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⚛️ Atomning planetar modeli – oddiy, lekin juda muhim tushuncha! Atom markazida musbat zaryadlangan yadro joylashgan, elektronlar esa sayyoralar kabi uning atrofida aylanadi 🌍✨ Shu model orqali biz moddaning tuzilishini yaxshiroq tushunamiz! 📌 Qisqa qilib: — Yadro markazda — Elektronlar orbitada — Harakat doimiy ⚡ 💡 Fizikani oson va qiziqarli o‘rganamiz! 👇 Agar tushunarli bo‘lsa, like bos va do‘stlaringga ulash! #fizika #atom #planetarmodel #talim #fyp

Öğrencilerimin Atom modeli ⚛️⚛️⚛️⚛️. #atom #atommodel #atommodeli #atommodelleri #atommodels #atommooremacro #modelosatomicos #proton #nötron #norton #elektron #electron #experiment#fizik#kimya#biyoloji

🖐️📱 Kamu yakin barusan menyentuh HP? Secara rasa, iya. Tapi secara sains… tidak pernah. Saat jarimu menekan layar, atom-atomnya tidak benar-benar bersentuhan. Yang ada hanyalah gaya tolak antar partikel yang otak kita anggap sebagai sentuhan. Semua benda tersusun dari atom, dan sebagian besar atom adalah ruang kosong. 🤯 Jadi setiap tap dan swipe, yang kamu rasakan bukan sentuhan, tapi interaksi energi. Dunia ini ternyata lebih aneh dari yang kita kira. 👇 Follow untuk fakta sains ringan yang bikin mikir. #capcut #claymations #edukasi #saints #atom

The other day when I posted the Mercury atom picture, I thought why not I post a reel about the structure of an atom and here it is!! Hope this reel helps you clearly in understanding the structure of an atom. #Structureofanatom #Chemistry #Atom #chemistryylearner #chemistrylearner

▪︎Bir kağıt parçasını alıp ikiye böldüğünüzde ve daha da küçük kesmeye devam ettiğinizde elinizde ne kalır? Bu, Yunan filozof Democritus'un M.Ö. 400'lerde üzerinde kafa yorduğu düşünce deneyine benzer bir deneydir. Demokritos, eğer kesmeye devam ederseniz, her şeyin küçük sonsuz parçacıklardan oluşması gerektiği sonucuna varmıştır. Bunlara bölünemez anlamına gelen atomos adını verdi. Demokritos'un haklı olduğunun kanıtlanması 19. yüzyıla kadar sürdü ve 20. yüzyılda önemli bir değişiklik yapıldı. Atomlar vardır ama kesinlikle bölünemez değillerdir. ▪︎Demokritos'un da haklı olarak tahmin ettiği gibi, atomlar maddenin temel birimleridir. Lego tuğlaları gibi, virüslerden Venüs'e kadar her şeyi yapmak için birçok farklı şekilde bir araya getirilebilirler. Ancak Demokritos katı atomları resmederken, gerçek atomlar çoğunlukla boş uzaydır. Aslında atomun modern resmi Güneş Sistemi ile çarpıcı bir benzerlik taşır. Merkezde çekirdek yer alır. Açık ara en büyük, en kütleli nesne olarak Güneş'in rolünü oynar. Güneş (çoğunlukla) hidrojen ve helyumdan oluşur. Benzetmeyi biraz esnetirsek, çekirdekte de sadece iki element vardır: protonlar ve nötronlar.Uzakta, daha hafif elektronlar çekirdeğin yörüngesinde tıpkı gezegenlerin evimizdeki yıldızın yörüngesinde döndüğü gibi dönerler, her ne kadar elektronların kendileri top değil de bulanık nesneler olsalar da. ▪︎Bütün bunları nereden biliyoruz? İngiliz fizikçi Joseph John Thomson, 1890'larda atomu parçalara ayırma konusunda ilk adımları atan kişiydi. Thomson bir dizi deneyle atomların pozitif ve negatif yüklü parçalardan oluştuğunu keşfetti. Eski büyük televizyonlara güç verenler gibi katot ışınlarını kullanarak daha da ileri gitti. Korpüskül adını verdiği negatif yüklü parçaların atomun kütlesine kıyasla çok daha hafif olduğunu gösterdi. Aslında, bir hidrojen atomundan 1840 kat daha hafifti. Ne yazık ki Thomson bu küçük cisimcikleri (daha sonra elektronlar olarak adlandırıldı) erikli pudingin içindeki erikler gibi pozitif yüklü bir madde topunun içinde yüzerken yanlış bir şekilde resmetti. ... #atoms #electrons #protons #atom #physics

Maqueta Escolar de la Estructura del Átomo👩🏼🏫📒📏✏️ #Manitoscreativas_Aiskel #atomo #quimica #fisica #nucleare #ciencia #chemistry #energia #scienza #covid #tomo #nuclearenergy #cultura #energianucleare #chimica #dise #radiazioni #divulgazione #fissione #science #o #energiaatomica #universo #molecula #iaea #art #fissionenucleare #live

Learn Structure of Atom in 30 seconds ⏱️ Save this for revision 📌 Science made EASY 💙 #teachersofinstagram #engageandinspire #scienceteacher #StructureOfAtom #ScienceNotes LearnScience PKsLearningStudio ChemistryBasics StudentLife TeacherContent StudyReels EasyLearning ScienceMadeSimple

