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IT sličice 2026

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Lol, kakva kanta.
Sećam se da je moj ortak imao 386 DX/40, sa 2MB Rama, i mučenik nije mogao da igra 80% igara za 386, jer mnoge igre su zahtevale 4MB.
A i to što smo igrali, izgledalo je ko smeće. Džaba VGA kad su pikseli veliki ko kuća.
Al' zato (kod drugog ortaka) na (petostruko jeftinijoj) Amigi 500, igre su maltene bile ko na arkadama.
Još crt TV onako fino blurne piksele... ko besplatni antialias. 🙂
 
SX - sirotinjska edicija. Inače, ni do 286sx nisam mogao da dobacim tada 🙂
 
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Lol, kakva kanta.
Sećam se da je moj ortak imao 386 DX/40, sa 2MB Rama, i mučenik nije mogao da igra 80% igara za 386, jer mnoge igre su zahtevale 4MB.
A i to što smo igrali, izgledalo je ko smeće. Džaba VGA kad su pikseli veliki ko kuća.
Al' zato (kod drugog ortaka) na (petostruko jeftinijoj) Amigi 500, igre su maltene bile ko na arkadama.
Još crt TV onako fino blurne piksele... ko besplatni antialias. 🙂

Ako se dobro secam ( a ne secam se) prva 'ozbiljinija' igra koja je trazila 4mb je bila Commanche. Ostale su radile sasvim lepo, posebno na dx procesoru.

A razlika izmedju vga i amige tesko da je bila bas tolika:



Nadjoh ovo na brzinu. U svakom slucaju, amiga je imala nesto posebno, ali je na zalost napustena (propala). :/

@jaksa

Nije postojao 286sx, bio je 386sx i 486sx
 
Jeste Commanche, m**** joj. Kostalo me para.
 
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Lol, kakva kanta.
Sećam se da je moj ortak imao 386 DX/40, sa 2MB Rama, i mučenik nije mogao da igra 80% igara za 386, jer mnoge igre su zahtevale 4MB.
A i to što smo igrali, izgledalo je ko smeće. Džaba VGA kad su pikseli veliki ko kuća.
Al' zato (kod drugog ortaka) na (petostruko jeftinijoj) Amigi 500, igre su maltene bile ko na arkadama.
Još crt TV onako fino blurne piksele... ko besplatni antialias. 🙂
Kako bre kanta, da mi je neko tada rekao da postoji 386 i sega mega drive 2u1, ne bih mu verovao. Bukvalno masina iz snova za to vreme (iako je SX)
 
Ako se dobro secam ( a ne secam se) prva 'ozbiljinija' igra koja je trazila 4mb je bila Commanche. Ostale su radile sasvim lepo, posebno na dx procesoru.
Doom
Mortal Kombat 1 i 2.
Msm... za šta će ti komp, ako ne možeš mortalicu da poteraš? 🙂
Još je 386 tada važio za zverku (barem kod nas)

A razlika izmedju vga i amige tesko da je bila bas tolika:
Na papiru VGA je daleko bolja od OCS Amiga čipseta (256 boja na ekranu VS 32), ali u praksi, najslabija Amiga je imala akcione igre koje su daleko nadmašivale one sa PC.
Prvo, te 32 boje se biraju iz moćne palete od 4096 boja, drugo skrolovanje je bilo smooth, a ne kao na PC, da ti izgrebe oči skrol. Već sam pominjao mogućnost povezivanja na crt TV koji je imao harverski soft blur, dok je na PC (preskupim) monitorima piksel bio oštar ko žilet.
Zvučna kartica se podrazumevala na Amigi, dok si za PC morao basnoslovne pare da daješ, ili si osuđen da ti biper para uši.
Džojstici koje si na Amigi (i sličnim kompovima) mogao da koristiš su bili skupi ko kesa čipsa, dok je džokstik za PC bila ekskluziva i 95% ljudi je primorano bilo da piči igre na tastaturi.
 
vratimo se na temu
 
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2001 ili 2002 neki septembar svakako pred izlazak sledeće Fife. Nacrtao ikonicu postavio kao prečicu i dodelio tu ikonicu, stavio na desktop, printscreen celog ekrana i postavio kao pozadinu i obrisao tu ikonicu. To na kompu na i informatici. Kako su se ljudi lozili da kliknu 🤣. Rekoh au ovde ima nova Fifa a još nije izašla.
 
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A startup in China packed roughly 1,000 Mac Mini M4 computers into a single data center to run AI workloads without paying ongoing cloud fees. The base Mac Mini M4 starts at $599 and draws just 10 to 30 watts under load, a fraction of the 300 to 500 watts a traditional GPU server pulls.
 
By 2018, the Computer History Museum estimated that humanity had manufactured 13 sextillion MOS transistors. That is 13 followed by 21 zeros.
No other human-made device has been copied more often.
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The most manufactured device in human history was not invented by Edison, Tesla, or Steve Jobs. It came from Mohamed Atalla and Dawon Kahng, two scientists whose own employer failed to see what they had created.
Atalla was born in Port Said, Egypt.
He moved to the United States, earned his PhD, and joined Bell Labs in 1949.
At the time, scientists were trying to make smaller and more reliable electronic switches from silicon.
But they kept running into the same problem.
The surface of silicon trapped electrical charges. This made it difficult to control the electricity flowing through it.
Atalla spent years studying that surface.

He eventually discovered that growing a thin layer of silicon dioxide over silicon could protect it and allow electricity to be controlled properly.
It sounded like a small improvement.
It became the foundation of modern electronics.
In 1959, a young Korean scientist named Dawon Kahng joined Bell Labs after completing his doctorate at Ohio State University.
Atalla asked him to use this new method to build a type of transistor scientists had imagined for decades but had never managed to make work.
Kahng succeeded.
The device had three simple layers: metal, oxide, and silicon.
That is where its name came from.
The metal-oxide-semiconductor field-effect transistor. Or MOSFET.
Think of it as a microscopic switch.
It can turn electricity on and off. Put enough of these switches together, and they can store information, perform calculations, display images, run software, and process almost everything a computer does.

Atalla and Kahng had found a way to make these switches small, cheap, and easy to place together on a chip.
They showed their invention to Bell Labs.
The company saw a slow device that solved no urgent problem in its telephone network. It decided not to pursue it.
Kahng tried to explain what they were missing.
In a 1961 memo, he pointed out that the device was easy to manufacture and could be packed into integrated circuits.
Bell Labs still placed it on the shelf.
Researchers at RCA and Fairchild Semiconductor understood its potential and continued developing it.

By 1964, the first commercial MOS devices had arrived.
Then the entire industry began to change.
MOSFETs required less power and took up less space than the transistors used before them. Manufacturers could place thousands on one chip, then millions, and eventually billions.
They entered calculators, memory chips, personal computers, digital cameras, phones, cars, satellites, medical equipment, and almost every other electronic machine.
Modern AI chips contain billions of them.
Every time you unlock your phone, start your car, open a website, send a message, or ask an AI a question, huge numbers of MOSFETs switch on and off to make it happen.

Atalla and Kahng never became household names.
Their invention became so common that it disappeared inside everything.
The next time your phone turns on or an AI answers you in seconds, remember the two scientists who made it possible.
 
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