National Engineering Society of Uzbekistan (NESU) 🇺🇿
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🇺🇿 National Engineering Society of Uzbekistan (NESU) — O'zbekiston bo'ylab yosh muhandislarni birlashtiruvchi hamjamiyat. Bizning maqsadimiz innovatsiyalar, STEM ta'limi va amaliy loyihalar orqali kelajak muhandislarini shakllantirish.
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This announcement means a lot to us, and we can't wait to share it with you.
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A new chapter starts tonight.
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🚨 Something big is coming.
We've been working on this for a while, and we're finally ready to share it.
Today at 8:00 PM.
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The Weight of Nothing
Did you know that 95% of the universe is completely invisible to us? Everything we can see, touch, and interact with—stars, planets, trees, and even our own bodies—makes up only about 5% of the universe. The rest is composed of Dark Matter (about 27%) and Dark Energy (about 68%). We know they exist because of their gravitational effects, but we still don't know exactly what they are!
"Hechnima"ning vazni
Bilarmidingiz, koinotning 95% qismi biz uchun mutlaqo koʻrinmasdir? Biz koʻrib, ushlab va his qila oladigan barcha narsalar — yulduzlar, sayyoralar, daraxtlar va hatto oʻz tanamiz ham koinotning atigi 5% qismini tashkil qiladi. Qolgan qism esa Yashirin modda (taxminan 27%) va Yashirin energiyadan (taxminan 68%) iborat. Biz ularning borligini tortishish kuchiga koʻrsatadigan taʼsiri orqali bilamiz, lekin ularning oʻzi aynan nima ekanligini hali ham aniq bilmaymiz!
📱 @kpsengineering
⚙️The Engineering club is backkkk
Back with some exciting news
✨We’re sure you’ll love it…..
Do you wanna know what it is??
🔥Leave you reactions and we’re going to announce them soon….
📱 @kpsengineering
Bioengineering – Applying engineering principles to biology and medicine to create healthcare solutions like artificial organs and prosthetics.
Environmental Engineering – Developing solutions to protect the environment, reduce pollution, and ensure clean water and air.
Aerospace Engineering – Designing, building, and testing aircraft, satellites, missiles, and spacecraft.
Software Engineering – Writing code and building the digital systems, apps, and software that power today's tech.
Which field sparks your interest the most? 🚀
📱 @kpsengineering
Engineering Fields in a Nutshell 🛠️
Chemical Engineering – Designing processes to turn raw materials into useful products like medicine, plastics, and fuel.
Civil Engineering – Planning and building the infrastructure we use daily, such as roads, bridges, and skyscrapers.
Mechanical Engineering – Creating anything that moves, from simple gears and machines to cars and spacecraft.
Electrical Engineering – Developing power systems, electronics, and communication devices that
light up our world.
Computer Engineering – Integrating electronic engineering with computer science to design hardware, microprocessors, and smart devices.
📱 @kpsengineering
Did you know? 🚀
The Eiffel Tower can grow up to 15 cm taller during the summer! This happens due to thermal expansion, a physics principle where heat causes the iron structure to expand.
Bilasizmi? 🚀
Eylfel minorasi yozda 15 sm gacha oʻsishi mumkin! Bu issiqlik kengayishi deb ataladigan fizika qonuniyat tufayli yuz beradi — issiq haroratda temir konstruksiyasi kengayadi.
📱 @kpsengineering
How many questions did you get right?
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Gidravlik press yoki avtomobil tormoz tizimi fizikaning qaysi qonuniga asoslanib ishlaydi?
Nima uchun quyosh panellari (batareyalari) asosan toʻq koʻk yoki qora rangda boʻladi?
Qaysi fundamental kuch sayyoralarni Quyosh atrofida orbitada ushlab turadi?
Siqilgan prujina yoki tortilgan rezinada qanday energiya turi saqlanadi?
Harorat koʻtarilganda, koʻpchilik metallarning elektr qarshiligi qanday oʻzgaradi?
Why Ships Float But Needles Sink?
How can a massive steel ship float on water, while a tiny steel needle sinks instantly? The secret lies in a physics principle called buoyancy.
