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The Essence of Artificial Intelligence

 Artificial Intelligence has been the talk of the town for a couple of years now. Everyone has a basic understanding of AI- it's the ability of a computer to actually think for itself. But how does this work? What is the technology behind this? How does this affect the future as well as the present? A I is the ability of machines to think, learn and perform tasks that would otherwise require human intervention. In simple terms, it is the intelligence exhibited by machines. AI allows machines to learn from past experiences, and lets machines perform tasks that are associated with human cognitive functions such as visual recognition, speech recognition, emotion perception and many others. As you may expect, the technology behind AI is complex- and involves several fields such as computer science, mathematics and neuroscience. Some terms commonly associated with AI are machine learning (ML) and deep learning (DL). While there is obviously a connection between these three, they are fun...

Basics of Quantum Computing

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 The Quantum world is one of many mysteries. This world is governed by laws that don't seem to make any sense, but are proved to be true. What does quantum mean? And how is this connected to computing?  A close-up view of an IBM quantum computer. Source - Cnet.com Let's talk about each of these words individually first. Quantum, in layman's terms, means small. The mechanism or working of this subatomic world is governed by the rules of quantum mechanics. Let's understand some principles of quantum mechanics before talking about quantum computing. The quantum mechanical model of the atom, was the result of two important scientific advancements- Heisenberg's Uncertainty principle , and the dual behavior of matter proposed by de Broglie. To briefly explain these- de Broglie stated that every particle had wave nature, just as waves- like visible light- showed particle behavior. This dual behavior is particularly seen in smaller particles like electrons, and is negligib...

Neutron Stars

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In the previous blog we discussed the death of various sized stars and concluded that the death of massive stars results in the birth of two of the most extreme bodies in our universe - neutron stars and black holes . Today we'll talk about neutron stars . Neutron star The death of massive stars (also called supernova) could make either black holes or neutron stars. When  s tars  four to eight times as massive as the sun explode in a violent supernova, their outer layers can blow off in an often-spectacular display, leaving behind a small, dense core that continues to collapse. Gravity presses the material in on itself so tightly that protons and electrons combine to make neutrons, yielding the name "neutron star." During the supernova, when the star implodes, particles like protons and electrons in the core, which really don't want to be close to each other, are forced to get close due to the mass of the star on top of it. These particles eventually fuse to become ne...

Life of Stars - Fate of stars

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In the previous blog, we spoke about the birth of stars and how light was bought into our universe, which was merely an infant at that time. In this article we'll talk about the life of these stars and eventually, their fate after their long journey.. As you may remember, we discussed the birth and ignition of a star and we discussed nuclear fusion in detail as well. We also concluded with the sizes of stars, (small, medium and supermassive). What's next? How does different  size result in a different life and death of stars? We'll answer these questions and more in this blog. Small sized stars Small stars live a rather long and boring life. They live for hundreds of billions of years and are about quarter the mass of the sun (also called solar mass, which is  approximately 2×10 30  kg) . They start off as relatively cool and dim red dwarfs . As they age, their surface temperature increases and they become a blue dwarf . Eventually, as their light fades slowly, they cool...

Life of Stars - The Birth

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     After the big bang for millions of years, the universe comprised mostly of helium and hydrogen. Darkness prevailed in this infant universe. There was no light in this universe, until the first stars were formed. In this blog, we'll talk about the life cycle of stars. In subsequent blogs we'll talk about black holes, and other mysterious objects in the universe.   The carina nebula, huge clouds which give rise to stars For millions of years the universe was enveloped in darkness with huge clouds of dust and gas forming and continuously expanding. These clouds grew to become so massive with significant mass that their force of gravity eventually caused it to collapse into itself.  It shrunk to form a extremely hot dense core with disks of matter spinning around it. As the cloud collapses, a dense, hot core forms and begins gathering dust and gas. Eventually, the core became so hot reaching approximately 15 million degrees , the particles of dust and gas got ...