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GS Paper: GS3-17.Awareness in the fields of IT, Space, Computers, Robotics, Nano-technology, Bio-technology and issues relating to Intellectual Property Rights.

  • Drug pricing and dependence on China

    Whether or not the drug pricing system in India resulted in the growing dependence on China for APIs is analysed in this article. 

    Incentives for domestic production of APIs

    • The department of pharmaceuticals (DoP) has recently notified the Production-Linked Incentive (PLI) scheme.
    • The scheme aims to encourage domestic production of 41 active pharmaceutical ingredients (APIs), key starting materials (KSMs) and drug intermediaries (DIs).
    • A Drug Security Committee constituted by the DoP had identified 53 APIs with high dependence on China.

    Did drug price control policy increase dependence on China?

    • India was self-reliant on APIs until the mid-1990s.
    • Liberalisation in import restrictions led to a gradual influx of APIs from China.
    • India had a more stringent price control policy before the 1990s.
    • If price control system were the culprit, India would not have been self-sufficient in APIs until the mid-1990s.
    • A cost-based price control system that existed until 2013 regulated the prices of both APIs and formulations.
    • The approach to price control shifted from a cost-based to a market-based one since 2013.
    • The new price control policy does not regulate the price of APIs.
    • New price control policy regulates the prices of formulations of those APIs, which figure in the National List of Essential Medicines (NLEM).
    • There are many APIs which do not fall under DPCO but are still imported in a significant way from China.

    Understanding the growing dependence on China from the past perspective

    • Even though India now has a less stringent drug price control policy, the dependence on Chinese imports has been growing.
    • The share of China in India’s total import of APIs has increased from 61% in 2011 to 69% in 2019.
    • The experience in India was that firms would tend to rely on imported APIs if they have an option.
    • The Hathi Committee (1975), which had looked into why Indian firms were not engaging in the production of APIs, found that the capital invested to turnover ratio of APIs was much lower as compared to formulations.
    • This ratio was 1:1 for APIs at best and 1:2.6 for formulations on average, and in some cases, as high as 1:7.2.
    • Subsequently, various measures were adopted.
    • The ‘ratio parameter’ mandatorily required the producers of formulations to produce a certain quantity of APIs.
    • It was the government interventions to overcome the market failure that resulted in India attaining self-sufficiency in APIs.

    Consider the question “What are the APIs? Examine the implications of India’s dependence on imports for API and suggest the measures to reduce such dependence.”

    Conclusion

    An enquiry into the causes of dependence on China needs to go much beyond price control policy and look into whether the state continued to play a proactive role during the post-1991 period to maintain an ecosystem to enhance the competence of Indian API industry.


    Source-

    https://www.financialexpress.com/opinion/drug-pricing-is-certainly-not-the-issue-in-growing-dependence-on-china/2046086/

  • What is Pyrolysis?

    Plastic from used personal protective equipment (PPE) can be transformed into renewable liquid fuels using chemical a process called pyrolysis, says a new study.

    Try this PYQ:

    Q.In the context of which one of the following are the terms ‘pyrolysis and plasma gasification’ mentioned? (CSP 2019)

    (a) Extraction of rare earth elements

    (b) Natural gas extraction technologies

    (c) Hydrogen fuel-based automobiles

    (d) Waste-to-energy technologies

    What is Pyrolysis?

    • Pyrolysis is the thermal decomposition of materials at elevated temperatures in an inert atmosphere.
    • It involves a change in chemical composition. The word is coined from the Greek-derived elements pyro “fire” and lysis “separating”.
    • It is most commonly used in the treatment of organic materials. It is one of the processes involved in charring wood.
    • It is considered as the first step in the processes of gasification or combustion.

    How does it work?

    • In general, pyrolysis of organic substances produces volatile products and leaves a solid residue enriched in carbon, char.
    • Extreme pyrolysis, which leaves mostly carbon as the residue, is called carbonization.
    • The process is used heavily in the chemical industry, for example, to produce ethylene, many forms of carbon, and other chemicals from petroleum, coal, and even wood, to produce coke from coal.

