How To Talk Like A Climber! Beta Breakdown
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- Опубліковано 2 жов 2024
- Hey everyone trying a new format out. In this episode I will do a beta breakdown and drop some jargon for you to pick up. Let me know what you think about this format and maybe I will do a future one. Thanks for all the support and see ya in the next one!
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Not the best climber.. Yet 😂.
The way you reacted to your own joke made me laugh. Good job again sir!
There must be so much room in that bouldering wall! My local is so small that you have like 5 problems starting from any place along the ground.
@@magwitch oh yeah it’s a big area. If your ever in NJ check out method rock gym.
@@BetaClimbers yeah man, I wouldn't mind coming across the pond to do some climbing, would have to make sure to do some real stuff though. Have you ever ventured to the UK for some sweet sweet trad?
@@magwitch on the list lol 😂
4:01 aka "bicycle".
I feel like I'm the only one here admiring how clean this looks 😁
But then again I am a novice climber 🤣😎🤙
Work that plastic mountain boi.
🤣🤣🤣😅
Home gym!!! 💪🏿🪨
Should have put "this is called warming up" somewhere😁
What's the grade on the first problem?
V7-V8
That's a nice looking gym! 😄
Yep that’s method climbing gym
You have hella hairy arms 😆
Tape is not fun 🤣
First comment!!!
Friction does not depend on the amount of surface area ;)
It does. You are wrong.
This is actually quite a complex topic and I assume that you are using the assumption friction is proportional only to the normal force which is only true for some systems. In the case of climbing shoe rubber on rock, the surface area most certainly affects friction. For a good example take tape, if you take a very small section of tape but layer more bits on top, it will still have a much lower friction than a longer peice of tape with the same mass.
@A K That's under a simplified model of friction called Coloumb friction. Geckos certainly don't let Coloumb bother them. Even Ohm's law for resistors is only an approximation to real resistors.
@@provuksmc6619 physics crash course should help. It`s a complex question. Drag the same box on the different sides and measure force.
@@MushookieMan yes, it`s simplified of course. I totally understand that`s an assumptuion, but this is the science we have for the moment :) I suppose bigger muscles and more precise control makes us feel like it`s more friction. Anyways, it`s a discussable question.