Basic Riemann Hypothesis Explained in 2 Minutes!

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Dive into the captivating world of prime numbers and unlock the secrets of the Riemann Hypothesis in this engaging 2-minute video! Designed for kids and rookies, this educational exploration takes you on an underwater adventure where you'll discover the hidden patterns of prime numbers along the number line. Explore the remarkable Riemann zeta function, a magical equation that offers clues to the distribution of these elusive numbers. Join us as we unravel the mysteries of mathematics and ignite your curiosity in this fun and informative journey. Watch now and embark on an exciting quest of number patterns and mathematical wonder!
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Cancellations of prime are easy to see when you use numbers in columns of 6. Prime times prime cancels prime.
Follow the 5. It travels backwards to the 25 (5 x 5). The 25 would have been prime. It is next to a 6. All primes are next to a six.
5 x 7 cancels the 35. The 35 is the left twin to 36. You can easily see this by following the 5 back 6 places to the 35 (you only go 6 places because you start initially on the first 5) or by following the 7, 4 spaces to the right to the 35
7 x 7 cancels the 49. The 49 is the right twin to 48. The 7 is in the first position (6n + 1). You move 6 spaces back to first position at the 49. (You only move 6 spaces because you started on the first 7)
On an on and on. Prime times prime cancels prime.

jeffreyluciana
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Would have been nice to see more technical math.

calvinjackson
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Does the Riemann zeta function actually predict where the primes are located or just how they are distributed? He seems to be saying it predicts the actual primes.

erdossuitcase
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I've liked and subscribed, and I hope to see more! Please consider adding #riemannhypothesis so more people can see this.

RSLT
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Lopez Sarah Martinez Cynthia Taylor Sarah

XrcyhikUbhdfbjdf
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Nothing incorrect here but the overall vagueness makes this largely useless for learning.

LASLOEGRI