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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.

  • In news: Rotterdam Convention

    International trade of two new hazardous pesticides — Iprodione and Terbufos — has been recommended for “prior informed consent” (PIC) procedure under the Rotterdam convention.

    Why in news?

    • In India, the use of these chemicals was permitted by the 2015 Anupam Verma committee report. The country is among the largest exporters of Terbufos.
    • The chemicals are dangerous for humans and aquatic animals.

    Rotterdam Convention

    • The Rotterdam Convention is formally known as the Convention on the Prior Informed Consent Procedure for Certain Hazardous Chemicals and Pesticides in International Trade.
    • It is a multilateral treaty to promote shared responsibilities in relation to importation of hazardous chemicals.
    • The convention promotes open exchange of information and calls on exporters of hazardous chemicals to use proper labelling, include directions on safe handling, and inform purchasers of any known restrictions or bans.
    • Signatory nations can decide whether to allow or ban the importation of chemicals listed in the treaty, and exporting countries are obliged to make sure that producers within their jurisdiction comply.
    • India is a party to the convention, with 161 other parties.

    What is the Prior Informed Consent (PIC) procedure?

    • The PIC procedure is a mechanism for formally obtaining and disseminating the decisions of importing parties on their willingness to receive future shipments of hazardous chemicals.
    • The PIC procedure is a mechanism for formally obtaining and disseminating the decisions of importing Parties as to whether they wish to receive future shipments of those chemicals listed in the Convention.
    • For each of the chemicals listed in Annex III and subject to the PIC procedure a decision guidance document (DGD) is prepared and sent to all Parties.
    • All Parties are required to take a decision as to whether or not they will allow future import of each of the chemicals in Annex III of the Convention.
    • These decisions are known as import responses.

    Which are the new chemicals listed?

    • Iprodione, a fungicide used on vines, fruits, trees and vegetables, has been classified as carcinogenic and toxic for reproduction.
    • Terbufos is a soil insecticide used commonly on sorghum, maize, beet and potatoes. It has also been found to pose risk to aquatic organisms due to its toxicity.
    • Both pesticides, which are used in agriculture, are known for their harmful impacts on human health and the environment.

     

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  • Rohini RH-200: ISRO eyeing 200th successful launch of Rohini RH-200

    rohini

    In a few weeks’ time, the Indian Space Research Organisation (ISRO) hopes to achieve a remarkable feat — the 200th successful launch of the Rohini RH-200 sounding rocket in a row.

    Rohini RH-200

    • RH-200 is a two-stage rocket capable of climbing to a height of 70 km bearing scientific payloads.
    • The first and second stages of RH-200 are powered by solid motors. The ‘200’ in the name denotes the diameter of the rocket in mm.
    • Other operational Rohini variants are RH-300 Mk-II and RH-560 Mk-III.
    • For years, the RH-200 rocket had used a polyvinyl chloride (PVC)-based propellant.
    • The first RH-200 to use a new propellant based on hydroxyl-terminated Polybutadiene (HTPB) was successfully flown from the TERLS in September 2020.
    • The first and second stages of RH200 rocket are powered by solid motors.
    • Since inception of RH200 rocket, both solid stages are processed using polyvinyl chloride (PVC) based propellant.
    • As compared to PVC based propellants, HTPB based propellant is more energetic, higher mechanical & interface properties and has less defects due to lower processing temperature.

    What basically is a Sounding Rocket?

    • A sounding rocket is an instrument-carrying rocket designed to take measurements and perform scientific experiments during its sub-orbital flight.
    • The rockets are used to launch instruments from 48 to 145 km above the surface of the Earth, the altitude generally between weather balloons and satellites.
    • The maximum altitude for balloons is about 40 km and the minimum for satellites is approximately 121 km.

    History of sounding rockets in India

    • Sounding rockets have an important place in the ISRO story.
    • The first sounding rocket to be launched from Thumba was the American Nike-Apache — on November 21, 1963.
    • After that, two-stage rockets imported from Russia (M-100) and France (Centaure) were flown. The ISRO launched its own version — Rohini RH-75 — in 1967.
    • The ISRO has launched more than 1,600 RH-200 rockets so far.
    • Currently, the RH200, RH300 MkII and RH560 Mk-III rockets are operational which were developed during the early phase of our journey in rocketry.

