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DoubtGrout
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Re: most random thread ever 2021/06/03 18:31:58 (permalink)
mario golf super rush is my most anticipated game of the year
 
crim400
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Re: most random thread ever 2021/06/03 18:33:49 (permalink)
Curium is a transuranic radioactive chemical element with the symbol Cm and atomic number 96. This element of the actinide series was named after Marie and Pierre Curie, both known for their research on radioactivity. Curium was first intentionally produced and identified in July 1944 by the group of Glenn T. Seaborg at the University of California, Berkeley. The discovery was kept secret and only released to the public in November 1947. Most curium is produced by bombarding uranium or plutonium with neutrons in nuclear reactors – one tonne of spent nuclear fuel contains about 20 grams of curium.

Curium is a hard, dense, silvery metal with a relatively high melting point and boiling point for an actinide. Whereas it is paramagnetic at ambient conditions, it becomes antiferromagnetic upon cooling, and other magnetic transitions are also observed for many curium compounds. In compounds, curium usually exhibits valence +3 and sometimes +4, and the +3 valence is predominant in solutions. Curium readily oxidizes, and its oxides are a dominant form of this element. It forms strongly fluorescent complexes with various organic compounds, but there is no evidence of its incorporation into bacteria and archaea. When introduced into the human body, curium accumulates in the bones, lungs and liver, where it promotes cancer.

All known isotopes of curium are radioactive and have a small critical mass for a sustained nuclear chain reaction. They predominantly emit α-particles, and the heat released in this process can serve as a heat source in radioisotope thermoelectric generators, but this application is hindered by the scarcity and high cost of curium isotopes. Curium is used in production of heavier actinides and of the 238Pu radionuclide for power sources in artificial pacemakers and RTGs for spacecraft. It served as the α-source in the alpha particle X-ray spectrometers installed on several space probes, including the Sojourner, Spirit, Opportunity and Curiosity Mars rovers and the Philae lander on comet 67P/Churyumov–Gerasimenko, to analyze the composition and structure of the surface.
DoubtGrout
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Re: most random thread ever 2021/06/03 18:34:12 (permalink)
I don't think ill build a pc because I'm going to wait for pc2
Nathario
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Re: most random thread ever 2021/06/03 18:35:01 (permalink)
Why am I sitting here?
g_petro
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Re: most random thread ever 2021/06/03 18:35:15 (permalink)
68

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crim400
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Re: most random thread ever 2021/06/03 18:36:03 (permalink)
Berkelium is a transuranic radioactive chemical element with the symbol Bk and atomic number 97. It is a member of the actinide and transuranium element series. It is named after the city of Berkeley, California, the location of the Lawrence Berkeley National Laboratory (then the University of California Radiation Laboratory) where it was discovered in December 1949. Berkelium was the fifth transuranium element discovered after neptunium, plutonium, curium and americium.

The major isotope of berkelium, 249Bk, is synthesized in minute quantities in dedicated high-flux nuclear reactors, mainly at the Oak Ridge National Laboratory in Tennessee, USA, and at the Research Institute of Atomic Reactors in Dimitrovgrad, Russia. The production of the second-most important isotope 247Bk involves the irradiation of the rare isotope 244Cm with high-energy alpha particles.

Just over one gram of berkelium has been produced in the United States since 1967. There is no practical application of berkelium outside scientific research which is mostly directed at the synthesis of heavier transuranic elements and transactinides. A 22 milligram batch of berkelium-249 was prepared during a 250-day irradiation period and then purified for a further 90 days at Oak Ridge in 2009. This sample was used to synthesize the new element tennessine for the first time in 2009 at the Joint Institute for Nuclear Research, Russia, after it was bombarded with calcium-48 ions for 150 days. This was the culmination of the Russia–US collaboration on the synthesis of the heaviest elements on the periodic table.

Berkelium is a soft, silvery-white, radioactive metal. The berkelium-249 isotope emits low-energy electrons and thus is relatively safe to handle. It decays with a half-life of 330 days to californium-249, which is a strong emitter of ionizing alpha particles. This gradual transformation is an important consideration when studying the properties of elemental berkelium and its chemical compounds, since the formation of californium brings not only chemical contamination, but also free-radical effects and self-heating from the emitted alpha particles.
DoubtGrout
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Re: most random thread ever 2021/06/03 18:37:37 (permalink)
almost there
crim400
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Re: most random thread ever 2021/06/03 18:38:16 (permalink)
Californium is a radioactive chemical element with the symbol Cf and atomic number 98. The element was first synthesized in 1950 at the Lawrence Berkeley National Laboratory (then the University of California Radiation Laboratory), by bombarding curium with alpha particles (helium-4 ions). It is an actinide element, the sixth transuranium element to be synthesized, and has the second-highest atomic mass of all the elements that have been produced in amounts large enough to see with the unaided eye (after einsteinium). The element was named after the university and the U.S. state of California.

Two crystalline forms exist for californium under normal pressure: one above and one below 900 °C (1,650 °F). A third form exists at high pressure. Californium slowly tarnishes in air at room temperature. Compounds of californium are dominated by the +3 oxidation state. The most stable of californium's twenty known isotopes is californium-251, which has a half-life of 898 years. This short half-life means the element is not found in significant quantities in the Earth's crust.[a] Californium-252, with a half-life of about 2.645 years, is the most common isotope used and is produced at the Oak Ridge National Laboratory in the United States and the Research Institute of Atomic Reactors in Russia.

