Saturday, July 28, 2012

Transparent proxies. Non anonymous proxy list.

1 92.50.168.106:80 HTTP NOA Russian Federation (Ufa) 92.50.168.106.static.ufanet.ru 28-jul-2012 16:59
2 200.54.92.187:68664 HTTP NOA Chile 200.54.92.187 28-jul-2012 16:27
3 178.63.34.189:3128 HTTP NOA Germany hcgweb.hcgamers.net 28-jul-2012 16:18
4 80.58.29.174:80 HTTP NOA Spain 174.Red-80-58-29.staticIP.rima-tde.net 28-jul-2012 15:58
5 96.38.34.114:80 HTTP NOA United States (Columbia) 96-38-34-114.static.kgpt.tn.charter.com 28-jul-2012 15:49
6 184.22.115.102:3128 HTTP NOA United States (Scranton) 184-22-115-102.static.hostnoc.net 28-jul-2012 15:49
7 173.254.232.111:808 HTTP NOA United States (Los Angeles) 173.254.232.111.static.hugeserver.com 28-jul-2012 15:49
8 23.22.95.3:8000 HTTP NOA United States (Ashburn) ! ec2-23-22-95-3.compute-1.amazonaws.com 28-jul-2012 15:49
9 70.167.51.34:8080 HTTP NOA United States (Coffeyville) wsip-70-167-51-34.ks.ks.cox.net 28-jul-2012 15:49
10 173.248.139.218:8080 HTTP NOA United States (Denver) 173.248.139.218 28-jul-2012 15:49
11 107.20.205.184:8080 HTTP NOA United States (Ashburn) ! ec2-107-20-205-184.compute-1.amazonaws.com 28-jul-2012 15:48
12 50.16.197.120:8001 HTTP NOA United States (Ashburn) ! ec2-50-16-197-120.compute-1.amazonaws.com 28-jul-2012 15:48
13 198.136.57.148:3128 HTTP NOA United States (Orlando) 198-136-57-148.static.dimenoc.com 28-jul-2012 15:48
14 208.180.88.56:3128 HTTP NOA United States (Sulphur) 208-180-88-56.drdr.suddenlink.net 28-jul-2012 15:48
15 184.105.235.82:8080 HTTP NOA United States (Fremont) vpsnoc.com 28-jul-2012 15:48
16 50.22.206.184:8080 HTTP NOA United States (Dallas) 50.22.206.184-static.reverse.softlayer.com 28-jul-2012 15:48
17 173.213.108.111:3128 HTTP NOA United States (Chandler) 173.213.108.111 28-jul-2012 15:48
18 195.3.254.159:8080 HTTP NOA Russian Federation (Kursk) 195.3.254.159 28-jul-2012 15:18
19 89.189.176.47:3128 HTTP NOA Russian Federation (Novosibirsk) uo.211.ru 28-jul-2012 15:17
20 109.111.182.202:8080 HTTP NOA Russian Federation (Novosibirsk) 202.182.111.109.sta.211.ru 28-jul-2012 15:17
21 97.81.243.20:8080 HTTP NOA United States (Sumiton) 97-81-243-20.dhcp.leds.al.charter.com 28-jul-2012 15:16
22 80.251.158.130:3128 HTTP NOA Russian Federation (Asbest) mx.maxz.ru 28-jul-2012 15:16
23 87.248.226.210:3128 HTTP NOA Russian Federation (Saint Petersburg) ! rtrmain.regionspb.ru 28-jul-2012 15:15
24 188.93.20.179:8080 HTTP NOA Russian Federation 188.93.20.179 28-jul-2012 15:14
25 46.252.244.178:3128 HTTP NOA Russian Federation 46.252.244.178 28-jul-2012 15:14
26 85.234.22.126:3128 HTTP NOA Russian Federation (Nizhniy Novgorod) 85.234.22.126 28-jul-2012 15:14
27 188.143.232.239:85 HTTP NOA Russian Federation (Saint Petersburg) ! 188.143.232.239 28-jul-2012 15:12
28 216.224.186.193:3128 HTTP NOA United States (Pittsford) zen.laurentjm.com 28-jul-2012 15:12
29 46.21.74.242:8080 HTTP NOA Russian Federation 46.21.74.242 28-jul-2012 15:11
30 46.181.129.61:8080 HTTP NOA Russian Federation (Kemerovo) 46.181.129.61 28-jul-2012 15:11


Jewel Caterpillars



Not much is known about so-called Jewel Caterpillars of the genus Dalceridae but one thing’s certain: this group of 84 moth species includes some of the most beautiful bugs you’ve ever laid eyes on. Like gorgeous gems, however, it’s better to look than to touch: the soft, sticky, slug-like creatures are a treat for the eyes, not the hands.



