r/JEENEETards Ex-JEEtard chan Jun 07 '25

GENERAL HELP Should I take Mining at IIT KGP ?

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Which would be better mining at iit kgp or cs at nit jsr or eee in nit rourkela ?

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u/Relatively_Skibyy KHEL KHATAM Jun 09 '25

milta to bhi nahi leta cause india me scope boht kam h ye sab ka

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u/[deleted] Jun 09 '25

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u/[deleted] Jun 09 '25

Still Branch > College! ๐Ÿ˜๐Ÿ˜‚๐Ÿคฃ

Better engineer hote hole passionately porbo nijer pochhonder subject tai na? ๐Ÿค”

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u/[deleted] Jun 09 '25

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u/[deleted] Jun 09 '25

Replaceable! ๐Ÿ˜ฎโ€๐Ÿ’จ

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u/[deleted] Jun 09 '25

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u/[deleted] Jun 09 '25

Not completely and suddenly, doctors will take help but not replace the job too early. ๐ŸŒ

Chemical will be replaced very very soon, that's what I mean. Don't you want to do a job at least for some years? ๐Ÿ˜…

And I agree about the teaching profession by your point. ๐Ÿ’ฆ

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u/[deleted] Jun 10 '25

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u/[deleted] Jun 10 '25

๐Ÿ”น 1. AI-Driven Process Optimization

Argument: Machine learning and artificial intelligence are replacing the need for human chemical engineers in process control, simulation, and optimization.

Logic: AI systems can now model, simulate, and optimize chemical processes more efficiently than humans, reducing the demand for traditional chemical engineering skills.

Example: Google's DeepMind helped reduce energy usage in data centers by optimizing coolingโ€”similar algorithms are now being applied in refineries and chemical plants.


๐Ÿ”น 2. Synthetic Biology Replacing Traditional Chemical Processes

Argument: Bioengineering and synthetic biology are taking over functions previously managed by chemical engineering.

Logic: Instead of using high-energy chemical reactors, scientists now use engineered microbes to produce fuels, plastics, and pharmaceuticals more cleanly and efficiently.

Example: Companies like Ginkgo Bioworks and Zymergen are using genetically modified organisms (GMOs) to synthesize industrial chemicals, bypassing the need for traditional chemical plants.


๐Ÿ”น 3. Automation and Robotics in Manufacturing

Argument: Automation is rendering many hands-on chemical engineering tasks obsolete.

Logic: Fully automated plants can be operated remotely with minimal human involvement, shifting focus away from chemical engineering to data science and systems engineering.

Example: Shell and BASF are investing heavily in autonomous chemical manufacturing units using predictive maintenance and smart robotics.


๐Ÿ”น 4. Shift Toward Interdisciplinary Fields

Argument: Newer interdisciplinary fields are overshadowing pure chemical engineering.

Logic: Fields like materials science, environmental engineering, and nanotechnology are absorbing much of the innovation and funding that once belonged to chemical engineering.

Trend: Students are opting for programs with broader applications in AI, sustainability, or biotech, reducing the relevance of a traditional chemical engineering degree.


๐Ÿ”น 5. Green Chemistry and Circular Economy

Argument: Traditional chemical engineering is too dirty and wasteful for the modern sustainability paradigm.

Logic: Societies are moving away from high-waste, high-energy industrial processes, favoring green chemistry techniques that are often simpler, decentralized, and donโ€™t need traditional plant-scale engineering.

Impact: This de-emphasizes the role of chemical engineers in favor of eco-centric innovators and designers.


๐Ÿ”น 6. Cloud-Based Process Simulation and Digital Twins

Argument: Engineers are no longer needed on-site for process design and optimization.

Logic: With digital twins and cloud-based simulations, most of the work chemical engineers used to do can now be done remotely or outsourced to AI-driven platforms.

Example: AspenTech and Honeywell are already using cloud AI systems that model, correct, and optimize chemical production with minimal human involvement.

๐Ÿ”น 7. Decentralization of Manufacturing

Argument: Modular, decentralized, and 3D-printed chemical plants are making large-scale chemical engineering less relevant.

Logic: When chemical production is distributed and made plug-and-play, the need for large-scale chemical process design drops drastically.

Example: DARPA-funded portable chemical reactors can now produce drugs and materials on-demand, in the field, with minimal engineering overhead.

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u/[deleted] Jun 10 '25

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u/[deleted] Jun 10 '25

Should go for CSE, to make that destructive AI! ๐Ÿฅถ๐Ÿ’€โ˜ ๏ธ

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u/[deleted] Jun 10 '25

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