     

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  • 5G revolution and challenges

    5G revolution Context

    • Prime Minister Narendra Modi recently announced that 5G revolution deployment in India will commence sooner than expected.

    What is 5G technology?

    • 5G or fifth generation revolution  is the latest upgrade in the long-term evolution (LTE) mobile broadband networks.
    • 5G enables a new kind of network that is designed to connect virtually everyone and everything together including machines, objects, and devices.
    • It’s a unified platform which is much more capable than previous mobile services with more capacity, lower latency, faster data delivery rate and better utilisation of spectrum.

    How it evolved from 1G to 5G?

    • 1G: Launched in the 1980s. Analog radio signals and supported only voice calls.
    • 2G: Launched in the 1990s. Uses digital radio signals and supported both voice and data transmission with a Bandwidth (BW) of 64 Kbps.
    • 3G: Launched in the 2000s. With a speed of 1 Mbps to 2 Mbps it has the ability to transmit telephone signal including digitized voice, video calls and conferencing.
    • 4G: With a peak speed of 100 Mbps-1 Gbps it also enables 3D virtual reality.
    • 5G: with a speed of more than 1Gbps, it is capable of connecting entire world without limits.

    5G revolutionSalient features

    • Capability: 5G will provide much faster mobile broadband service as compared to the previous versions and will provide support to previous services like mission critical communication and the massive Internet Of Things (IoT).
    • Upgraded LTE: 5G is the latest upgrade in the long-term evolution (LTE) mobile broadband networks.
    • Speed: With peak delivering rate of up to 20 Gbps and an average of 100Mbps, it will be much faster as compared to its predecessors. The speed increment is partly achieved partly by using higher-frequency radio waves than previous networks.
    • Capacity: There will be up to 100 x increase in traffic capacity and network efficiency.
    • Spectrum usage: Will provide better usage for every bit of spectrum, from low bands below 1 GHz to high bands.
    • Latency: It’s expected to have lower latency with better instantaneous, real-time access of the data. The 5G, like 4G LTE, also uses Orthogonal Frequency Division Multiplexing (OFDM) but the new 5G NR (New Radio) air interface will enhance OFDM and provide better flexibility in data delivery.


    5G revolutionApplications of 5G technology

    • High-Speed mobile network: 5G will revolutionize the mobile experience with supercharged wireless network. Compared to conventional mobile transmission technologies, voice and high-speed data can be simultaneously transferred efficiently in 5G.
    • Entertainment and multimedia: 5G can provide 120 frames per second, high resolution and higher dynamic range video streaming without interruption. Audiovisual experience will be rewritten after the implementation of the latest technologies powered by 5G wireless. Augmented Reality and virtual Reality services will be better experienced over 5G.
    • Internet of Things: IoT applications collects huge amount of data from millions of devices and sensors and thus requires an efficient network for data collection, processing, transmission, control and real-time analytics which 5G network is a better candidate.

    Interesting facts about 5G

    According to researchers, about 1.5 billion people will have access to 5G by 2024.

    It may not seem like it at present, however, 5G will cover about 40% of the world.

    The security risks introduced BY 5G

    • Increased attack surface: With millions and even billions more connected devices, 5G makes it possible for larger and more dangerous attacks. Current and future vulnerabilities of the existing internet infrastructure are only exacerbated. The risk of more sophisticated botnets, privacy violations, and faster data extraction can escalate with 5G.
    • More IoT, more problems: IoT devices are inherently insecure; security is often not built-in by design. Each insecure IoT device on an organization’s networks represents another potential hole that an attacker can expose.
    • Decreased network visibility: With 5G, our networks will only expand and become more usable by mobile users and devices. This means much more network traffic to manage. But without a robust wide area network (WAN) security solution like Secure Access Service Edge (SASE) in place, companies may not be able to gain the network traffic visibility required to identify abnormalities or attacks.
    • Increased supply chain and software vulnerabilities: Currently and for the foreseeable future, 5G supply chains are limited. Vulnerabilities exist — particularly as devices are rushed to market — increasing the potential for faulty and insecure components. Compared to traditional mobile networks, 5G is also more reliant on software, which elevates the risk of exploitation of the network infrastructure.