Meet Acraga Coa, A “Slug” With Style


Though caterpillars and moths of the genus Dalceridae have been described in scientific literature for over a century, it’s only recently that they’ve come to wider notice among regular folks. This is partly due to the creatures’ habitat, typically tropical rainforests of the Neotropic ecozone which stretches from southern Florida and coastal Mexico down through most of South America.



While advances in modern photography have helped expose Dalceridae larva to readers of National Geographic magazine, among other such publications, the recent proliferation of news blogs, science websites, and photo-sharing sites like Flickr and Pinterest have done even more to bring Jewel Caterpillars to a wider audience.



Beautiful though the Dalceridae may be, just what the heck are they? Among a vast wealth of caterpillars of virtually all shapes, sizes, colors and configurations, Jewel Caterpillars stand out from the crowd. Even those species whose larvae are uncolored rivet one’s attention due to their glossy gelatinous coatings that seemingly transform them into living, moving gems.



The spotlight shining on Dalceridae larvae will likely solidify their everyday colloquial name from Slug Caterpillars to Jewel Caterpillars. Nothing against slugs – some species are surprisingly brightly colored – but for the Dalceridae looking astonishingly exquisite is the norm and not the exception.



The particular Jewel Caterpillar featured here is the larva of Acraga Coa, a moth native to the Mexican rainforest. Its rise to Internet stardom was facilitated by Gerardo Aizpuru, a scuba instructor and amateur wildlife photographer who noticed a specimen crawling across a Mangrove tree leaf near Cancun, Mexico, one day in April 2012. Aizpuru submitted his excellent snaps to Project Noah, user-created image and knowledge database self-described as “a tool to explore and document wildlife and a platform to harness the power of citizen scientists everywhere.”

Diamonds In The Rough



Over the next days and weeks, Aizpuru’s lovely “living jewel” exploded across the Web with lightning speed, prompting a flood of search inquiries asking what the creature was and were there others similar to it.



At this point the spotlight shifted somewhat as amateur and professional photographers alike searched online databases and actual rainforest habitats for other members of the Dalceridae family. Could any of Acraga Coa’s cousins rival its larva’s striking good looks?



Jewel-like but not gems, Dalceridae larvae such as the specimen above look good enough to pin to one’s blouse though that’s not recommended. In fact, they may look the way they do by design: predatory ants and insects display a distinct distaste for the caterpillars’ gooey, gelatinous coverings.



It seems as if the caterpillars are well aware of their power to give potential predators pause. They’ve been observed crawling on top of leaves, resting in full view of all and sundry, nonchalantly showing off their glistening coats and apparently daring any enemies to take a bite – and very few do.



It’s hard to get a handle on which Dalceridae caterpillar is which. Not that entomologists are “sluggish” in any way, it’s just that the combination of the creatures’ hard to reach habitats and the fact that many caterpillars look different from one molt to another make identifying any one Dalceridae larva a bit of a guessing game.



Than again, what’s in a name? For non-scientists who don’t have to submit a thesis, simply enjoying the wonders of nature as expressed by Jewel Caterpillars is enough of a blessing. Take the lime green critter above: could it hold a candle to an emerald or vice versa? Let’s not try holding candles to emeralds or Jewel Caterpillars, okay?

Orange You Glad It’s A Moth?


Every caterpillar is destined to become a moth, assuming it survives the many trials and tribulations of the larval state and manages to make with the metamorphosis inside its cocoon. For Jewel Caterpillars, this stage of life remains wrapped in mystery. Until science shows us otherwise, we’ll have to imagine Dalceridae larvae weave cocoons similar to the Urodus (possibly) moth’s gorgeous golden basket above.



Everyone knows the story of the ugly caterpillar reborn as a beautiful butterfly, and while moths are often lacking in the beauty department Acraga Coa doesn’t disappoint. Not only is the moth Painted a warm, rich shade of orange, it’s festooned with fluffy tufts worthy of the Westminster Dog Show’s prettiest poodle.



Glutinous gooey gel and fluffy filamentary fur – polar opposites to be sure but the exquisite Jewel Caterpillar manages to transform one into the other without even the most minor of missteps. It’s just one more example of Nature’s wonder, honed to perfection over many millions of years of evolution with, perhaps, millions of years of further refinement to look forward to!




