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Physics Spmnetic!™ 🔭

Physics Spmnetic!™ 🔭

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This channel belongs to @thespmneticofficial, and a platform for sharing notes and exercises 🤘🏻 For inquiries, directly ask in a discussion group ✨

Ko'proq ko'rsatish

📈 Telegram kanali Physics Spmnetic!™ 🔭 analitikasi

Physics Spmnetic!™ 🔭 (@physicsspmnotes) Malay til segmentidagi kanali faol ishtirokchi. Hozirda hamjamiyat 26 525 obunachidan iborat bo'lib, Taʼlim toifasida 7 360-o'rinni va Malayziya mintaqasida 1 310-o'rinni egallagan.

📊 Auditoriya ko‘rsatkichlari va dinamika

невідомо sanasidan buyon loyiha tez o‘sib, 26 525 obunachiga ega bo‘ldi.

12 Iyul, 2026 dagi oxirgi ma’lumotlarga ko‘ra kanal barqaror faollikka ega. Oxirgi 30 kunda obunachilar soni 568 ga, so‘nggi 24 soatda esa 71 ga o‘zgardi va umumiy qamrov yuqori darajada qolmoqda.

  • Tasdiqlash holati: Tasdiqlanmagan
  • Jalb etish (ER): Auditoriya o‘rtacha 13.51% darajada jalb etiladi. Nashrdan keyingi dastlabki 24 soatda kontent odatda umumiy obunachilar sonining 5.23% ini tashkil etuvchi reaksiyalarni to‘playdi.
  • Post qamrovi: Har bir post o‘rtacha 3 583 marta ko‘riladi; birinchi sutkada odatda 1 386 ta ko‘rish yig‘iladi.
  • Reaksiyalar va o‘zaro ta’sir: Auditoriya faol: har bir postga o‘rtacha 6 ta reaksiya keladi.
  • Tematik yo‘nalishlar: Kontent chapter, halo, jawab, physics, soalan kabi asosiy mavzularga jamlangan.

📝 Tavsif va kontent siyosati

Muallif resursni shaxsiy fikrni ifoda etish maydoni sifatida ta’riflaydi:
This channel belongs to @thespmneticofficial, and a platform for sharing notes and exercises 🤘🏻 For inquiries, directly ask in a discussion group ✨

Yuqori yangilanish chastotasi (oxirgi ma’lumot 13 Iyul, 2026 da olingan) sababli kanal doimo dolzarb va katta qamrovli bo‘lib qoladi. Analitika auditoriya kontent bilan faol hamkorlik qilishini, uni Taʼlim toifasidagi muhim ta’sir nuqtasiga aylantirishini ko‘rsatadi.

26 525
Obunachilar
+7124 soatlar
+1957 kunlar
+56830 kunlar
Postlar arxiv
Tips Fizik Cara nak tau berkadar langsung / sonsang berdasar rumus How to determine it is directly proportional / inversely proportional Contoh : ⬆️ y = XD ⬆️ d ⬇️ y = XD         d⬇️ Tips : 1) effect di y , di belakang yang akan menentukan sama ada y tu ⬆️ or ⬇️ 2) salah 1 constant/Pemboleh ubah je boleh beri kesan... 3) ⬆️ meningkat / increases ⬇️ menurun / decreases 4) 🗂 kalau bermanfaat, boleh tulis dalam nota ok 🔖 Tips by @spm2033 #tipsspmhere

Good luck kepada sesiapa yg exam esok! Do your best!!

📌 Fizik K1 +Skema ✍ PPT T5 2022 🌹 Maktab Rendah Sains Tun Ghafar Baba 💚 Menu 2022   💙 Menu 2023

📌 Fizik +Skema ✍ MIP 2023 🌹 JPN Terengganu 💚 Menu 2022   💙 Menu 2023

MIP Fizik2024.pdf5.12 MB

photo content

photo content

WHY DON'T WE FEEL THE EARTH MOVE? Every day we stand, sit, sleep on the earth without feeling anything strange. whereas the earth is moving insanely fast — spinning on its axis at about 1,670 km per hour and orbiting the sun at a speed of 107,000 km per hour. Dear sirs and madams, why don't we feel all that? the answer: because everything happens regularly and consistently, like we are in a smooth moving train — as long as we don't brake, turn or crash, we won't even notice that the train is moving. Not only that, we, the atmosphere and all things on earth actually move at the same speed. That's why when we jump, we don't 'fall behind'. This is called the principle of inertia — an object in motion will continue to move unless there is an external force, so all the movements of the earth happen in harmony, until our brain considers it 'normal'. But if the earth suddenly stops suddenly — even for a moment — the impact is like everything flying out. Fortunately, physics with the permission of God Almighty does not allow such things to happen without a big reason So, continue living as usual... even though we are actually 'gliding' in space in the most elegant style. Cr: my physic teacher

Nak dalam English jugak ke??

KENAPA KITA TAK RASA BUMI BERGERAK? Setiap hari kita berdiri, duduk, tidur atas bumi tanpa rasa apa-apa pelik. padahal bumi tengah bergerak gila laju — berpusing pada paksinya sekitar 1,670 km sejam dan mengorbit matahari pada kelajuan 107,000 km sejam. Taaaaaapiiii tuan tuan dan puan puan yang dihormati sekalian, kenapa kita tak rasa pun semua tu? jawapannya: kerana semuanya berlaku secara tetap dan konsisten, macam kita dalam kereta api yang gerak lancar — selagi tak brek, belok atau langgar, kita takkan perasan pun kereta tu tengah meluncur. Bukan tu je, kita, atmosfera dan semua benda di atas bumi sebenarnya bergerak sama laju. Sebab tu bila kita lompat, kita tak 'tertinggal' ke belakang. Ini dipanggil prinsip inersia — benda yang tengah bergerak akan terus bergerak melainkan ada daya luar, jadi semua pergerakan bumi berlaku secara harmoni, sampai otak kita anggap itu 'normal'. Tapi kalau bumi tiba-tiba berhenti secara mengejut — walau sesaat — impaknya macam semua benda terbang keluar. Nasib baik fizik dengan izin Allah Taala tak benarkan benda macam tu berlaku tanpa sebab besar So, teruskan hidup macam biasa... walaupun sebenarnya kita tengah ‘meluncur’ dalam angkasa lepas dengan gaya paling elegan. Cr: my physic teacher

That's all for today, good night!👍

Cr: Ciku Hau

Cr: to Ciku Hau

Repost from Ciku Hau
Modul TTV Fizik Tingkatan 4.pdf3.25 MB

BM version🌹
BM version🌹

Cr: Amazing physics
Cr: Amazing physics

Revisi Fizik F5.pdf2.02 MB

Please forgive me if there are any wrong or weird physics term. I only use Google translate to translate it from malay to English 😭

Why was Bernoulli wrong? Submarines don't use Bernoulli's principle because that principle deals with fluid flow and pressure — typically used in airplanes, wings, and water pipes, not things that sink or float in fluids. So, submarines float and sink due to changes in buoyancy (Archimedes), not flow pressure (Bernoulli).

Kenapa Bernoulli salah? Kapal selam tak guna prinsip Bernoulli sebab prinsip tu berkaitan dengan aliran bendalir dan tekanan — biasanya digunakan dalam kapal terbang, sayap, dan paip air, bukan benda yang tenggelam atau terapung dalam bendalir. Jadi, kapal selam terapung dan tenggelam sebab perubahan daya apungan (Archimedes), bukan tekanan aliran (Bernoulli).