    Applications

    • Aspirational applications of pyrolysis would convert biomass into syngas and biochar, waste plastics back into usable oil, or waste into safely disposable substances.

    Limitations and Concerns

    • The technology requires drying of soil prior to treatment.
    • Limited performance data are available for systems treating hazardous wastes containing polychlorinated biphenyls (PCBs), dioxins, and other organics.
    • There is concern that systems that destroy chlorinated organic molecules by heat have the potential to create products of incomplete combustion, including dioxins and furans.
    • These compounds are extremely toxic in the parts per trillion range.
    • The molten salt is usually recycled in the reactor chamber. However, depending on the waste treated (especially inorganics) and the amount of ash, spent molten salt may be hazardous and require special care in disposal.
    • Pyrolysis is not effective in either destroying or physically separating inorganics from the contaminated medium.
    • Volatile metals may be removed as a result of the higher temperatures associated with the process, but they are not destroyed.
    • When the off-gases are cooled, liquids condense, producing an oil/tar residue and contaminated water.
    • These oils and tars may be hazardous wastes, requiring proper treatment, storage, and disposal.
  • SpaceX’s Crew Dragon capsule ‘Endeavour’

    Two NASA astronauts returned to Earth from the International Space Station (ISS) in a dramatic, retro-style splashdown, their capsule parachuting into the Gulf of Mexico to finish an unprecedented test flight.

    We can get a match the pair type question in prelims asking various space missions and their purposes. Make note of similar space missions from here.

    Crew Dragon

    • Crew Dragon is a part of the Dragon 2, a class of reusable spacecraft developed and manufactured by American aerospace manufacturer SpaceX.
    • It is the fifth class of US spacecraft to take human beings into orbit, after the Mercury, Gemini, Apollo and Space Shuttle programs.
    • The rocket, named Falcon 9, which carried the spaceship into the orbit, was also built by SpaceX.
    • It is done under the Demo-2 Mission of NASA and SpaceX.

    Demo-2: What is the mission?

    • The Demo-2 mission is part of NASA’s Commercial Crew Program with the aim of developing reliable and cost-effective access to and from the ISS.
    • Essentially, the lift-off is a flight test to certify if SpaceX’s crew transportation system can be used to ferry crew to and from the space station regularly.

    What makes it a special event?

    • It was the first splashdown by U.S. astronauts in 45 years, with the first commercially built and operated spacecraft to carry people to and from orbit.
    • The last time NASA astronauts returned from space to water was on July 24, 1975, in the Pacific to end a joint U.S.-Soviet mission known as Apollo-Soyuz.
    • The return clears the way for possible tourist flights in the near future.

    Back2Basics: SpaceX

    • Space Exploration Technologies Corp., trading as SpaceX, is a private American aerospace manufacturer and space transportation Services Company headquartered in Hawthorne, California.
    • It was founded in 2002 by Elon Musk with the goal of reducing space transportation costs to enable the colonization of Mars.
    • It has developed several launch vehicles and the Dragon spacecraft.
  • What are Time Capsules?

    Ahead of the laying of the foundation stone for a temple, claims and denials have emerged about plans to put in a time capsule, or ‘Kaal Patra’.

    Do you know?

    A rubidium standard or rubidium atomic clock is the most inexpensive, compact, and widely produced atomic clock, used to control the frequency of television stations, cell phone base stations, in test equipment, and global navigation satellite systems like GPS.

    What is a Time Capsule?

    • It is a container of any size or shape, which accommodates documents, photos and artefacts typical of the current era and is buried underground, for future generations to unearth.
    • The time capsule requires special engineering so that the contents don’t decay, even if pulled out after a century.
    • Material such as aluminium and stainless steel are used for the encasing, and documents are often reproduced on acid-free paper.
    • While the term “time capsule” was coined in the 20th century, among the earliest examples of one dates back to 1777, found by historians inside the statue of Jesus Christ in Spain during its restoration.