    Challenges in rolling out 5G

    • Enabling critical infrastructures: 5G will require a fundamental change to the core architecture of the communication system. The major flaw of data transfer using 5G is that it can’t carry data over longer distances. Hence, even 5G technology needs to be augmented to enable infrastructure.
    • Financial liability on consumers: For transition from 4G to 5G technology, one has to upgrade to the latest cellular technology, thereby creating financial liability on consumers.
    • Capital Inadequacy: Lack of flow of cash and adequate capital with the suitable telecom companies (like Bharti Airtel and Vodafone Idea) is delaying the 5G spectrum allocation.

    Way forward

    • India should not miss the opportunity and should proactively work to deploy 5G technology. We should focus on strengthening our cyber infrastructure.
    • 5G start-ups that enable this design and manufacturing capabilities should be promoted. This will spur leaps in the coverage, capacity and density of wireless networks.

    Conclusion

    • The recent recommendation of the Telecom Regulatory Authority of India to the government to develop a national road map for India to implement 5G in the best possible manner should include cyber security concerns.

    Mains question

    Q. 5G is already transforming and enhancing connectivity. In this context Discuss India’s preparedness and cybersecurity challenges that needs to be taken care of for earlier roll out of 5G.

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  • James Webb telescope : The most powerful space telescope

    James Webb telescopeContext

    • Much of the universe remains unknown. The James Webb telescope will hopefully provide a powerful window to help resolve some of the cosmos’s many mysteries.

    What is James Webb Space Telescope (JWST)?

    • It is a space telescope being jointly developed by NASA, the European Space Agency (ESA), and the Canadian Space Agency (CSA).
    • It has taken 30 years and $10bn to develop, and is being described as one of the grand scientific endeavors of the 21st Century.

    Where it is placed?

    • The James Webb Space Telescope will not be in orbit around the Earth, like the Hubble Space Telescope is – it will actually orbit the Sun, 1.5 million kilometres (1 million miles) away from the Earth at what is called the second Lagrange point or L2.

    Mission

    • It will be “a giant leap forward in quest to understand the Universe and our origins”, as it will examine every phase of cosmic history: from the Big Bang to the formation of galaxies, stars, and planets to the evolution of our own Solar System.

    james webb telescope Special features of JWST

    • Time machine in space: Powerful space telescopes, like JWST or the Hubble Telescope, are often called time machines because of their ability to view very faraway objects. The light coming from those objects, stars or galaxies, which is captured by these telescopes, began its journey millions of years earlier. Essentially, what these telescopes see are images of these stars or galaxies as they were millions of years ago. The more distant the planet or star, the farther back in time are the telescopes able to see.
    • Farthest from Earth: James Webb telescope will also be positioned much deeper into space, about a million miles from Earth, at a spot known as L2. It is one of the five points, known as Lagrange’s points, in any revolving two-body system like Earth and Sun, where the gravitational forces of the two large bodies cancel each other out.
    • Engineering marvel: JWST has one large mirror, with a diameter of 21 feet (the height of a typical two-storey building), that will capture the infra-red light coming in from the deep universe while facing away from the Sun.

    What is the goal of this telescope?

    • The telescope will be able to see just about anything in the sky.
    • However, it has one overriding objective – to see the light coming from the very first stars to shine in the Universe.
    • These pioneer stars are thought to have switched on about 100-200 million years after the Big Bang, or a little over 13.5 billion years ago.
    • James Webb telescope will be picking out groupings of these stars.

    james webb telescope Its significance

    • It is widely expected to unveil many secrets of the universe, particularly those related to the Formation of stars and galaxies in the early period the first few hundred million years after the Big Bang.
    • Some have called James Webb telescope  the “telescope that ate astronomy”.
    • It is said to look back in time to the Dark Ages of the universe.

    Conclusion

    • The universe is vast and most of it is unknown. We hope that the James Webb telescope, over its lifetime would provide us with a powerful window to help resolve some of the many mysteries of the cosmos and make it a little bit more comprehensible.

    Mains question

    Q. What is James Webb telescope experiment? Do you think it shades light on dark matter? Explain.  

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  • NASA’s DART mission prepares for an asteroid Dimorphos collision

    dart

    In the first-of-its kind NASA’s DART Mission is about to hit a small, harmless asteroid millions of miles away.

    What is DART Mission?

    • The main aim of the mission is to test the newly developed technology that would allow a spacecraft to crash into an asteroid and change its course.
    • It is a suicide mission and the spacecraft will be completely destroyed.
    • The target of the spacecraft is a small moonlet called Dimorphos (Greek for “two forms”).
    • It is about 160-metre in diameter and the spacecraft is expected to collide when it is 11 million kilometres away from Earth.
    • Dimorphos orbits a larger asteroid named Didymos (Greek for “twin”) which has a diameter of 780 metres.