Source

Free proxy lists Brazil (BR). Brazilian proxy servers.

1 189.126.59.230:8080 HTTP NOA Brazil (Sгo Domingos) ! 230.59.126.189.cpnet.com.br 28-jul-2012 12:40
2 189.76.81.250:8080 HTTP NOA Brazil (Montes Claros) ! wnet.provenorte.com.br 28-jul-2012 12:40
3 187.72.145.54:8080 HTTP NOA Brazil (Marabб) 187-072-145-054.static.ctbctelecom.com.br 28-jul-2012 12:40
4 200.195.131.76:8080 HTTP NOA Brazil (Sгo Josй Das Palmeiras) 76.131.195.200.static.copel.net 28-jul-2012 12:40
5 189.127.176.49:8080 HTTP NOA Brazil ! 189.127.176.49 28-jul-2012 12:39
6 189.104.72.148:8080 HTTP NOA Brazil (Salvador) 189-104-72-148.user.veloxzone.com.br 28-jul-2012 12:39
7 187.23.116.126:3128 HTTP NOA Brazil (Chapecу) bb17747e.virtua.com.br 28-jul-2012 12:39
8 201.64.254.228:3128 HTTP NOA Brazil 201.64.254.228 28-jul-2012 12:39
9 201.77.143.62:3128 HTTP NOA Brazil 201.77.143.62 28-jul-2012 12:39
10 177.43.213.46:3128 HTTP NOA Brazil (Sгo Paulo) 177.43.213.46.static.gvt.net.br 28-jul-2012 12:38
11 187.72.32.218:3128 HTTP NOA Brazil (Andrelвndia) 187-072-032-218.static.ctbctelecom.com.br 28-jul-2012 12:38
12 186.208.109.65:8080 HTTP NOA Brazil (Extremуz) ! ip186-208-109-65.netjat.com.br 28-jul-2012 12:38
13 177.22.118.149:8080 HTTP NOA Brazil (Pouso Alegre) ! 177.22.118.149 28-jul-2012 12:38
14 177.44.133.26:8080 HTTP NOA Brazil 26.133.44.177.bdo.static.redeintersoft.com.br 28-jul-2012 12:38
15 186.192.19.129:8080 HTTP NOA Brazil (Goianinha) ! 186.192.19.129 28-jul-2012 12:38
16 189.15.198.129:8080 HTTP NOA Brazil (Uberlвndia) 189-015-198-129.xd-dynamic.ctbcnetsuper.com.br 28-jul-2012 12:38
17 200.96.185.228:80 HTTP NOA Brazil 200.96.185.228 28-jul-2012 12:38
18 187.108.227.71:3128 HTTP NOA Brazil 187.108.227.71 28-jul-2012 12:37
19 189.70.214.149:8080 HTTP NOA Brazil (Caruaru) 189-70-214-149.user.veloxzone.com.br 28-jul-2012 12:37
20 187.67.151.197:3128 HTTP NOA Brazil (Rio De Janeiro) bb4397c5.virtua.com.br 28-jul-2012 12:37
21 177.69.11.252:8080 HTTP NOA Brazil 177-069-011-252.static.ctbctelecom.com.br 28-jul-2012 12:37
22 200.153.150.142:3128 HTTP NOA Brazil (Ribeirгo Pires) 200-153-150-142.dsl.telesp.net.br 28-jul-2012 12:37
23 186.200.58.162:3128 HTTP NOA Brazil (Sгo Paulo) 186-200-58-162.customer.tdatabrasil.net.br 28-jul-2012 12:37
24 201.49.113.72:8080 HTTP NOA Brazil 201-49-113-72.itake.net.br 28-jul-2012 12:37
25 177.85.233.233:8088 HTTP NOA Brazil 177.85.233.233 28-jul-2012 12:37
26 187.54.183.229:8080 HTTP NOA Brazil (Bento Gonзalves) ! 187.54.183.229 28-jul-2012 12:37
27 201.22.59.55:3128 HTTP NOA Brazil (Curitiba) 201.22.59.55.static.gvt.net.br 28-jul-2012 12:37
28 201.79.74.172:80 HTTP NOA Brazil (Vila Velha) 201-79-74-172.user.veloxzone.com.br 28-jul-2012 12:36
29 186.192.16.178:8080 HTTP NOA Brazil (Goianinha) 186.192.16.178 28-jul-2012 12:36
30 186.192.18.129:8080 HTTP NOA Brazil (Goianinha) ! 186.192.18.129 28-jul-2012 08:25

Free proxy lists China (CN). Chinese proxy servers.

