Brilliant.org ve NASA Webb Telescope kullanıcılarının Instagram profillerinin yan yana karşılaştırması. Takipçi sayısı, etkileşim, aktivite ve performans karşılaştırması.
Profil Genel Bakış
Account size, health metrics, and growth indicators
Account Health
@brilliantorg
85
Excellent
Account Health
@nasawebb
100
Excellent
435.8K
Takipçi
11%
59
Takip Edilen
323
Gönderi
20%
Healthy ratio

NASA Webb Telescope
@nasawebb
The Official *NASA* James Webb Space Telescope account Launch: Dec. 25, 2021. First images: July 12, 2022.
3.5M
Takipçi
89%
34
Takip Edilen
1.3K
Gönderi
80%
Healthy ratio
Ana Metrikler Karşılaştırması
Gelişmiş Metrikler
Hesap Seviyesi
435.8K followers
Range: 50K-500K
@brilliantorg
3.5M followers
Range: 1M-10M
@nasawebb
Etkileşim Kalitesi
@brilliantorg
0.06%
Benchmark: 1-3%
@nasawebb
2.15%
Benchmark: 0.2-0.5%
Takip Edilen/Takipçi Oranı
@brilliantorg
1:7.4K
Very influential
@nasawebb
1:104.2K
Very influential
Comment-to-Like Ratio
Higher = more thoughtful engagement
Virality Potential
Engagement per 1K followers (0-100 scale)
İçerik Yoğunluğu(posts per 1K followers)
@brilliantorg
0.74
Moderate@nasawebb
0.36
ModerateJolygram Intelligence Metrics
Advanced analytics combining reach, engagement, content quality, and growth patterns
Growth Velocity Index
Recent growth momentum
Audience Quality Score
Quality of follower base
Content Performance Index
Engagement per follower
Overall Influence Index
Combined influence potential
Intelligence Metrics provide deeper insights into creator effectiveness, audience quality, and growth momentum beyond basic follower counts. These metrics help identify authentic influence and sustainable growth patterns.
En İyi Gönderiler

Exponential functions describe quantities that change by constant percentages rather than constant amounts. They take the form f(x) = a·b^x, where a is the initial value and b is the base. When b > 1, the function represents exponential growth, and when 0 < b < 1, it represents exponential decay. This means the function’s value multiplies by the same factor for each increase in x, producing a smooth curve that rises or falls quickly and approaches, but never touches, the x-axis. These functions appear in many real-world situations, such as population growth, compound interest, and radioactive decay, where change accelerates or slows over time. Their distinctive shape and consistent rate of change make exponential functions essential for modeling rapid processes and predicting how quantities evolve in both natural and human-made systems. I’ve always believed that understanding why each step works is far more meaningful than simply memorizing procedures. That’s why I enjoy using Brilliant - their interactive lessons don’t just hand you the answer; they help you uncover the reasoning behind it. When you get to manipulate the equations yourself and actually see how each transformation impacts the result, the concept becomes intuitive and memorable. It’s that hands-on exploration that transforms math from something you follow into something you truly understand. Like this video and follow @mathswithmuza for more! #math #maths #education #stem #learn #learning #function #foryou #coding #ai #chatgpt #physics #mathematics #reels #school #highschool #college #university

Don’t let anyone dull your shine 💫 The heart of galaxy M77 is shining so brightly in this Webb telescope image, it nearly outshines the galaxy itself. The intense glow is due to gas being pulled into a tight and rapid orbit around the central black hole. The motion of the gas heats it up, releasing tremendous amounts of radiation. The first image is Webb’s mid-infrared view with swirling filaments of dust shown in blue. The glowing orange bubbles along the arms are being carved out by newly-formed star clusters. In the second image, the near-infrared reveals a bar spanning 6,000 light-years across the central region. This bar is enclosed by a bright ring, called a starburst ring, formed by the inner ends of the galaxy’s two spiral arms. Starburst regions in galaxies are zones of high star formation rates. The third image is a composite image, combining both mid and near-infrared shots into one. Those bright orange lines radiating out of the center of all images are diffraction spikes, an optical effect caused by the telescope itself. When observing a bright object such as a star, the light gets slightly bent (or diffracted) around some of the telescope’s structures. Due to Webb’s optics, its images have a six-plus-two-pointed pattern around bright objects. Hubble images have four-pointed patterns due to its structure. Credit: ESA/Webb, NASA & CSA, A. Leroy #NASA #Webb #Galaxy
nasawebb has 733.3K more likes on their top post
Hashtag Stratejisi
6
Hashtag'li
6
Hashtag'siz
4
Hashtag'li
8
Hashtag'siz
@brilliantorg daha güçlü hashtag etkisi var
Etkileşim Trendleri
+2.5%
Etkileşim değişikliği
Beğeni
Yorum
-86.0%
Etkileşim değişikliği
Beğeni
Yorum
@brilliantorg son dönemde daha iyi ivme gösteriyor
Paylaşım Ritmi
@brilliantorg
@nasawebb
Tutarlılık puanı paylaşım düzenliliğini yansıtır. Daha yüksek = kitle için daha güvenilir program.
Uzman Kararı
Genel Karar:
@nasawebb çoğu ana metrikte önde.
Takipçi
@nasawebb erişim ve takipçi hacminde hakim.
Etkileşim Oranı
@nasawebb kitle büyüklüğüne göre daha yüksek etkileşim sunuyor.
Hızlı Özet
Data updated based on recent public posts.
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