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National Engineering Society of Uzbekistan (NESU) 🇺🇿

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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🚀 Engineering Club in Navoi Presidential School successfully held the first seminar! 💡In this seminar, our club members exp
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🚀 Engineering Club in Navoi Presidential School successfully held the first seminar! 💡In this seminar, our club members explored new engineering concepts, shared ideas, and gained practical knowledge through interactive discussions. 🔬Participants also had the opportunity to work on small projects and improve their problem-solving skills. More exciting activities are coming soon — stay tuned! 🔧 Navoiy shahridagi Prezident maktabida Muhandislik klubi tomonidan seminar tashkil etildi! 📌Ushbu seminar davomida klub a’zolari yangi muhandislik tushunchalarini o‘rganib, o‘zaro fikr almashishdi va amaliy bilimlarini oshirishdi. ✨Shuningdek, ishtirokchilar kichik loyihalar ustida ishlab, muammolarni hal qilish ko‘nikmalarini rivojlantirishdi. Oldinda yana ko‘plab qiziqarli tadbirlar bor — bizni kuzatishda davom eting! 📱 @kpsengineering

🔧Engineering Club in Khiva Presidential School kicks off with its second month! 💡In April, our club members will be learnin
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🔧Engineering Club in Khiva Presidential School kicks off with its second month! 💡In April, our club members will be learning about designing and constructing durable bridges. 🔬Also, we have planned a 3D project which will be revealed later in this month. Stay tuned to find out! 🔧Xiva shahridagi Prezident maktadwbining Muhandislik klubi 2-oy faoliyatini boshladi! 💡Aprel oyida klubimiz a'zolari chidamli ko'priklarni dizaynini yaratish va modellashtirish haqida o'rganishadi. 🔬Bundan tashqari, biz aprel oyi uchun 3D model loyihamizni boshladik. Bu haqida ko'proq bilishni xohlasangiz, kanalimizni kuzatib boring! 📱 @kpsengineering

🚀 Xivada "Inklyuziv IT oromgoh"ga start berildi! Zamin Education hamda Raqamli avlod loyihalari doirasida tashkil etilgan sa
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🚀 Xivada "Inklyuziv IT oromgoh"ga start berildi! Zamin Education hamda Raqamli avlod loyihalari doirasida tashkil etilgan sayyor inklyuziv IT oromgohiga start berildi. Ayni damda “engineering club” ning mentorlari ushbu IT oromgohda ham mentorlik qilishayapti. Jarayonni ushbu kadrlarda ko’rishingiz mumkin! 🚀 The “Inclusive IT Camp” has kicked off in Khiva! The traveling Inclusive IT Camp, organized within the framework of the Zamin Education and Digital Generation projects, has officially begun. At the moment, mentors from the “Engineering Club” are also participating in this IT camp as mentors. You can see the process in these clips! @kpsengineering

💡 Ever wondered how your phone lights up with just a tap? Let’s build that magic ourselves! A battery is like a tiny power s
💡 Ever wondered how your phone lights up with just a tap? Let’s build that magic ourselves! A battery is like a tiny power source, a wire is the path electricity travels through, and an LED is a small light that glows when electricity flows. Connect them in a loop, and boom—you’ve got a working circuit! 🔋Grab a battery, two wires, and an LED. Carefully connect one side of the LED to the battery using a wire, then complete the loop with the second wire. If it doesn’t light up, flip the LED—it only works one way! 💡Watch how the LED lights up only when the circuit is complete. This shows that electricity needs a full path to flow, just like a train needs tracks to move. Try adding a switch or testing different battery sizes. Share your glowing circuits or creative setups with the club! ⚡ 🤩Join our team. Engineering club is the best choice for you🤖. There is channel link.👇🏻 @psengineering

