Thursday, July 2, 2020

Electoral Processes in the US: Electing the President

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Nikhita Gautam

Article Title

Electoral Processes in the US: Electing the President

Publisher

Global Views 360

Publication Date

July 2, 2020

URL

The White House, Washington D.C.

The White House, Washington D.C.  |  Source: Cezary P via Wikimedia

The USA electoral process is a complex one; caucuses and primaries, followed by national conventions, general elections, formation of the electoral college and the selection of the president. Each step of this process has a lot of subtleties, which vary widely from state to state.

Caucuses and Primaries: This is the initial step of the selection of president. This stage of choosing occurs within a political party, where the party picks the candidate to rally behind.

In the state “Primary”', the registered members of political parties cast votes to allocate delegates for the presidential nominees of their parties. In some of the states this is done through caucuses, where groups are formed behind various potential candidates and there is discussion and persuasion between various groups. Republican party allocates all the delegates directly through primary or caucus, however the Democratic party allocates some Super-Delegates over and above the directly elected ones. These selected or allocated delegates are sent to the national party convention to represent their nominees.

In the process occurring between the primaries and caucuses to the selection of the potential electors is decided entirely by the party. The democrats, after the 1968 democratic convention, made a formal mechanism to reduce power of party leaders over the selection process and ways to represent minorities in the electors. This, however, backfired for the party as the delegates selected by primaries voted according to candidates and not the party, which led to the 1972 democratic Presidential candidate to win in only one state. The rules were then reformed and the concept of Super-Delegates was introduced. The Republican party also followed a somewhat similar trajectory, but did not impose as many restrictions on the delegate selection process, and never took measures to include the minorities.

National Conventions: Each parties’ delegates then choose a final presidential nominee at a national party convention. The nominee picks another person, who would be the vice president in the case the nominee wins. Here, there can be pledged or unpledged delegates; pledged ones are bound to support the potential candidates they chose in the previous round, while the unbound, or superdelegates can support anyone they choose.

Electoral College: After each of the parties have selected their presidential candidate, the candidate campaigns across the country to gain favor from the general public. There are speeches, rallies, debates, and other outreach activities, in which the candidates promote themselves. Meanwhile, the parties select some respective potential electors in each state, which are the people who get the last vote in the selection of the president. Each party forms a slate of potential electors according to the state..

General Election:After this, the general election occurs, in which the public votes for a president. However, the public does not directly vote for the president; they vote for the slate of electors for that political party for that state.

After the general election, the Electors are appointed to the state in two ways.. Electors from all the states then form the electoral college, which is the body that votes for the president. The electors are not legally bound to vote for the party they are pledged to, but can be fined or disqualified if they defect. Throughout USA history, though, more than 99% of the electors have voted as pledged.

The electoral college presently has 538 electors and the candidate who wins 270 or more electoral votes, wins the Presidential election.

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February 4, 2021 4:54 PM

Neuralink: Elon Musk’s quest to achieve a symbiosis of Brain and Artificial Intelligence

The memory of using YouTube for the first time is still clearly etched in my mind. One day we heard the sound of a song coming from the other room, startled by the noise, my brother and I went to investigate. We saw our father surfing in the wondrous world of YouTube where you could play any song without having to buy CDs anymore. It just bewildered us.

What Elon Musk claimed recently shows the distance technology has covered since then. He made headlines recently claiming that  his latest innovation Neuralink,will make it possible to, streaming music directly into our mind. Yes, the CEO of Tesla and SpaceX is back with the new episode of ‘Science fiction turned into reality.”

Musk describes Neuralink as a medium for a symbiosis of Brain with Artificial intelligence. The human brain is essentially an astonishingly powerful supercomputer which runs on power equivalent to the one used in a 20Watt electric bulb.

What Musk wants to do through Neuralink is to fit a tiny chip inside our brain, which can download all the processed information which is travelling from neuron to neuron. This chip with some threads that have the diameter of about tenth of human hair will have the potential to record and stimulate neurons across different brain areas. A Neuralink designed robot will fit electrodes containing threads using sewing technology into the brain. The technology is wireless, so at least you do not have to worry about wires hanging from your head.

Neuralink, launched as a Medical enterprise in 2016, aims to fix blindness, motor abilities, speech and much more. Although the purpose seems benevolent at first glance, we are talking about Elon Musk, the real-world Iron Man. Elon is anxious and fears Artificial Intelligence taking over Humans. He wants us to develop our intelligence potential by accessing our action potential, so that AI does not turn on its creators. For that sole reason (plus the monetization), the Brain-Machine Interface of Neuralink will be accessible to everyone.

Of course, every invention is at the centre of the doubt initially. The case of Neuralink is fascinating and problematic at times and is not different than any other path breaking innovation. Neuralink is going to change the course of human history and will literally turn us into Cyborgs and thus, causes cynicism among a large section of scientists fraternity.

The biggest and fundamental problem with the Neuralink is that it seeks to reach symbiosis of AI and the brain, an enigmatic organ about which we barely know anything. Those who support it argue that we do not need to understand how the brain works to develop Artificial intelligence while the sceptics say that while integrating the functions of Brain and AI, it is crucial to discern nature with precision. David Eagleman, in his book ‘Brain’, claims that a lot of what we see around is not even the whole picture; it is a mere description that Brain paints for us. A simple task as perception is not clearly defined yet. We still have the entire sea of discoveries to be made when it comes to neuroscience.

The other concern with Neuralink is the possible hacking of Neural networks. Though Neuralink technology is heavily dependent on Bluetooth which is supposed to be secure, there are threats from the tech like the Trojan Virus. The implications of hacking are beyond terrible and sound like an evil hacker-robot-zombie apocalypse depicted in sci-fi movies.

Another aspect of Neuralink which needs to be looked into is the classic social divide of haves and have nots. The surgery, although portrayed something as simple as a LASIK surgery, may not be affordable for everyone in the society. Are we looking at a new kind of discrimination in future? Is it even ethical and feasible to put a chip inside the brains of the entire human race? Every question leads to a new question.

It is an alien concept and thus, a scary one. It can help us learn a lot about the brain itself but will have huge repercussions. Figuring out the answers to the simple yet significant problems should probably be the next step for the Neuralink team.

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