1 60.28.213.42:80 HTTP ANM China (Tianjin) 60.28.213.42 28-jul-2012 12:41
2 113.106.194.219:86 HTTP HIA China (Shenzhen) ! 113.106.194.219 28-jul-2012 12:41
3 113.207.124.165:8080 HTTP NOA China (Chongqing) 113.207.124.165 28-jul-2012 12:41
4 60.28.219.218:80 HTTP NOA China (Tianjin) 60.28.219.218 28-jul-2012 12:41
5 222.92.116.10:80 HTTP NOA China (Suzhou) 222.92.116.10 28-jul-2012 12:40
6 119.177.15.238:3128 HTTP NOA China (Jinan) 119.177.15.238 28-jul-2012 12:40
7 202.117.10.243:3128 HTTP NOA China (Xian) 10h243.xjtu.edu.cn 28-jul-2012 12:40
8 221.204.223.38:8080 HTTP HIA China (Taiyuan) 38.223.204.221.adsl-pool.sx.cn 28-jul-2012 12:40
9 125.39.174.135:83 HTTP ANM China (Beijing) 125.39.174.135 28-jul-2012 12:39
10 125.39.78.253:8086 HTTP NOA China (Beijing) ! 125.39.78.253 28-jul-2012 12:39
11 221.195.42.195:8080 HTTP NOA China (Hebei) 221.195.42.195 28-jul-2012 12:38
12 202.127.28.67:3128 HTTP NOA China (Shanghai) 202.127.28.67 28-jul-2012 12:38
13 211.144.76.58:9000 HTTP NOA China reserve.cableplus.com.cn 28-jul-2012 12:38
14 218.108.168.148:82 HTTP ANM China 218.108.168.148 28-jul-2012 12:37
15 211.154.83.78:80 HTTP NOA China (Shanghai) ! 211.154.83.78 28-jul-2012 12:37
16 222.134.74.30:8080 HTTP NOA China (Jinan) 222.134.74.30 28-jul-2012 12:37
17 58.20.59.166:808 HTTP HIA China (Changsha) 58.20.59.166 28-jul-2012 12:37
18 221.176.14.73:80 HTTP ANM China (Beijing) ! 221.176.14.73 28-jul-2012 12:36
19 112.25.12.38:80 HTTP NOA China (Beijing) 112.25.12.38 28-jul-2012 12:35
20 117.135.134.179:8888 HTTP ANM China (Beijing) 117.135.134.179 28-jul-2012 12:35
21 211.161.152.98:80 HTTP NOA China (Wuhan) ! 211.161.152.98 28-jul-2012 12:16
22 211.162.121.182:80 HTTP NOA China (Beijing) ! 211.162.121.182 28-jul-2012 12:15
23 101.44.1.22:80 HTTP ANM China (Shanghai) ! 101.44.1.22 28-jul-2012 11:41
24 202.142.17.119:80 HTTP ANM China ! 202.142.17.119 28-jul-2012 10:50
25 122.141.243.215:80 HTTP HIA China (Changchun) 215.243.141.122.adsl-pool.jlccptt.net.cn 28-jul-2012 10:50
26 218.29.131.11:3128 HTTP HIA China (Dengfeng) hn.kd.ny.adsl 28-jul-2012 06:48
27 61.55.141.10:80 HTTP ANM China (Hebei) 61.55.141.10 28-jul-2012 06:48
28 119.4.250.97:80 HTTP ANM China (Chengdu) 119.4.250.97 28-jul-2012 06:48
29 202.112.50.141:8080 HTTP ANM China keon.ccert.edu.cn 28-jul-2012 06:48
30 118.85.207.23:80 HTTP HIA China (Beijing) 118.85.207.23 28-jul-2012 06:48

Bookmark and Share Free anonymous proxy list. High anonymous proxies. Free proxies.