Have you ever wondered why wheels make movement easier? 🤔 Let’s explore it with a simple idea! Wheels help reduce friction,
Have you ever wondered why wheels make movement easier? 🤔 Let’s explore it with a simple idea! Wheels help reduce friction, which is the force that slows things down when surfaces rub against each other. When you use wheels, instead of dragging an object, it rolls smoothly—making it much easier to move. 🛞 For example, imagine pushing a heavy box 📦 vs. pushing a cart with wheels—the cart moves much faster and with less effort! 🔍 Why does this happen? Wheels turn sliding friction into rolling friction, which is much smaller. That’s why vehicles, carts, and even suitcases use wheels. 🎯 Challenge: Create your own toy car using bottle caps as wheels! 🧃🛞 Use simple materials like sticks, cardboard, and caps to build it, then test how smoothly it moves. A fun and creative way to understand how wheels make our daily life easier! 🚗✨
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🚀Recently, we held a kite competition among our Engineering Club members. In the awarding ceremony last night, all students
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🚀Recently, we held a kite competition among our Engineering Club members. In the awarding ceremony last night, all students received certificates of participation and those who got 1st, 2nd and 3rd were given special certificates. As we promised, all participants will also get 1 GB extra of internet, which is going to happen next semester. Congratulations to all participants! 🚀Yaqinda maktabimizning Muhandislik klubi a'zolari orasida varrak musobaqasi bo'lib o'tdi. Kecha bo'lib o'tgan taqdirlash marosimida har bir o'quvchi qatnashganligi uchun sertifikatlar bilan, 1-chi, 2-chi, 3-chi o'rin sohiblari bo'lgan o'quvchilarga esa maxsus sertifikatlar topshirildi. Biz va'da qailganimizdek, har bir qatnashchiga 1GB internet beriladi. Har bir qatnashchini tabriklaymiz! 🌐 Telegram

⚙️ Ever wondered how you can lift heavy things with almost no effort? 🤔 Levers are simple machines that help you do just tha
⚙️ Ever wondered how you can lift heavy things with almost no effort? 🤔 Levers are simple machines that help you do just that! Think of a seesaw or a crowbar—they use a pivot point (called a fulcrum) to multiply your force and make lifting easier. Grab a spoon and an eraser to try it yourself! 🥄 Place the eraser under the spoon as a pivot, then press down on one end to lift a small object on the other side. Move the eraser closer or farther and see what changes. Notice how less effort is needed when the fulcrum is closer to the object you’re lifting. That’s the magic of levers—smart positioning beats brute strength! Try different objects and setups, and challenge your friends to lift the heaviest item with the least effort! 💪 🤩Join our team. Engineering club is the best choice for you🤖. There is our channel link.👇🏻 @kpsengineering

🚀Today marks the second session of our Engineering Club. Students brought either bought or handmade kites to compete in a fu
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🚀Today marks the second session of our Engineering Club. Students brought either bought or handmade kites to compete in a full-blown kite competition. The Engineering Club mentor team also made a huge kite. The participants' kites were ranked based on flight performance, creative design, and maximum height reached. The prizes for all participants will be given next semester. Stay tuned for more competitions and events like this one! 🚀Bugun Muhandislik klubimizning ikkinchi tadbiri bo'lib o'tdi. Bunda o'quvchilar o'zlari sotib olgan yoki yasagan varraklarni uchirish bilan bellashishdi. Muhandislik klubi mentorlari ham kattaroq varrak yasashdi. Qatnashuvchilar varrakning qanday uchishi, dizayni va chiqqan balandligi orqali baholanishdi. Barcha qatnashuvchilarning sovg'alari keyingi semestrda beriladi. Yana shunday musobaqalarda qatnashishni istasangiz, kanalimizni kuzatib boring! 🌐 Telegram