Electrons spinning, creativity winning – check out my atomic model!⚛️🪩 . . Dm to place order 📥 #project #model#assignments #science#viral#trending#instagram#reel #atom

An atom is the fundamental building block of matter, representing the smallest unit of an element that retains its characteristic chemical properties. Atoms are made of a positively charged nucleus (containing protons and neutrons) surrounded by negatively charged electrons. They are incredibly small, generally about 0.1 nanometers, and are mostly empty space. #Atom #AtomicStructure #Chemistry #ScienceReels #StudyGram

What Does an Atom Really Look Like? 👉 Let’s explore the difference between these two atomic models and why the second one is considered more accurate structure of an atom: The first part of the video depicts the atomic model proposed by Niels Bohr in 1913. While most of us are only familiar with this atomic structure, but it isn’t entirely accurate. It portrays electrons as tiny particles following well-defined paths around the nucleus, which isn’t quite how it works. The Bohr model was a stepping stone in our understanding of atoms, but it has limitations. And the second part of the video depicts the Electron Cloud Model. This model suggests electrons occupy regions or orbitals around the nucleus with a certain probability. We can’t pinpoint an electron’s exact location but predict the probability of finding it in a specific region. This explains the cloud-like appearance. The second atomic model, the electron cloud model, is considered more scientifically accurate than the Bohr model for two reasons: 1. Electron Behavior: Electrons don’t behave like miniature planets following precise paths. The electron cloud model acknowledges their wave-like nature, explaining their existence within probabilistic regions around the nucleus. 2. Spectral Lines: The electron cloud model explains the observed spectral lines of elements better than the Bohr model. These lines arise from electron transitions between energy levels within the electron cloud. 😊Did you find this fact interesting? Then, leave a ❤️ and a comment! 🎯Follow @modernsciencex for more interesting Videos!! 🌐CREDIT COMPOSITION/FORMATTING/ EDITING @glamour_physics @modernsciencex Reposted from: @glamour_physics Follow @modernsciencex For more insightful content on Science and Astronomy Video credit of Atomic Orbitals animation: Sci Pills ( YouTube channel) ☆`☆•☆ CONTENT USED FOR EDUCATIONAL PURPOSES ONLY ☆•☆•☆ #space #atom #nuclearphysics #particlephysics #quantummechanics #electron #atomic #astronomy #timetravel #universe #quantumphysics
Top Creators
Most active in #gambar-atom
Reels Graph Intelligence.
Advanced mapping of high-affinity Instagram Reels semantic patterns identified within the #gambar-atom ecosystem.
Strategic Implementation
Our semantic engine has identified these specific pattern clusters as high-affinity matches for #gambar-atom. Integrated usage of #gambar-atom with strategic Reels tags like #gambar and #gambarous is statistically linked to a significant increase in initial Reels discovery velocity.
In-Depth Hashtag Analysis: #gambar-atom
Expert Review • June 4, 2026 • Based on 12 Reels
Executive Overview
#gambar-atom is an actively used Instagram hashtag. Across the 12 trending reels analyzed on this page, the content has accumulated a combined total of 595,640 views— demonstrating healthy engagement activity within this content vertical. The top creator ecosystem features 8 notable accounts, led by @belajarbareng.9 with 407,556 total views. The hashtag's semantic network includes 14 related keywords such as #gambar, #gambarous, #atome, indicating its position within a broader content cluster.
Viewership & Reach Analysis
The 12 reels in this dataset have generated a combined 595,640 views, translating to an average of 49,637 views per reel. This viewership level reflects a more community-focused reach, where content primarily circulates within a dedicated audience group.
The highest-performing reel in this dataset received 407,556 views. This viral outlier performance is 821% of the average reel performance in this set. This significant gap between the top performer and the average highlights the "viral lottery" nature of this hashtag — breakout hits can achieve massive scale.
Content Overview & Top Creators
The #gambar-atom ecosystem is dominated by short-form video content (Reels), aligning with Instagram's algorithmic preference for video-first distribution. There are 8 distinct accounts contributing to the trending feed. The top creator, @belajarbareng.9, has contributed 1 reel with a total viewership of 407,556. The top three creators — @belajarbareng.9, @modernsciencex, and @manitosmagicas_blanca — together account for 87.1% of the total views in this dataset. The semantic network of #gambar-atom extends across 14 related hashtags, including #gambar, #gambarous, #atome, #gambare. Creators often use these tags together to reach overlapping audiences.
Discoverability & Reach Potential
The discoverability metrics for #gambar-atom indicate an active content ecosystem. The average of 49,637 views per reel demonstrates consistent audience reach. For creators using #gambar-atom, authentic, niche-specific content that adds real value tends to perform well.
Analyst Verdict
#gambar-atom demonstrates the hallmarks of a steadily growing Instagram hashtag. With an average of 49,637 views per reel, the viewership metrics position this hashtag as a growing content category. Creators like @belajarbareng.9 and @modernsciencex are leading the charge, setting viewership benchmarks for the community.
Frequently Asked Questions
Everything about #gambar-atom on Instagram
Global Reels Trends
Explore high-velocity Instagram Reels hashtags currently shaping global discovery.













