pedunculata and Asteromyrtus lysicephala with Baloskion tetraphyllum and herb species (often carnivorous) on siliceous sands. Type 3: Permanently moist/inundated swamp with water pH~5 dominated by forbs, herb species, (often carnivorous), and dwarf Asteromytus lysicephala on a variable peat layer on a siliceous sand substrate. Type 4: Permanently moist/inundated swamp dominated by Ghania sp. ±Hanguana malayana, on a variable peat layer on a siliceous sand substrate—slightly (10–20 mm) elevated above 3.

opennotspecifiedSep 2016View details →

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Last verified 2026-04-29Open record