Californium is one of the few transuranium elements that have practical applications. Most of these applications exploit the property of certain isotopes of californium to emit neutrons. For example, californium can be used to help start up nuclear reactors, and it is employed as a source of neutrons when studying materials using neutron diffraction and neutron spectroscopy. Californium can also be used in nuclear synthesis of higher mass elements; oganesson (element 118) was synthesized by bombarding californium-249 atoms with calcium-48 ions. Users of californium must take into account radiological concerns and the element's ability to disrupt the formation of red blood cells by bioaccumulating in skeletal tissue.
DoubtGrout
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Re: most random thread ever 2021/06/03 18:39:57 (permalink)
lets go 99
 
g_petro
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Re: most random thread ever 2021/06/03 18:39:57 (permalink)
Driving

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Stormholl
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Re: most random thread ever 2021/06/03 18:40:22 (permalink)
Keychron
 
crim400
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Re: most random thread ever 2021/06/03 18:40:29 (permalink)
Einsteinium is a synthetic element with the symbol Es and atomic number 99. Einsteinium is a member of the actinide series and it is the seventh transuranic element. It is named to honor Albert Einstein.

Einsteinium was discovered as a component of the debris of the first hydrogen bomb explosion in 1952. Its most common isotope einsteinium-253 (half-life 20.47 days) is produced artificially from decay of californium-253 in a few dedicated high-power nuclear reactors with a total yield on the order of one milligram per year. The reactor synthesis is followed by a complex process of separating einsteinium-253 from other actinides and products of their decay. Other isotopes are synthesized in various laboratories, but in much smaller amounts, by bombarding heavy actinide elements with light ions. Owing to the small amounts of produced einsteinium and the short half-life of its most easily produced isotope, there are currently almost no practical applications for it outside basic scientific research. In particular, einsteinium was used to synthesize, for the first time, 17 atoms of the new element mendelevium in 1955.

Einsteinium is a soft, silvery, paramagnetic metal. Its chemistry is typical of the late actinides, with a preponderance of the +3 oxidation state; the +2 oxidation state is also accessible, especially in solids. The high radioactivity of einsteinium-253 produces a visible glow and rapidly damages its crystalline metal lattice, with released heat of about 1000 watts per gram. Difficulty in studying its properties is due to einsteinium-253's decay to berkelium-249 and then californium-249 at a rate of about 3% per day. The isotope of einsteinium with the longest half-life, einsteinium-252 (half-life 471.7 days) would be more suitable for investigation of physical properties, but it has proven far more difficult to produce and is available only in minute quantities, and not in bulk.[1] Einsteinium is the element with the highest atomic number which has been observed in macroscopic quantities in its pure form, and this was the common short-lived isotope einsteinium-253.[2]

Like all synthetic transuranic elements, isotopes of einsteinium are very radioactive and are considered highly dangerous to health on ingestion.[3]
DoubtGrout
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Re: most random thread ever 2021/06/03 18:41:59 (permalink)
my final post lets go hopefully we all can get the GPU we want by at least this month and best of luck to all of you trying to buy one
 
crim400
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Re: most random thread ever 2021/06/03 18:42:42 (permalink)
Fermium is a synthetic element with the symbol Fm and atomic number 100. It is an actinide and the heaviest element that can be formed by neutron bombardment of lighter elements, and hence the last element that can be prepared in macroscopic quantities, although pure fermium metal has not yet been prepared.[3] A total of 19 isotopes are known, with 257Fm being the longest-lived with a half-life of 100.5 days.

It was discovered in the debris of the first hydrogen bomb explosion in 1952, and named after Enrico Fermi, one of the pioneers of nuclear physics. Its chemistry is typical for the late actinides, with a preponderance of the +3 oxidation state but also an accessible +2 oxidation state. Owing to the small amounts of produced fermium and all of its isotopes having relatively short half-lives, there are currently no uses for it outside basic scientific research.
Nathario
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Re: most random thread ever 2021/06/03 18:43:00 (permalink)
This is a post
 
dalecci
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Re: most random thread ever 2021/06/03 18:44:06 (permalink)
98
g_petro
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Re: most random thread ever 2021/06/03 18:44:25 (permalink)
mig15

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Nathario
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Re: most random thread ever 2021/06/03 18:47:16 (permalink)
This is another post
Nathario
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Re: most random thread ever 2021/06/03 18:49:58 (permalink)
Oh boy
g_petro
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Re: most random thread ever 2021/06/03 18:51:18 (permalink)
Random post

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Lotus710
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Re: most random thread ever 2021/06/03 18:51:50 (permalink)
i took an arrow to the knee 
Nathario
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Re: most random thread ever 2021/06/03 18:53:49 (permalink)
Let me guess...someone stole your sweetroll?
Lotus710
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Re: most random thread ever 2021/06/03 18:53:51 (permalink)
haaaaaaachuuuuuuuuu 
Lotus710
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Re: most random thread ever 2021/06/03 18:56:38 (permalink)
this is really fun ....
Nathario
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Re: most random thread ever 2021/06/03 18:56:54 (permalink)
Sooooo fun
Lotus710
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Re: most random thread ever 2021/06/03 18:59:29 (permalink)
gatorade bottle 
 
Stormholl
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Re: most random thread ever 2021/06/03 19:01:21 (permalink)
Wallpaper sucks
 
Nathario
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Re: most random thread ever 2021/06/03 19:01:39 (permalink)
SO true
Lotus710
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Re: most random thread ever 2021/06/03 19:01:40 (permalink)
mayochup
 
Lotus710
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Re: most random thread ever 2021/06/03 19:03:40 (permalink)
spider web 
 
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