    There’s a global society:

    International Time Capsule Society

    • The International Time Capsule Society (ITCS), based in the US and formed in 1990, is now defunct but continues estimating the number of time capsules in the world.
    • As per its database, there are “10,000-15,000 times capsules worldwide”.

    Are there any time capsules in India?

    • There have been a number of prominent examples.
    • One time capsule, outside the Red Fort and placed underground in 1972 by then PM Indira Gandhi, was dug out by the subsequent government.
    • Other time capsules are at a school in Mumbai, IIT-Kanpur, LPU in Jalandhar, and Mahatma Mandir in Gandhinagar.
    • The Red Fort time capsule was supposed to be dug out after 1,000 years.

    Significance of time capsules

    • Historians often criticize the idea of being motivated.
    • This exercise is inevitably a subjective exercise, geared towards glorification not to construct the real picture.
    • All historians look at this time capsule exercise with suspicion.
    • It’s not a valid historical method — who decides what matter, what artefacts, written documents are going into it?
  • What is Black Rain?

    Ahead of the 75th anniversary of Hiroshima, a Japanese court has recognised 84 survivors of the post-nuclear explosion “black rain” as the atomic bomb survivors. This would enable them to avail free medical benefits.

    Try this question from CSP 2011:

    Q.Acid rain is caused by the pollution of the environment by:

    (a) Carbon dioxide and nitrogen

    (b) Carbon monoxide and carbon dioxide

    (c) Ozone and carbon dioxide

    (d) Nitrous oxide and Sulphur dioxide

    What is Black Rain?

    • An estimated 69 per cent of the buildings in Hiroshima were destroyed by the atomic bomb.
    • The debris and soot from this, mixed with the radioactive fallout from the bomb, raised high into the atmosphere in the form of a mushroom cloud.
    • This material combined with the vapour in the atmosphere and came down as dark drops of liquid that have been called black rain.
    • Survivors of the black rain described it as consisting of large, greasy drops that are much heavier than normal raindrops.
    • It is full of highly radioactive material, and studies have shown that exposure to it can result in serious illnesses.

    What was its effect?

    • A study conducted in the year 1945 itself showed that black rain had come down as far as 29 km away from ground zero.
    • The rain contaminated everything it came in contact with, and dead fish were reported floating in water bodies and severely ill cattle were seen lying in the fields.
    • It has caused acute radiation symptoms (ARS) in many who were exposed to it, with reports of people suffering from nausea and diarrhoea for weeks.
    • Other ARS include fever, sore throat and loss of hair. Over time, many people who were exposed to black rain have developed cancer.
  • [pib] Atal Innovation Mission launches ‘AIM-iCREST’

    NITI Aayog’s Atal Innovation Mission (AIM), has launched AIM iCREST – an Incubator Capabilities enhancement program for a Robust Ecosystem, focused on creating high performing Startups.

    Note the following things about AIM-iCREST

    1) Meaning of the acronym as it gives the central idea of the initiative

    2) Aims and objective

    3) Technological partners

    AIM-iCREST

    • AIM iCREST, as the name suggests, has been designed to enable the incubation ecosystem and act as a growth hack for AIM’s Atal and Established incubators across the country.
    • Under the initiative, the AIM’s incubators are set to be upscaled and provided requisite support to foster the incubation enterprise economy that will help them to significantly enhance their performance.
    • This will be complemented by providing training to entrepreneurs, through technology-driven processes and platforms.
    • The program aims at going beyond incubator capacity building.  This is a first of its kind initiative for advancing innovation at scale in India.

    Various partners

    • AIM has joined hands with Bill & Melinda Gates Foundation and Wadhwani Foundation – organizations that can lend credible support and expertise in the entrepreneurship and innovation space.
    • These partnerships will provide global expertise and showcase proven best practices to the AIM’s incubator network.