    Why Dimorphos?

    • Didymos is a perfect system for the test mission because it is an eclipsing binary which means it has a moonlet that regularly orbits the asteroid.
    • It is observable when it passes in front of the main asteroid.
    • Earth-based telescopes can study this variation in brightness to understand how long it takes Dimorphos to orbit Didymos.

    Collision course

    • At the time of impact, Didymos and Dimorphos will be relatively close to Earth – within 6.8 million miles (11 million kilometers).
    • The spacecraft will accelerate at about 24,140 kilometers per hour when it collides with Dimorphos.
    • It aims to crash into Dimorphos to change the asteroid’s motion in space.
    • This collision will be recorded by LICIACube, or Light Italian CubeSat for Imaging of Asteroids, a companion cube satellite provided by the Italian Space Agency.
    • Three minutes after impact, the CubeSat will fly by Dimorphos to capture images and video.

    Why such mission?

    • Dimorphos was chosen for this mission because its size is relative to asteroids that could pose a threat to Earth.
    • The spacecraft is about 100 times smaller than Dimorphos, so it won’t obliterate the asteroid.
    • The fast impact will only change Dimorphos’ speed as it orbits Didymos by 1%, which doesn’t sound like a lot — but it will change the moon’s orbital period.

     

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  • Dvorak Technique of Weather Forecasting

    Recently, the American meteorologist Vernon Dvorak passed away at the age of 100 who pioneered the widely used Dvorak Technique.

    Who was Vernon Dvorak?

    • Dvorak was an American meteorologist best credited for developing the Dvorak (read as Do-rak) technique in the early 1970s.
    • The technique helps forecast the tropical storm.
    • His technique has saved the lives of millions of people across the world and will continue to do so.

    What is the Dvorak technique?

    • The Dvorak technique was first developed in 1969 and tested for observing storms in the northwest Pacific Ocean.
    • Forecasters used the available satellite images obtained from polar orbiting satellites to examine the features of the developing tropical storms (hurricanes, cyclones and typhoons).
    • During day time, images in the visible spectrum were used while at night, the ocean would be observed using infrared images.
    • It was a cloud pattern recognition technique based on a concept model of the development and decay of the tropical cyclone.

    Why is technique still widely in use?

    • Unlike land, ocean observations in the 1970s were sparse.
    • Today, there continues to be an improved network of land-based meteorological observations, either in the form of taking manual observations, installing automatic weather stations or automatic rain gauges.
    • On the other hand, ocean observations still remain limited.
    • There are many vast regions across the four oceans that have not been fully examined with meteorological instruments.
    • Ocean observations are mostly taken by deploying buoys or dedicated ships, but the number of observations from the seas is still not sufficient across the world.
    • That is why meteorologists have had to depend more on satellite-based imageries, and combine it with the available ocean-data at the time of forecasting the intensity and wind speed of the tropical cyclones.

     

     

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  • Scientists remain sceptical about how Liquid Nano Urea benefits crops

    Liquid Nano Urea, a fertilizer patented and sold by the Indian Farmers Fertiliser Cooperative Ltd. (IFFCO), has been approved by the government for commercial use because of its potential to substantially reduce the import bill, but several experts have questioned the science underlying its efficacy.

    What is Liquid Nano Urea (LNU)?

    • Urea is chemical nitrogen fertiliser, white in colour, which artificially provides nitrogen, a major nutrient required by plants.
    • LNU is essentially urea in the form of a nanoparticle.
    • It is sprayed directly on the leaves and gets absorbed by the plant.
    • Fertilisers in nano form provide a targeted supply of nutrients to crops, as they are absorbed by the stomata, pores found on the epidermis of leaves.
    • According to IFFCO, liquid nano urea contains 4 per cent total nitrogen (w/v) evenly dispersed in water.
    • The size of a nano nitrogen particle varies from 20-50 nm. (A nanometre is equal to a billionth of a metre.)

    Using LNU

    • The liquid nano urea produced by IFFCO Limited comes in a half-litre bottle priced at Rs 240, and carries no burden of subsidy currently.
    • By contrast, a farmer pays around Rs 300 for a 50-kg bag of heavily subsidised urea.
    • According to IFFCO, a bottle of the nano urea can effectively replace at least one bag of urea.