1 81.23.11.249:80 HTTP HIA Russian Federation c2-81-23-11-249.elastic.cloud.croc.ru 28-jul-2012 17:44
2 46.182.30.228:3128 HTTP HIA Russian Federation 46.182.30.228 28-jul-2012 17:22
3 161.139.195.98:80 HTTP HIA Malaysia (Sekudai) ! ironport1.utm.my 28-jul-2012 16:57
4 91.205.243.14:3128 HTTP HIA Russian Federation (Chita) 91.205.243.14 28-jul-2012 16:50
5 79.170.50.25:80 HTTP ANM Saudi Arabia ! 79.170.50.25 28-jul-2012 15:57
6 201.236.221.9:8080 HTTP ANM Colombia (Pereira) 201.236.221.9 28-jul-2012 15:52
7 67.215.95.25:8088 HTTP HIA United States (San Francisco) ! 67.215.95.25 28-jul-2012 15:49
8 69.163.148.38:80 HTTP HIA United States (Brea) ! ip-69-163-148-38.dreamhost.com 28-jul-2012 15:49
9 69.163.233.85:80 HTTP HIA United States (Brea) ! englercpb.com 28-jul-2012 15:49
10 23.21.141.79:80 HTTP HIA United States (Ashburn) ec2-23-21-141-79.compute-1.amazonaws.com 28-jul-2012 15:49
11 208.113.146.110:80 HTTP HIA United States (Brea) ! apache2-bongo.warhead.dreamhost.com 28-jul-2012 15:49
12 173.45.229.79:3128 HTTP HIA United States (Saint Louis) 173-45-229-79.static.cloud-ips.com 28-jul-2012 15:48
13 170.252.242.39:80 HTTP HIA United States (Dallas) ! 170.252.242.39 28-jul-2012 15:48
14 65.49.80.156:8088 HTTP HIA United States (Fremont) 65.49.80.156 28-jul-2012 15:48
15 210.212.211.135:8080 HTTP HIA India (Yanam) 210.212.211.135 28-jul-2012 15:38
16 196.28.57.32:80 HTTP ANM Puerto Rico (Guaynabo) ! 196-28-57-32.prtc.net 28-jul-2012 15:23
17 174.137.184.37:8080 HTTP HIA United States (Garden City) barracks.webair.com 28-jul-2012 15:19
18 46.232.207.230:8080 HTTP ANM Russian Federation (Volga) 46.232.207.230 28-jul-2012 15:18
19 92.39.133.165:80 HTTP ANM Russian Federation (Moscow) 92.39.133.165 28-jul-2012 15:17
20 209.62.12.130:8118 HTTP HIA United States (Houston) ! ev1s-209-62-12-130.theplanet.com 28-jul-2012 15:16
21 193.104.27.90:3128 HTTP HIA Russian Federation 193.104.27.90 28-jul-2012 15:14
22 195.93.189.194:3128 HTTP HIA Russian Federation 195.93.189.194 28-jul-2012 15:12
23 95.31.31.241:80 HTTP ANM Russian Federation (Moscow) vintserg.static.corbina.ru 28-jul-2012 15:12
24 50.17.207.127:80 HTTP HIA United States (Ashburn) ec2-50-17-207-127.compute-1.amazonaws.com 28-jul-2012 15:11
25 184.173.142.250:80 HTTP ANM United States (Houston) 184.173.142.250-static.reverse.softlayer.com 28-jul-2012 15:10
26 200.32.64.235:8080 HTTP ANM Venezuela (Caracas) correo.alpina.com.ve 28-jul-2012 15:00
27 117.211.123.62:80 HTTP ANM India (Visakhapatnam) 117.211.123.62 28-jul-2012 15:00
28 122.3.237.161:3128 HTTP ANM Philippines (Makati) ! 122.3.237.161.pldt.net 28-jul-2012 15:00
29 190.202.87.134:3128 HTTP ANM Venezuela (Caracas) 190.202.87.134 28-jul-2012 14:39
30 109.234.26.8:3128 HTTP HIA Russian Federation (Stavropol) 109.234.26.8 28-jul-2012 14:33

Free HTTP proxies. List of proxy servers.

