Applied Thermal Physics Laboratory

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Research Laboratory; Nanoscience, Materials Science, Condensed Matter Physics; Energy, Recording Media, Bioprobes; Structural, Electrical, Thermal; Ferrites, Rare Earth, Multiferroics, Thermoelectric; Electrospinning

13/08/2026

ہم ریڈیو پر آواز سنتے ہیں، لیکن اس آواز کو اسٹوڈیو سے آپ تک پہنچانے کے پورے عمل میں کئی دلچسپ سائنسی اور تکنیکی مراحل شامل ہوتے ہیں۔

خوارزمی سائنس سوسائٹی کے ساتھ ریڈیو پاکستان لاہور کے خصوصی دورے میں طلبہ کو اسٹوڈیو، مکسنگ کنسولز اور نشریاتی نظام کو قریب سے دیکھنے کا موقع ملے گا۔ وہ جان سکیں گے کہ آواز کو ریکارڈ کرنے، منتقل کرنے اور دور دراز مقامات تک پہنچانے میں طبیعیات، برقیات اور مواصلاتی ٹیکنالوجی کس طرح ایک ساتھ کام کرتی ہیں۔

اگر آپ طبیعیات، برقیات، ذرائع ابلاغ یا مواصلاتی انجینئرنگ  میں دلچسپی رکھتے ہیں، تو یہ دورہ آپ کے لیے سیکھنے کا ایک منفرد موقع ہے۔ 

📻 ریڈیو نشریات کے پیچھے کام کرنے والی سائنس کو سمجھنے اور اس عمل کو قریب سے دیکھنے کے لئے اپنی نشست ابھی محفوظ کریں۔ 

📝 درخواست فارم : https://docs.google.com/forms/d/e/1FAIpQLSedT0cPViLizcpPHDKRegKvHsABz70UtodcEBq0_NWIhJtB2A/viewform?usp=dialog 

⚠️ نشستیں محدود ہیں۔

📌 خوارزمی سائنس سوسائٹی رکنیت کے لیے درخواست دیں:
https://khwarizmi.org/kss-memberships/

[ Radio Pakistan Lahore Tour, Broadcast Technology, Audio Engineering, Telecommunications Engineering, Electrical Engineering Students, Physics Students Lahore, KSS Student Activities, Khwarizmi Science Society (KSS), Lahore Science Foundry (LSF) ]

30/07/2026

On this day in 1925, physics laureate Werner Heisenberg submitted a paper that revolutionised quantum mechanics.

Heisenberg was only 23 years old when he submitted the paper "Quantum mechanical reinterpretation of kinematic and mechanical relations". For this theory and the applications of it which resulted especially in the discovery of allotropic forms of hydrogen, Heisenberg was awarded the Nobel Prize in Physics for 1932.

His new theory was based only on what can be observed, that is to say, on the radiation emitted by the atom. We cannot, he said, always assign to an electron a position in space at a given time, nor follow it in its orbit, so that we cannot assume that the planetary orbits postulated by Niels Bohr actually exist. Mechanical quantities, such as position or velocity should be represented, not by ordinary numbers, but by abstract mathematical structures called “matrices” and he formulated his new theory in terms of matrix equations.

Learn more about Heisenberg's work in his Nobel Prize lecture: https://www.nobelprize.org/prizes/physics/1932/heisenberg/lecture/

27/07/2026

Around two decades after it was first isolated, graphene - a thin flake of ordinary carbon, just one atom thick – could revolutionise everything from materials science to quantum physics.

Graphene is 100 times stronger than steel, more conductive than copper and transparent yet so dense that not even helium, the smallest gas atom, can pass through it.

Ever since physics laureates Andre Geim and Konstantin Novoselov extracted the graphene from a piece of graphite - found in ordinary pencils - the race has been on to manufacture it in large enough quantities for applications in aerospace, consumer electronics, quantum physics and beyond. Progress is now being made.

The wonder material is expected to accelerate the production of new consumer electronics that consume less energy. Due to its transparent and conductive properties, graphene could be used to make coatings for touch-screen displays and enable rollable e-paper, while electrodes made from the material or entirely new battery chemistries based on it, could increase charging speeds for phones and electric vehicles.

It is also hoped the conductive material could be used to maintain the march of progress in the chip and electronics industry by using it to make ever smaller transistors. Scientists have already demonstrated a graphene transistor gate roughly the size of a single carbon atom.

Aerospace engineers swiftly grasped the potential of graphene and while carbon fibre has enabled planes to become faster, greener and cheaper, incorporating graphene into existing materials to replace steel frames, for example, could improve performance again.

Learn more about the laureates who discovered graphene: https://www.nobelprize.org/prizes/physics/2010/summary

12/07/2026
01/07/2026

● TBH-ICTP School on Mathematics for Physics:

» Theoretical physics has historically driven humanity’s greatest discoveries, yet it remains critically underdeveloped in Pakistan today. The School on Mathematics for Physics is a 4-week, high-intensity workshop jointly organized by The Black Hole and The Abdus Salam International Centre for Theoretical Physics (ICTP). It is designed to equip and motivate the brightest minds with the essential mathematical toolkit required for cutting-edge physics research.

Visit the link given below for details and to apply:

https://theblackhole.pk/tbh-ictp-school-on-mathematics-for-physics

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COMSATS Institute Of Information Technology
Islamabad
44000

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