    How efficient is LNU?

    • While conventional urea has an efficiency of about 25 per cent, the efficiency of liquid nano urea can be as high as 85-90 per cent.
    • Conventional urea fails to have the desired impact on crops as it is often applied incorrectly, and the nitrogen in it is vaporized or lost as a gas.
    • A lot of nitrogen is also washed away during irrigation.
    • Liquid nano urea has a shelf life of a year, and farmers need not be worried about “caking” when it comes in contact with moisture.

    Significance of LNU

    • This patented product is expected to not only substitute imported urea, but to also produce better results in farms.
    • Apart from reducing the country’s subsidy bill, it is aimed at reducing the unbalanced and indiscriminate use of conventional urea.
    • It will help increase crop productivity, and reduce soil, water, and air pollution.

    Why in news now?

    • Plants need nitrogen to make protein and they source almost all of it from soil bacteria which live in a plant’s roots and have the ability to break down atmospheric nitrogen, or that from chemicals such as urea into a form usable by plants.
    • Chemically packaged urea is 46% nitrogen, which means a 45-kg sack contains about 20 kg of nitrogen.
    • Contrastingly, nano urea sold in 500-ml bottles has only 4% nitrogen (or around 20 g).
    • How this can compensate for the kilograms of nitrogen normally required puzzles scientists.

     

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  • Cyborg Cockroaches to help in urban search-rescue missions

    cyborg

    Japanese scientists have devised a system that can create cyborg cockroaches that are part insect and part machine.

    Cyborg cockroaches

    • Cyborg cockroaches’ movements are controlled by tiny integrated circuits.
    • They will be able to conduct surveillance in procedures like urban search and rescue, environmental monitoring and inspection of areas dangerous to humans.
    • By equipping the cockroaches with small wireless control modules, handlers will be able to control the insect’s legs remotely for long periods of time.
    • The team used Madagascar cockroaches, which are not only the largest species of cockroaches, reaching an estimated 6 cm, but are also known for making hissing sounds when disturbed, which they make by expelling air from the openings on their back.

    How is it powered?

    • The researchers also designed the system to be rechargeable, by powering it with a super thin 0.004 mm solar cell module that is installed on the dorsal side of the cockroach’s abdomen.
    • This was done to ensure that the battery remains charged and the cockroach can be controlled for long periods of time, while simultaneously ensuring that the movement remains unhindered.

     

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  • India’s first Dark Sky Reserve to come up in Ladakh

    In a first-of-its-kind initiative, the Department of Science & Technology (DST) has announced the setting up of India’s first dark sky reserve at Hanle in Ladakh in the next three months.

    What is a Dark Sky Reserve?

    • A dark-sky reserve is an area, usually surrounding a park or observatory that is kept free of artificial light pollution.
    • The purpose of a dark sky preserve is generally to promote astronomy.
    • Because different national organizations have worked independently to create their programs, different terms have been used to describe the areas.

    How is it designated?

    • A dark sky reserve is a designation given to a place that has policies in place to ensure that a tract of land or region has minimal artificial light interference.
    • The International Dark Sky Association is a US-based non-profit that designates sites as international dark sky places, parks, sanctuaries and reserves, depending on the criteria they meet.
    • Several such reserves exist around the world but none so far in India.

    Dark Sky Reserve at Hanle

    • Hanle, which is about 4,500 metres above sea level, hosts telescopes and is regarded as one of the world’s most optimal sites for astronomical observations.
    • However, ensuring that the site remains well-suited for astronomy implies keeping the night sky pristine, or ensuring minimal interference to the telescopes from artificial light sources such as electric lights and vehicular lights from the ground.
    • The site will have activities to help in boosting local tourism and economy through interventions of science and technology.

    The Himalayan Chandra Telescope, High Energy Gamma Ray Telescope, Major Atmospheric Cherenkov Experiment Telescope and GROWTH-India are the prominent telescopes located at the Hanle observatory.

    Ideal conditions in India

    • The Indian Astronomical Observatory, the high-altitude station of the IIA, is situated to the north of Western Himalayas, at an altitude of 4,500 metres above mean sea level.
    • Located atop Mt. Saraswati in the Nilamkhul Plain in the Hanle Valley of Changthang, it is a dry, cold desert with sparse human population.
    • The cloudless skies and low atmospheric water vapour make it one of the best sites in the world for optical, infrared, sub-millimetre, and millimetre wavelengths.