    An initiative for incubators

    • India needs world-class incubators fostering world-class startups leveraging the tremendous innovation talent of our country.
    • For the first time in the Government, the Incubator capacity development program is being extended to the entire portfolio of supported Atal incubators.
    • This programme is unique also in its design – it is a combination of interactive practices in the field of incubation; enabling the incubators to support sustainable and successful startups.

    Back2Basics: Atal Innovation Mission

    • Atal Innovation Mission (AIM) is NITI Aayog’s flagship initiative to promote a culture of innovation and entrepreneurship in India
    • AIM has been established to create and promote an ecosystem of innovation and entrepreneurship in a holistic manner through various initiatives at school, university and industry levels
    • The Atal Innovation Mission has thus two core functions:
    1. Innovation promotion: to provide a platform where innovative ideas are generated.
    2. Entrepreneurship promotion: Wherein innovators would be supported and mentored to become successful entrepreneurs at Incubation Centres.
  • What is Interplanetary Contamination?

    As ambitious space missions are proliferating, along with advances in commercial space flight, astrobiologists have expressed concerns about possible ‘interplanetary contamination’.

    A statements based question can be expected from the two types of interplanetary contamination.

    What is Interplanetary Contamination?

    • Interplanetary contamination refers to biological contamination of a planetary body by a space probe or spacecraft, either deliberate or unintentional.
    • There are two types of interplanetary contamination:
    1. Forward contamination is the transfer of life and other forms of contamination from Earth to another celestial body.
    2. Back contamination is the introduction of extraterrestrial organisms and other forms of contamination into Earth’s biosphere. It also covers infection of humans and human habitats in space and on other celestial bodies by extraterrestrial organisms, if such habitats exist.
    • The main focus is on microbial life and on potentially invasive species.
    • Non-biological forms of contamination have also been considered, including contamination of sensitive deposits (such as lunar polar ice deposits) of scientific interest.

    Are there any mechanisms to prevent such contaminations?

    • Current space missions are governed by the Outer Space Treaty and the COSPAR (Committee on Space Research) guidelines for planetary protection.
    • Forward contamination is prevented primarily by sterilizing the spacecraft.
    • According to NASA, the guidelines have had far-reaching implications on human spacecraft design, operational procedures, and overall mission structure.
  • Need for open protocols and networks in the realm of internet

    We are familiar with the dominance of some platforms on the internet. That dominance start to create problems. This article discusses the issues with dominance and suggests the solution drawing on the success of UPI.

    Platforms on the internet

    • Platforms are technology layers that leverage the internet to bring together producers, resellers and consumers.
    • Platforms reduce transaction costs by cutting out intermediaries.
    • Amazon started by selling books but became a profitable giant by creating the e-commerce platform called Amazon Marketplace.
    • The most valuable companies today are platforms for search, social interaction, advertising, insurance, travel, real estate, etc.

    Issues with the platforms

    • 1)The promise of the internet was disintermediation, but the process has hit a speed breaker with major platforms taking on the role of mediation. 
    • 2) There may be multiple platforms in the game to start with, but due to network effects and the non-portability/lock-in, only a few monopolies space.
    • 3) Big platforms have tried to create a sort of  cartel in which to trap the customers while fencing off the rest of the internet.
    • 4) The platforms amass data about users which is used to influence user behaviour, which is not limited to guiding the buying decisions.

    So, what is the solution?

    Let’s look at the success story of  the UPI

    • Unified Payment Interface (UPI) is a set of protocols that standardises the language of money transfer.
    • It is an interface: a simple and structured protocol for instructions and a clearinghouse that relays well-formed requests to concerned parties for execution.
    • Once the language is there, a user may choose any app to link their bank account to a UPI ID and make a pay or collect request involving any other bank account.
    • UPI handled 1.3 billion transactions in June 2020, overtaking the aggregate number of transactions of all legacy “platforms”.
    • UPI succeeded because it treated all players, big or small, equally.
    • This allowed third-party innovators to drive adoption by creating solutions that addressed the need of the people.