1 81.23.11.249:80 HTTP HIA Russian Federation c2-81-23-11-249.elastic.cloud.croc.ru 28-jul-2012 17:44
2 46.182.30.228:3128 HTTP HIA Russian Federation 46.182.30.228 28-jul-2012 17:22
3 92.50.168.106:80 HTTP NOA Russian Federation (Ufa) 92.50.168.106.static.ufanet.ru 28-jul-2012 16:59
4 161.139.195.98:80 HTTP HIA Malaysia (Sekudai) ! ironport1.utm.my 28-jul-2012 16:57
5 91.205.243.14:3128 HTTP HIA Russian Federation (Chita) 91.205.243.14 28-jul-2012 16:50
6 200.54.92.187:68664 HTTP NOA Chile 200.54.92.187 28-jul-2012 16:27
7 178.63.34.189:3128 HTTP NOA Germany hcgweb.hcgamers.net 28-jul-2012 16:18
8 80.58.29.174:80 HTTP NOA Spain 174.Red-80-58-29.staticIP.rima-tde.net 28-jul-2012 15:58
9 79.170.50.25:80 HTTP ANM Saudi Arabia ! 79.170.50.25 28-jul-2012 15:57
10 201.236.221.9:8080 HTTP ANM Colombia (Pereira) 201.236.221.9 28-jul-2012 15:52
11 96.38.34.114:80 HTTP NOA United States (Columbia) 96-38-34-114.static.kgpt.tn.charter.com 28-jul-2012 15:49
12 67.215.95.25:8088 HTTP HIA United States (San Francisco) ! 67.215.95.25 28-jul-2012 15:49
13 184.22.115.102:3128 HTTP NOA United States (Scranton) 184-22-115-102.static.hostnoc.net 28-jul-2012 15:49
14 173.254.232.111:808 HTTP NOA United States (Los Angeles) 173.254.232.111.static.hugeserver.com 28-jul-2012 15:49
15 69.163.148.38:80 HTTP HIA United States (Brea) ! ip-69-163-148-38.dreamhost.com 28-jul-2012 15:49
16 69.163.233.85:80 HTTP HIA United States (Brea) ! englercpb.com 28-jul-2012 15:49
17 23.22.95.3:8000 HTTP NOA United States (Ashburn) ! ec2-23-22-95-3.compute-1.amazonaws.com 28-jul-2012 15:49
18 23.21.141.79:80 HTTP HIA United States (Ashburn) ec2-23-21-141-79.compute-1.amazonaws.com 28-jul-2012 15:49
19 208.113.146.110:80 HTTP HIA United States (Brea) ! apache2-bongo.warhead.dreamhost.com 28-jul-2012 15:49
20 70.167.51.34:8080 HTTP NOA United States (Coffeyville) wsip-70-167-51-34.ks.ks.cox.net 28-jul-2012 15:49
21 173.248.139.218:8080 HTTP NOA United States (Denver) 173.248.139.218 28-jul-2012 15:49
22 107.20.205.184:8080 HTTP NOA United States (Ashburn) ! ec2-107-20-205-184.compute-1.amazonaws.com 28-jul-2012 15:48
23 50.16.197.120:8001 HTTP NOA United States (Ashburn) ! ec2-50-16-197-120.compute-1.amazonaws.com 28-jul-2012 15:48
24 198.136.57.148:3128 HTTP NOA United States (Orlando) 198-136-57-148.static.dimenoc.com 28-jul-2012 15:48
25 208.180.88.56:3128 HTTP NOA United States (Sulphur) 208-180-88-56.drdr.suddenlink.net 28-jul-2012 15:48
26 184.105.235.82:8080 HTTP NOA United States (Fremont) vpsnoc.com 28-jul-2012 15:48
27 173.45.229.79:3128 HTTP HIA United States (Saint Louis) 173-45-229-79.static.cloud-ips.com 28-jul-2012 15:48
28 170.252.242.39:80 HTTP HIA United States (Dallas) ! 170.252.242.39 28-jul-2012 15:48
29 50.22.206.184:8080 HTTP NOA United States (Dallas) 50.22.206.184-static.reverse.softlayer.com 28-jul-2012 15:48
30 173.213.108.111:3128 HTTP NOA United States (Chandler) 173.213.108.111 28-jul-2012 15:48


Top 9 Bizarre Beached Creatures



Shore is strange… at least sometimes, and usually after a storm. Beachcombers often can’t believe their eyes (or noses) when encountering some of Neptune’s more notable washed-up castoffs and even scientists can be befuddled on first impression. Like most UFO’s, there’s always an explanation for the apparently unexplainable… it’s up to you, however, if you choose to believe it.


Quit While You’re a Head


Not much happens in Temuka, a town of just over 4,000 located on the eastern coast of New Zealand’s South Island, but all that changed on October 28th, 2009 when the aliens landed… according to Rose Fraser, who came across it while walking along Temuka Beach. “I must admit, I thought: ‘Heck, this is an alien’. It looks like it’s got big ribs coming out of it, but it looks like they could be tentacles, so I don’t know.” Scientific analysis soon proved her conjecture a might ambitious, identifying the “mysterious blob” instead as the top of a Sperm Whale’s head. “It is not yet known what will happen to the blob of whale,” concludes the Fairfax NZ News, and frankly we’d rather not know either.



