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🔬#MESExperiments - Introduction to MES Science Experiments!
16:27
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🔬#MESExperiments 1: Gyroscopes Precess Upwards on Low Friction & Rotating Surfaces
10:56
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🔬#MESExperiments 2: Super Precision Gyroscope Precesses Upwards Even at Very Steep Angle
18:41
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🔬#MESExperiments 3: Gyroscopes Exert 'Inertial Forces' With Zero Loss of Spin Rate
18:45
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🔬#MESExperiments 4: Gyroscopes Precess with Zero ‘Angular Momentum’
2:16
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🔬#MESExperiments 5: Gyroscopes Precess Upwards on Ice with Zero Centripetal Force
9:35
🔬#MESExperiments 6: Gyroscopes Precess with Zero Centripetal Force on Ice Even at Horizontal Angle
5:04
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🔬#MESExperiments 7: Gyroscopes Precess Upwards on Ice Even While Outer Casing Spins
13:28
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🔬#MESExperiments 8: Large Gyro Wheel Precesses at 1000X Torque Over-Unity
4:02
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🔬#MESExperiments 9: Gyroscope With Counterweight Hung on a String Rises 'DOWNWARDS'!
12:09
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🔬#MESExperiments 10: Gyroscopes on a String Can Rise But Not if Sufficient Counterweight is Added
12:13
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🔬#MESExperiments 11: Increasing Gyroscope Spin Speed Doesn't Necessarily Increase Rising Rate
14:26
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🔬#MESExperiments 12: Gyroscopes at Steeper Angles Usually Means Exponentially Longer Rising Times
9:56
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🔬#MESExperiments 13: Steepest Gyroscope Rising Experiment Ever! 74 Degrees from the Vertical
2:14
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🔬#MESExperiments 14: Angle of Gyroscope Has Little Effect on Rate/Period of Precession
10:38
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🔬#MESExperiments 15: Gyroscopes Tend to Rise Until Precession Rate Has Peaked #Interesting
8:41
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🔬#MESExperiments 16: Gyroscopes Can Even Rise on the Tip of a Thin Needle!
3:19
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🔬#MESExperiments 17: Gyroscopes Can Even Rise on a Slanted Needle
2:01
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🔬#MESExperiments 18: Gyroscopes Even Rise on a Flimsy Rotating Needle
1:15
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🔬#MESExperiments 19: A Gyroscope is an Inverted Pendulum Without Electronic Sensors
15:27
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🔬#MESExperiments 20: Forced Precession of a Gyroscope Generates Inertial Lift (i.e. Weight Loss)
1:04
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🔬#MESExperiments 21: Added Weight Can Make a Gyroscope Rise Faster
2:58
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🔬#MESExperiments 22: Added Weight Can Make a Gyroscope Rise Faster (No Casing Rotation)
2:25
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🔬#MESExperiments 23: Added Weight Doesn’t Always Make Gyroscopes Rise Faster #Nuance
10:54
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🔬#MESExperiments 24: Gyroscope Rises Even With 70% Added Weight #Amazing
2:16
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🔬#MESExperiments 25: Increasing Spin Friction Can Make Gyroscopes Rise Much Faster
25:07
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🔬#MESExperiments 26: Increasing Spin Friction Can Make a Gyroscope Rise from a Very Steep 72° Angle
4:40
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🔬#MESExperiments 27: Spin Friction Can Make Gyroscope Rise from Steep 70° Angle (No Casing Rotation)
2:43
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🔬#MESExperiments 28: Magnetic Spinning Top Aligns Opposite of Magnetic Attraction
2:20
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🔬#MESExperiments 29: Magnetic Spinning Top Aligns Opposite of Asymmetric Magnetic Attraction
3:16
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🔬#MESExperiments 30: Magnetic Spinning Top Aligns Opposite of Both Gravity and Magnetic Attraction
2:11
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🔬#MESExperiments 31: Mechanical Demonstration of Inertia by Francis McCabe
3:21
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🔬#MESExperiments 32: Comparing Tippe Top, Phi Top, and Gyroscope Rising Tests
2:54

🔬#MESExperiments 6: Gyroscopes Precess with Zero Centripetal Force on Ice Even at Horizontal Angle

1 year ago
135

In #MESExperiments number 6, I repeat my 5th experiment of a precessing gyroscope on ice but this time set the gyroscope at a near horizontal angle. And yet again the gyroscope demonstrates the (mainstream) physics-defying ability to magically precess with ZERO centripetal force, at sufficient gyro spin rate. In other words, the gyroscope precess as if it magically lost all its “mass” and thus generating ZERO “horizontal force” at the stem; and as explained in Experiment number 4, the gyroscope literally precesses without “angular momentum”. This is some truly mind-boggling properties of gyroscopes which, if viewed with the critical eye, requires a re-writing of centuries old (mainstream) physics textbooks and even science in general.

Once the gyroscope loses spin speed, the “centripetal force” gradually increases which can be seen by the stem of the gyroscope moving in a circular direction on the near frictionless ice surface. But even at these slower spin speeds, the amount of “centripetal force” is almost negligible. This is because, as shown in my earlier experiments, it just takes an incredibly small amount of “friction” to hold the gyroscope in place. And in fact it is this gyroscope’s magical property of seemingly behave “massless” that allows it to precess perfectly balanced even on the tip of your finger.

I can’t stress how monumental and game-changing these HIDDEN-IN-PLAIN-SITE properties of gyroscopes, because after all a gyroscope is essentially a constrained spinning top, and which a spinning top itself is just matter in rotation… Which begs the questions what is “matter” and why does rotation magically change its properties?

Stay Tuned for #MESExperiments Number 7!

View full experiment results on the Hive blockchain: https://peakd.com/mesexperiments/@mes/mesexperiments-6-gyroscopes-precess-with-zero-centripetal-force-on-ice-even-at-horizontal-angle

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#AntiGravity video series: https://peakd.com/antigravity/@mes/series
#FreeEnergy video series: https://mes.fm/freeenergy-playlist .

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