    Solution: Adopting of open protocols

    • Application Programming Interfaces (or API) are protocols that define the meaning of data exchanged between two computers.
    • Universally accepted API definitions could allow a cabbie to be discovered by any cab aggregator app the rider may choose.
    • In healthcare, it could facilitate finding a doctor, booking an ambulance, taking out insurance, filing a claim, sharing a medical report or purchasing medicines from a pharmacy.

    Advantages of open protocols

    • Open protocols create ecosystems that are non-rivalrous and non-excludable by design.
    • Even smallest of application developers or start-ups can offer low-cost, locally relevant solutions using the protocol.
    • We can address the needs of the diverse business community and achieve much greater penetration for e-commerce than the 10 per cent of today.
    • Open systems have the potential to transform education, food delivery, by enabling entrepreneurs to compete on their quality and reputation alone.
    • Portability from one application to another, privacy and data empowerment will be some of the issues taken care of.
    • We can reduce our dependence on foreign platforms.

    Consider the question “What are APIs? Examine the issues created by the dominant internet platforms and how the adoption of open protocols for API could address the problem?”

    Conclusion

    With such a huge potential in APIs open protocols, the government must bring out the policy for the creation of open protocols and realise the untapped potential it offers.

  • Rosalind Franklin: the unsung heroine of DNA

    The famous British scientist and virologist Rosalind Franklin is remembered across the world on her birth centenary who worked to construct the double-helix structure of DNA.

    Try this PYQ from CSP 2019:

    DNA/RNA has been an all-time favourite of UPSC!

    Q.‘RNA interference (RNAi)’ technology has gained popularity in the last few years. Why?

    1. It is used in developing gene-silencing therapies.
    2. It can be used in developing therapies for the treatment of cancer.
    3. It can be used to develop hormone replacement therapies.
    4. It can be used to produce crop plants that are resistant to viral pathogens.

    Select the correct answer using the code given below:

    (a) 1, 2 and 4

    (b) 2 and 3

    (c) 1 and 3

    (d) 1 and 4 only

    Rosalind Franklin (1920-1958)

    • She was an English chemist and X-ray crystallographer whose work was central to the understanding of the molecular structures of DNA (deoxyribonucleic acid), RNA (ribonucleic acid), viruses, coal, and graphite.
    • Although her works on coal and viruses were appreciated in her lifetime, her contributions to the discovery of the structure of DNA were largely recognised posthumously.

    DNA breakthrough

    • In 1952, Raymond Gosling, a graduate student at King’s College London, took a historic X-ray photograph under Franklin’s supervision.
    • Photo 51, as it is called, demonstrates the now-familiar, double-helix structure of DNA.

    Why is she remembered now?

    • The world is currently gripped in a pandemic, and her pioneering research in virology provided a crucial early step in the search for cures, vaccinations and tests.
    • During the Second World War, Franklin carried out research into coal and graphite that proved important for gas-masks, the PPE of that time.
    • It is because of Franklin, her collaborators and successors, that today’s researchers are able to use tools such as DNA sequencing and X-ray crystallography to investigate viruses such as COVID-10.

    Back2Basics: DNA/RNA 

    • Deoxyribonucleic acid (DNA) and Ribonucleic acid (RNA) are perhaps the most important molecules in cell biology, responsible for the storage and reading of genetic information that underpins all life.
    • They are both linear polymers, consisting of sugars, phosphates and bases, but there are some key differences which separate the two.
    • These distinctions enable the two molecules to work together and fulfil their essential roles.
    • DNA encodes all genetic information and is the blueprint from which all biological life is created. And that’s only in the short-term.
    • In the long-term, DNA is a storage device, a biological flash drive that allows the blueprint of life to be passed between generations.
    • RNA functions as the reader that decodes this flash drive. This reading process is multi-step and there are specialized RNAs for each of these steps.