The Science of Bridges 🌉 A bridge is not just a road across water. There is a lot of physics involved in the design of a bri
The Science of Bridges 🌉 A bridge is not just a road across water. There is a lot of physics involved in the design of a bridge. The design must ensure that the road on the bridge is safe for vehicles. At the same time, the bridge must be strong against the forces of gravity. ⚙️ A bridge has to withstand tension forces that stretch the material. There is also a squeezing effect on the material. The design must ensure that the squeezing effect is transferred to the ground. 🏗 There are various shapes that make a bridge strong. A truss bridge has triangles that make it strong. A suspension bridge has cables that make it strong. 🔺 You can be a mini-engineer at home. Make a bridge with a piece of paper or a pair of sticks. Drop coins on the bridge to find which design is strong. 🪙
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How to make a small electric lamp Essential Components: LED: 5mm or smaller (3V) Power Source: CR2032 3V coin cell battery Co
How to make a small electric lamp Essential Components: LED: 5mm or smaller (3V) Power Source: CR2032 3V coin cell battery Conductive Material: Aluminum foil, copper tape, or electrical wire Switch (Optional): Small push button or a simple sliding paper switch Housing: Paper, cardboard, or a small plastic bottle Step-by-Step Instructions Identify LED Terminals: The LED has a longer leg (anode/positive) and a shorter leg (cathode/negative). Create the Circuit Path: Connect the positive (+) side of the battery to the long leg of the LED and the negative (-) side to the short leg. Add a Switch (Optional): Place a switch in between one of the connections to allow turning the lamp on and off. Secure Connections: Use tape or solder to ensure all connections are tight, as loose wires will prevent the lamp from lighting. Build the Lamp Body: Place the circuit inside a small lamp-shaped structure, such as a paper shade or plastic container, to diffuse the light
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🚁 Ever wondered how helicopters stay in the air without wings? Spinning rotor blades act like tiny wings that push air downw
🚁 Ever wondered how helicopters stay in the air without wings? Spinning rotor blades act like tiny wings that push air downward, creating lift that pulls the helicopter up. When the rotor tilts slightly, the lift tilts too, pushing the helicopter forward, backward, or sideways. ✂️Grab a strip of paper, cut and fold it into a simple paper helicopter rotor, then drop it from a safe height. Watch closely as the blades spin while it falls—this spinning helps slow the fall, just like real helicopter rotors. 🌀Notice how the spinning blades push air and create lift that slows the drop. If the rotor tilts a bit, it may drift to the side while falling. That’s the same idea helicopters use to move in different directions. 🚀Try it with different paper sizes and compare how long each rotor stays in the air. Share your coolest rotor designs and drop results with the club! 🤩Join our team. Engineering club is the best choice for you🤖. There is our channel's link👇🏻. Channel link: @kpsengineering

Paper planes might look simple, but their shape plays a big role in how they fly. The design of the wings, the weight of the
Paper planes might look simple, but their shape plays a big role in how they fly. The design of the wings, the weight of the nose, and the width of the plane all affect speed, balance, and flight distance. Try a fun experiment: fold three different paper plane designs. For example, make a dart plane with narrow wings, a glider with wide wings, and another design of your choice. Launch them from the same spot with the same throwing force. Watch how each plane behaves in the air. Some may fly fast and straight, while others glide slowly but travel farther. Notice which design stays stable and which one drops quickly. Measure or estimate the distance each plane travels and compare your results. Which shape works best? Share your best plane design and flight distance with the group! 🚀
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🚀 Balloon Rocket Experiment 🎈 Have you ever wondered how rockets fly in space? 🌌 You can learn the basic idea with a simpl
🚀 Balloon Rocket Experiment 🎈 Have you ever wondered how rockets fly in space? 🌌 You can learn the basic idea with a simple balloon rocket experiment. First, tie a long string between two points and pass a straw through the string. Then tape a balloon to the straw and inflate it without tying the end. When you release the balloon, the air rushes out and pushes the balloon forward along the string. This force is called thrust. 🚀 What is thrust? Thrust is the force that moves rockets forward. When gas is pushed out of a rocket engine, the rocket moves in the opposite direction. The balloon shows the same principle in a simple way. 🎯 Challenge: Launch your balloon rocket and measure how far it travels along the string . Try different balloon sizes 🎈 or different amounts of air 💨 and see how the distance changes. Share a photo or video of your Balloon rocket experiment in the Telegram group and tell us which design worked best! 🚀
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🚀 Engineering in action at our school! 🪁 Our Engineering Club has officially held its first session, and it was an exciting
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🚀 Engineering in action at our school! 🪁 Our Engineering Club has officially held its first session, and it was an exciting start. Students built their own kites and learned about the principles of flight that keep them in the air. While designing and assembling the kites, participants explored ideas like balance and air resistance in a fun, hands-on way. 🚀 Maktabimizda muhandislik amalda! 🪁 Maktabimizning Muhandislik Klubi o‘zining birinchi tadbirini o‘tkazdi. Tadbir davomida o‘quvchilar varraklar yasashdi va ularning uchishi ortidagi fizika qonunlari bilan tanishishdi. Varraklarni yig‘ish jarayonida o‘quvchilar muvozanat va havo qarshiligi kabi tushunchalarni amaliy tarzda o‘rganishdi. 🌐 Telegram