A needle is solid steel, so it is denser than water and sinks. However, a ship is not a solid block of metal—it is mostly filled with empty space and air. Because of this shape, the ship displaces an amount of water that weighs equal to or more than the ship itself. This creates an upward force that keeps the heavy ship safely afloat.
Nega ulkan kemalar suzadi, kichik igna esa choʻkib ketadi?
Qanday qilib ulkan poʻlat kema suvda suzib yuradi-yu, kichkinagina poʻlat igna esa darrov choʻkib ketadi? Buning siri fizikaning Arximed qonuni (suvning koʻtarish kuchi) ga bogʻliq.
Igna butunlay yaxlit poʻlatdan iborat boʻlgani uchun uning zichligi suvnikidan katta va u choʻkadi. Ammo kema yaxlit metall boʻlak emas — uning ichki qismi asosan havo va boʻshliqdan iborat. Shunday shakli tufayli kema oʻz vazniga teng yoki undan koʻproq miqdordagi suvni siqib chiqaradi. Bu esa kemani suv yuzasida ushlab turadigan yuqoriga yoʻnaltirilgan kuchni hosil qiladi.
📱 @kpsengineering
🏗The Man Who Saved the Brooklyn Bridge: Washington Roebling
When the Chief Engineer of the Brooklyn Bridge, John A. Roebling, died from an accident just as construction began in 1869, the project seemed doomed. His 32-year-old son, Washington Roebling, stepped up to take his place.
To build the bridge's massive foundations, workers had to labor inside "caissons"—giant underwater wooden boxes pumped with compressed air. Washington spent countless hours down there with his men. Disaster struck when he developed decompression sickness (the "bends"), leaving him paralyzed, partially blind, and unable to visit the site.
Refusing to give up, Washington watched the construction through binoculars from his apartment window. His wife, Emily Warren Roebling, became his eyes and hands. She learned higher mathematics and bridge engineering to relay his precise technical instructions to the field engineers. Together, they completed the engineering marvel in 1883.
Engineering takeaway: Brilliant designs are only half the battle; true engineering success requires absolute resilience and adaptability in the face of unexpected failure.
🏗️ Bruklin koʻprigini qutqargan muhandis: Vashington Rebling
1869-yilda Bruklin koʻprigi qurilishi boshlanishi bilanoq, uning bosh muhandisi Jon Rebling baxtsiz hodisa tufayli vafot etadi va loyiha toʻxtab qolish xavfi ostida qoladi. Uning oʻrnini 32 yoshli oʻgʻli, muhandis Vashington Rebling egallaydi.
Koʻprikning ulkan poydevorini qurish uchun ishchilar suv ostidagi siqilgan havo bilan toʻldirilgan maxsus gʻavvoslik qutilari (kessonlar) ichida ishlashlari kerak edi. Vashington ham ishchilari bilan birga suv ostida soatlab vaqt oʻtkazadi. Buning oqibatida u kesson kasalligiga (kuchli bosim oʻzgarishi asorati) chalinadi. Kasallik uni falaj qilib, koʻrish qobiliyatini zaiflashtiradi va u qurilish maydoniga bora olmay qoladi.
Taslim boʻlishni istamagan Vashington qurilish jarayonini oʻz xonadoni oynasidan durbin orqali kuzatadi. Uning rafiqasi Emili Uorren Rebling esa uning koʻzi va qoʻliga aylanadi. Emili erining aniq texnik koʻrsatmalarini muhandislarga yetkazish uchun oliy matematika va koʻpriksozlik muhandisligini mukammal oʻrganib chiqadi. Er-xotinning matonati sababli 1883-yilda ushbu muhandislik moʻjizasi muvaffaqiyatli yakunlanadi.
Muhandislikdan xulosa: Mukammal loyiha — bu gʻalabaning yarmi xolos. Haqiqiy muhandislik muvaffaqiyati kutilmagan qiyinchiliklar qarshisida chekinmaslik va moslasha olish qobiliyatini talab qiladi.
📱 @kpsengineering
Gidravlik presslar (masalan, mashina ustaxonalaridagi ogʻir yuk koʻtaradigan uskunalar) fizikaning qaysi qonuniga asoslanib ishlaydi?