Storm Sturgeon


Something was fishy about the so-called “nightmarish Lovecraftian sea monster” that washed ashore on South Carolina’s Folly Beach in March of 2012, or maybe that was just the aroma carried by the sea breeze. It certainly wasn’t the look of this thing, which appeared to have time-traveled from the age of the dinosaurs. A local vet identified the scaly, scute-covered corpse to be a wayward Atlantic Sturgeon, a fish that can grow up to 15 feet long, weigh as much as 800 pounds, and hasn’t really changed much since the species originated around 100 million years ago. Great Old Ones indeed!



The Kivalina Strain


The remote native community of Kivalina on the Chukchi Sea shore in northwestern Alaska isn’t the first place one might expect an alien invasion but on August 3rd, 2011, that’s exactly what happened. Rolling onto the beach for miles around, the first wave was NOT made of little green men, but little orange spores… billions of them.



The tiny orange spheres turned out to be fungal spores of a type of plant rust, to be exact. Who knew plants can rust? Anyway, it’s a good thing those who assumed the bloom was made up of crab eggs or some other form of sea life waited for scientists to determine the precise nature of the “orange goo” before slathering it on their sushi. Wait a minute, wasn’t the lethal pathogen from the novel and film The Andromeda Strain a type of fungal spore?



Lost Your Head?


“I’ve lived here all my life and never seen anything like it,” said Basil Park of McIvers, on the shore of Newfoundland’s Bay of Islands. “There’s fishermen around here who fished all their lives and they couldn’t tell you.” That’s saying something, even if the subject is a headless creature 15 feet long, 10 feet of which form a tapering tail. Officials of Canada’s Department of Fisheries and Oceans haven’t disclosed the nature of the creature that washed ashore in February of 2010. While they’re waiting for the head to turn up (in New Zealand, perhaps?), we suggest they pass the time reading The Legend of Sleepy Hollow.



Montauk Monster


No list of washed-up creatures would be complete without mention of the first (of at least three) Montauk Monster. Reports of the ferocious-looking carcass originated from far-eastern Long Island, New York, in July of 2008 and exploded onto the Internet shortly thereafter. Though DOA when it hit the popular Ditch Plains beach, the creature lives on in pop culture and has even been a subject of a beautiful yet disturbing painting by Dan Lacey.



Four years after its discovery, speculation still abounds over the creature’s origin, identity (it may be the decomposed remains of a raccoon) and even its whereabouts, as according to the Wikipedia entry on the Montauk Monster “It is unknown what happened to the carcass.” Well it didn’t just walk away, did it? DID IT??



Opah Is The Devil


That’s “Opah”, not Oprah, and although this big beached beauty may look somewhat satanic the lower reaches it hails from aren’t hellish in the least. Known variously as Sunfish, Moonfish, or Kingfish, these deep-ocean fish are rarely seen even when biologists and anglers are looking for them.



It “looked like it was from another planet,” stated Scott Williams, a local surfer who discovered the massive fish being battered by waves one morning in October of 2010, just off the coast of San Diego. It’s estimated the manhole-sized, 100-lb Opah would bring $12 per pound if sold at market prices but being that it was a fish out of water, literally, eating it might not be advisable.



Violets Are Blew


Purple Storm Snails (Janthina janthina) are rarely seen anywhere BUT washed up on a beach. These exquisitely beautiful gastropods have paper-thin shells and blow “bubble rafts” of transparent chitin to keep them afloat on the ocean’s surface. They acquired their colloquial name from their propensity to being blown onto beaches by strong storm winds.



From Russia With Ugh


I see your Montauk Monster and raise you a Moscow Monster! This seriously decomposed… something… was found by soldiers stationed on Russia’s far-eastern island territory of Sakhalin in 2006. Sakhalin, by the way, is about 5,000 miles east of Moscow… just sayin’.



Once the story broke, Russian Special Service personnel quickly removed the remains from the beach “for in-depth studies”, though over five years later not a peep has been heard from them. Independent observers working from photos taken and transmitted before the FSS (the KGB’s successor) put a bearhug on further reporting noted similarities between the washed-up creature’s skull and skeleton to those of Orca and Beluga Whales, the later of which are rather populous in the waters off Sakhalin.



Bigfoot, Meet Bigtooth


Just when you thought it was safe to go back in the water… it IS safe in the water, just stay off the beach! OK, the only danger posed by the toothy creation above is potentially stubbing one’s toe on it. And by “creation”, we don’t mean it in the biblical sense. Tampa Bay artist Juan Cabana conceived, composed and posed the purported Sea Monster as one of his “Seamystery” series of mythical creatures, monsters, mermaids and aliens. The ferocious fish-beast above was auctioned off at eBay by Cabana in June 2006 and any image seen on the Internet is derived from the photos Cabana included in the auction description.