🌅 Good morning everyone. Have a nice day 👍

🌀 Ever launched a tiny helicopter made from a rubber band? Let’s turn a simple stretch into spinning flight! Energy can hide
🌀 Ever launched a tiny helicopter made from a rubber band? Let’s turn a simple stretch into spinning flight! Energy can hide in everyday things. When you twist or stretch a rubber band, it stores energy that can be released to create motion. Grab a rubber band, two craft sticks or straws, and a simple paper rotor. Twist the rubber band tight, let go, and watch the rotor spin as your mini helicopter lifts or whirs through the air! 🛩 Notice how the more you twist the band, the faster the rotor spins. That’s stored energy being released and turning into movement right before your eyes. Try different rotor sizes or rubber bands and see which design spins the longest. Share your best flying builds or slow-motion spin videos with the Engineering Club! 🔧 @kpsengineering

🚀 Ready to bend some light like a pro? 🌈 Light isn’t just for seeing—it can be twisted, split, and bounced to create all so
🚀 Ready to bend some light like a pro? 🌈 Light isn’t just for seeing—it can be twisted, split, and bounced to create all sorts of cool effects! Grab a small mirror and a flashlight, or even sunlight through a window. Try reflecting the light onto different surfaces and angles—can you make it hit a target or make a rainbow? Notice how the angle of the mirror changes where the light lands and how colors appear. Share your reflections, funny setups, or rainbow pics with the group! @kpsengineering

🏆 Monthly Competitions Every month, we will organize competitions based on the projects we create. 🪁 First Competition: Kit
🏆 Monthly Competitions Every month, we will organize competitions based on the projects we create. 🪁 First Competition: Kite Challenge There will be two categories: 1️⃣ Build & Test Students will build their own kite during the sessions and then test it. 2️⃣ Bring & Compete Students can bring their own kite and compete. ✨ Build. Experiment. Create. Stay tuned for more projects and exciting engineering challenges!

🚀 Welcome to the Engineering Club We are excited to start our new Engineering Club for Grade 5, 6, and 7 students! “A place
🚀 Welcome to the Engineering Club We are excited to start our new Engineering Club for Grade 5, 6, and 7 students! “A place where ideas turn into real projects.” This club allows students to build small projects and turn their ideas into real things. We started this club because we want to apply the knowledge from our classes in real life through fun and practical activities. During our weekly sessions: We first explain a simple concept Then we apply it by building and testing a project. Students will build, test, and improve their own creations. 🎯 Our goal To help students explore different fields of engineering and technology. In this club, students will learn to: • Apply knowledge in real life • Use tools like 3D printers and telescopes • Design and build their own projects