Side-by-side Instagram profile comparison of Brilliant.org vs ScienceAlert. Followers, engagement, activity, and performance compared.
Profile Overview
Account size, health metrics, and growth indicators
Account Health
@brilliantorg
85
Excellent
Account Health
@sciencealert
95
Excellent
435.8K
Followers
33%
59
Following
323
Posts
6%
Healthy ratio

ScienceAlert
@sciencealert
Official Instagram for ScienceAlert.com GET OUR FREE SCIENCE NEWSLETTER HERE👇
899.4K
Followers
67%
181
Following
5.1K
Posts
94%
Healthy ratio
Key Metrics Head-to-Head
Advanced Metrics
Account Tier
435.8K followers
Range: 50K-500K
@brilliantorg
899.4K followers
Range: 500K-1M
@sciencealert
Engagement Quality
@brilliantorg
0.06%
Benchmark: 1-3%
@sciencealert
0.04%
Benchmark: 0.5-1%
Following/Followers Ratio
@brilliantorg
1:7.4K
Very influential
@sciencealert
1:5K
Very influential
Comment-to-Like Ratio
Higher = more thoughtful engagement
Virality Potential
Engagement per 1K followers (0-100 scale)
Content Density(posts per 1K followers)
@brilliantorg
0.74
Moderate@sciencealert
5.71
ActiveJolygram 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.
Top Posts

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
sciencealert has 215 more likes on their top post
Hashtag Strategy
6
With Hashtags
6
Without Hashtags
3
With Hashtags
9
Without Hashtags
@brilliantorg has stronger hashtag impact
Engagement Trends
+2.5%
Engagement shift
Likes
Comments
-14.9%
Engagement shift
Likes
Comments
@brilliantorg shows better recent momentum
Posting Rhythm
@brilliantorg
@sciencealert
Consistency score reflects regularity of posting. Higher = more reliable schedule for audience.
Expert Verdict
Overall Verdict:
@brilliantorg delivers higher engagement relative to audience size.
Followers
@sciencealert dominates in reach and follower volume.
Engagement Rate
@brilliantorg delivers higher engagement relative to audience size.
Quick Summary
Data updated based on recent public posts.
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