     

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  • Cybercrime in India

    cybercrimeContext

    • There has been a steady spike in cases of cybercrime in the last five years.

    What is a cybercrime?

    • Cybercrime is any criminal activity that involves a computer, networked device or a network. While most cybercrimes are carried out in order to generate profit for the cybercriminals, some cybercrimes are carried out against computers or devices directly to damage or disable them.

    What data states?

    • India reported 52,974 cases of cybercrime in 2021, an increase of over 5 per cent from 2020 (50,035 cases) and over 15 per cent from 2019 (44,735 cases), according to latest government data.

    How many cyber criminals are caught in India?

    In 2020, over 18.4 thousand people were arrested on account of cyber-crimes across India.

    Who is responsible for cyber security centre or state?

    • With ‘police’ and ‘public order’ being in the State List, the primary obligation to check crime and create the necessary cyberinfrastructure lies with States.
    • At the same time, with the IT Act and major laws being central legislations, the central government is no less responsible to evolve uniform statutory procedures for the enforcement agencies.

    cybercrimeStatus of cyber investigation

    • There is no separate procedural code for the investigation of cyber or computer-related offences.
    • As electronic evidence is entirely different in nature when compared with evidence of traditional crime, laying down standard and uniform procedures to deal with electronic evidence is essential.

    What are general guidelines for cyber investigation?

    • The broad ‘guidelines for the identification, collection, acquisition and preservation of digital evidence’ are given in the Indian Standard IS/ISO/ IEC 27037: 2012, issued by the Bureau of Indian Standards (BIS).
    • This document is fairly comprehensive and easy to comprehend for both the first responder (who could be an authorised and trained police officer of a police station) as well as the specialist (who has specialised knowledge, skills and the abilities to handle a wide range of technical issues).
    • The guidelines, if followed meticulously, may ensure that electronic evidence is neither tampered with nor subject to spoliation during investigation.

    cybercrime
    What is the meaning of digital evidence or electronic evidence?

    • Digital evidence is information stored or transmitted in binary form that may be relied on in court. It can be found on a computer hard drive, a mobile phone, among other places. Digital evidence is commonly associated with electronic crime, or e-crime, such as child pornography or credit card fraud.

    Arjun Khotkar vs Kailash Gorantyal Judgement

    • The Court held that a certificate under Section 65B(4) of the Indian Evidence (IE) Act was a mandatory pre-requisite for the admissibility of (secondary) electronic record if the original record could not be produced.

    What is Indian evidence act?

    • The Indian Evidence Act, originally passed in India by the Imperial Legislative Council in 1872, during the British Raj, contains a set of rules and allied issues governing admissibility of evidence in the Indian courts of law.

    Judicial activism for cyber security

    • A significant attempt has been made by the higher judiciary in this field also. As resolved in the Conference of the Chief Justices of the High Court in April 2016, a five judge committee was constituted in July 2018 to frame the draft rules which could serve as a model for the reception of digital evidence by courts.
    • The committee, after extensive deliberations with experts, the police and investigation agencies, finalised its report in November 2018, but the suggested Draft Rules for the Reception, Retrieval, Authentication and Preservation of Electronic Records are yet to be given a statutory force.

    What needs to be done?

    • Upgrade cyber labs: The cyber forensic laboratories of States must be upgraded with the advent of new technologies.
    • Digital rupee: Offences related to cryptocurrency remain under-reported as the capacity to solve such crimes remains limited. The central government has proposed launching a digital rupee using block-chain technology soon.
    • Empowering states: State enforcement agencies need to be ready for new technologies. The Centre helps in upgrading the State laboratories by providing modernisation funds, though the corpus has gradually shrunk over the years.
    • Need for localisation of data: Most cybercrimes are trans-national in nature with extra-territorial jurisdiction. The collection of evidence from foreign territories is not only a difficult but also a tardy process.

    Conclusion

    • Centre and States must not only work in tandem and frame statutory guidelines to facilitate investigation of cybercrime but also need to commit sufficient funds to develop much-awaited and required cyber infrastructure.

    Mains question

    Q.With the increasing use of computers in society, cybercrime has become a major issue. Analyse the loopholes in cyber security regime of India by giving suggestions to rectify the same.

     

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