    Three types of RNA

    • Messenger RNA (mRNA) copies portions of genetic code; a process called transcription and transports these copies to ribosomes, which are the cellular factories that facilitate the production of proteins from this code.
    • Transfer RNA (tRNA) is responsible for bringing amino acids, basic protein building blocks, to these protein factories, in response to the coded instructions introduced by the mRNA. This protein-building process is called translation.
    • Finally, Ribosomal RNA (rRNA) is a component of the ribosome factory itself without which protein production would not occur.
  • [pib] Kakrapar Atomic Power Project (KAPP-3) in Gujarat

    The indigenously designed 700 MWe reactor at the Kakrapar Atomic Power Project has achieved Criticality.

    Try this PYQ from CSP 2013:

    Q. The known forces of nature can be divided into four classes, viz, gravity, electromagnetism, weak nuclear force and strong nuclear force. With reference to them, which one of the following statements is not correct?

    (a) Gravity is the strongest of the four

    (b) Electromagnetism act only on particles with an electric charge

    (c) Weak nuclear force causes radioactivity

    (d) Strong nuclear force holds protons and neutrons inside the nuclear of an atom.

    What is ‘Criticality’ in Atomic/Nuclear Power Plants?

    • Reactors are the heart of an atomic power plant, where a controlled nuclear fission reaction takes place that produces heat, which is used to generate steam that then spins a turbine to create electricity.
    • Fission is a process in which the nucleus of an atom splits into two or smaller nuclei, and usually some by-product particles.
    • When the nucleus splits, the kinetic energy of the fission fragments is transferred to other atoms in the fuel as heat energy, which is eventually used to produce steam to drive the turbines.
    • For every fission event, if at least one of the emitted neutrons on average causes fission, a self-sustaining chain reaction will take place.
    • A nuclear reactor achieves criticality when each fission event releases a sufficient number of neutrons to sustain an ongoing series of reactions.

    Controlling Criticality

    • When a reactor is starting up, the number of neutrons is increased slowly in a controlled manner. Neutron-absorbing control rods in the reactor core are used to calibrate neutron production.
    • The control rods are made from neutron-absorbing elements such as cadmium, boron, or hafnium.
    • The deeper the rods are lowered into the reactor core, the more neutrons the rods absorb and the less fission occurs.
    • Technicians pull up or lower down the control rods into the reactor core depending on whether more or less fission, neutron production, and power are desired.
    • If a malfunction occurs, technicians can remotely plunge control rods into the reactor core to quickly soak up neutrons and shut down the nuclear reaction.

    Why is this achievement significant?

    • It is the biggest indigenously developed variant of the Pressurized Heavy Water Reactor (PHWR).
    • The PHWRs, which use natural uranium as fuel and heavy water as moderator, is the mainstay of India’s nuclear reactor fleet.
    • Until now, the biggest reactor size of the indigenous design was the 540 MWe PHWR, two of which have been deployed in Tarapur, Maharashtra.
    • India works to ramp up its existing nuclear power capacity of 6,780 MWe to 22,480 MWe by 2031.
    • The 700MWe capacity constitutes the biggest component of the expansion plan.

    Back2Basics: India’s PHWR technology

    • PHWR technology started in India in the late 1960s with the construction of the first 220 MWe reactor, Rajasthan Atomic Power Station, RAPS-1 under the joint Indo-Canadian nuclear co-operation.
    • Canada supplied all the main equipment for this first unit, while India retained responsibility for construction, installation, and commissioning.
    • For the second unit (RAPS-2), import content was reduced considerably, and indigenization was undertaken for major equipment.
    • Following the withdrawal of Canadian support in 1974 after Pokhran-1, Indian nuclear engineers completed the construction, and the plant was made operational with a majority of components being made in India.