AGL 40.00 No Change ▼ 0.00 (0%)
AIRLINK 127.04 No Change ▼ 0.00 (0%)
BOP 6.67 No Change ▼ 0.00 (0%)
CNERGY 4.51 No Change ▼ 0.00 (0%)
DCL 8.55 No Change ▼ 0.00 (0%)
DFML 41.44 No Change ▼ 0.00 (0%)
DGKC 86.85 No Change ▼ 0.00 (0%)
FCCL 32.28 No Change ▼ 0.00 (0%)
FFBL 64.80 No Change ▼ 0.00 (0%)
FFL 10.25 No Change ▼ 0.00 (0%)
HUBC 109.57 No Change ▼ 0.00 (0%)
HUMNL 14.68 No Change ▼ 0.00 (0%)
KEL 5.05 No Change ▼ 0.00 (0%)
KOSM 7.46 No Change ▼ 0.00 (0%)
MLCF 41.38 No Change ▼ 0.00 (0%)
NBP 60.41 No Change ▼ 0.00 (0%)
OGDC 190.10 No Change ▼ 0.00 (0%)
PAEL 27.83 No Change ▼ 0.00 (0%)
PIBTL 7.83 No Change ▼ 0.00 (0%)
PPL 150.06 No Change ▼ 0.00 (0%)
PRL 26.88 No Change ▼ 0.00 (0%)
PTC 16.07 No Change ▼ 0.00 (0%)
SEARL 86.00 No Change ▼ 0.00 (0%)
TELE 7.71 No Change ▼ 0.00 (0%)
TOMCL 35.41 No Change ▼ 0.00 (0%)
TPLP 8.12 No Change ▼ 0.00 (0%)
TREET 16.41 No Change ▼ 0.00 (0%)
TRG 53.29 No Change ▼ 0.00 (0%)
UNITY 26.16 No Change ▼ 0.00 (0%)
WTL 1.26 No Change ▼ 0.00 (0%)
BR100 10,010 Increased By 126.5 (1.28%)
BR30 31,023 Increased By 422.5 (1.38%)
KSE100 94,192 Increased By 836.5 (0.9%)
KSE30 29,201 Increased By 270.2 (0.93%)

Astronomers said on February 25 they had detected an "impossibly large" and ancient black hole that challenges theories about how these phenomena grew in the early Universe. With a mass 12 billion times that of our Sun, the black hole formed about 900 million years after the Big Bang that created the Universe 13.7 billion years ago - a very short period in galactic history, the surprised team reported in the journal Nature.
"Forming such a large black hole so quickly is hard to interpret with current theories," study co-author Fuyan Bian of the Australian National University said in a statement.
Matter-sucking black holes are extremely dense regions in space-time with a gravitational force so strong that even light cannot escape.
They grow in size by feasting on stars and other matter around them, releasing energy that can be seen from Earth as the bright objects called quasars. This particular black hole lay at the heart of an ultra-luminous quasar - the brightest object yet discovered from that period, the team said.
They had picked the quasar to look at because of its unusual red colour, from a survey of over 500 million objects in the northern skies.

Copyright Agence France-Presse, 2015

Comments

Comments are closed.