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Checked proxy servers list

81.23.11.249:80 HTTP HIA RU 28-jul-2012 17:44
46.182.30.228:3128 HTTP HIA RU 28-jul-2012 17:22
92.50.168.106:80 HTTP NOA RU 28-jul-2012 16:59
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198.136.57.148:3128 HTTP NOA US 28-jul-2012 15:48


Vampire Star



The Universe is a diverse place, and many stars are quite unlike the Sun. Now an international team has used the Very Large Telescope in Chile to study what are known as O-type stars, which have very high temperature, mass and brightness.

These stars have short and violent lives and play a key role in the evolution of galaxies. They are also linked to extreme phenomena such as 'vampire stars', where a smaller companion star sucks matter off the surface of its larger neighbour.

'These stars are absolute behemoths,' said Hugues Sana, from the University of Amsterdam, Netherlands, who is the lead author of the study.


Vampire star! New research using data from ESO's Very Large Telescope has revealed close binaries transfer mass from one star to another, a kind of stellar vampirism depicted in this artist's impression

'They have 15 or more times the mass of our Sun and can be up to a million times brighter. These stars are so hot that they shine with a brilliant blue-white light and have surface temperatures over 30,000C.'

The astronomers studied a sample of 71 O-type single stars and stars in pairs (binaries) in six nearby young star clusters in the Milky Way. Most of the observations in their study were obtained using ESO telescopes, including the VLT.

By analysing the light coming from these targets in greater detail than before, the team discovered that 75 per cent of all O-type stars exist inside binary systems, a higher proportion than previously thought, and the first precise determination of this number.

More importantly, though, they found that the proportion of these pairs that are close enough to interact (through stellar mergers or transfer of mass by so-called vampire stars) is far higher than anyone had thought, which has profound implications for our understanding of galaxy evolution.

O-type stars make up just a fraction of a percent of the stars in the Universe, but the violent phenomena associated with them mean they have a disproportionate effect on their surroundings.

The winds and shocks coming from these stars can both trigger and stop star formation, their radiation powers the glow of bright nebulae, their supernovae enrich galaxies with the heavy elements crucial for life, and they are associated with gamma-ray bursts, which are among the most energetic phenomena in the Universe. O-type stars are therefore implicated in many of the mechanisms that drive the evolution of galaxies.


An artist impression of the binary system LH54-425, which consists of two very massive stars. The larger star's powerful wind overpowers the smaller star's wind, creating a region of hot gas where the outflows collide

'The life of a star is greatly affected if it exists alongside another star,' says Selma de Mink (Space Telescope Science Institute, USA), a co-author of the study.

'If two stars orbit very close to each other they may eventually merge. But even if they don't, one star will often pull matter off the surface of its neighbour.'

Mergers between stars, which the team estimates will be the ultimate fate of around 20-30 per cent of O-type stars, are violent events. But even the comparatively gentle scenario of vampire stars, which accounts for a further 40-50 per cent of cases, has profound effects on how these stars evolve.

Until now, astronomers mostly considered that closely-orbiting massive binary stars were the exception, something that was only needed to explain exotic phenomena such as X-ray binaries, double pulsars and black hole binaries.

The new study shows that to properly interpret the Universe, this simplification cannot be made: these heavyweight double stars are not just common, their lives are fundamentally different from those of single stars.

For instance, in the case of vampire stars, the smaller, lower-mass star is rejuvenated as it sucks the fresh hydrogen from its companion. Its mass will increase substantially and it will outlive its companion, surviving much longer than a single star of the same mass would.

The victim star, meanwhile, is stripped of its envelope before it has a chance to become a luminous red super giant.

Instead, its hot, blue core is exposed. As a result, the stellar population of a distant galaxy may appear to be much younger than it really is: both the rejuvenated vampire stars, and the diminished victim stars become hotter, and bluer in colour, mimicking the appearance of younger stars.

Knowing the true proportion of interacting high-mass binary stars is therefore crucial to correctly characterise these faraway galaxies.

The only information astronomers have on distant galaxies is from the light that reaches our telescopes.

Without making assumptions about what is responsible for this light we cannot draw conclusions about the galaxy, such as how massive or how young it is.

This study shows that the frequent assumption that most stars are single can lead to the wrong conclusions,' concludes Hugues Sana.

Understanding how big these effects are, and how much this new perspective will change our view of galactic evolution, will need further work. Modeling binary stars is complicated, so it will take time before all these considerations are included in models of galaxy formation.




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