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Cracking The Egg Sprinkler Mystery

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Dieser Beitrag hat 129 Kommentare
  1. What about different rotated curves to make the 3D object? eg. The Ball is a circle displaced one radius into the y axis from the origin of the x and y axis rotated about the y axis. So What would create creater flow? A straight line? A quadratic or higher order polynomial?

  2. What about different rotated curves to make the 3D object? eg. The Ball is a circle displaced one radius into the y axis from the origin of the x and y axis rotated about the y axis. So What would create creater flow? A straight line? A quadratic or higher order polynomial?

  3. What about different rotated curves to make the 3D object? eg. The Ball is a circle displaced one radius into the y axis from the origin of the x and y axis rotated about the y axis. So What would create creater flow? A straight line? A quadratic or higher order polynomial?

  4. Because their highly-tuned engineers intuition has identified this as ‚mysterious‘, ie: unexplained. All of science ultimately comes down to a desire to explain the unexplained… *correctly*.

    He could have simply said „The leprechauns did it“ or something equally vapid, but because he has an ounce of intellectual integrity (unlike those who deploy ’spiritual‘ and ‚religious‘ ‚explanations‘), he looked for an actual answer.

    He has found new applications of principles that may help someone.

  5. Because their highly-tuned engineers intuition has identified this as ‚mysterious‘, ie: unexplained. All of science ultimately comes down to a desire to explain the unexplained… *correctly*.

    He could have simply said „The leprechauns did it“ or something equally vapid, but because he has an ounce of intellectual integrity (unlike those who deploy ’spiritual‘ and ‚religious‘ ‚explanations‘), he looked for an actual answer.

    He has found new applications of principles that may help someone.

  6. Because their highly-tuned engineers intuition has identified this as ‚mysterious‘, ie: unexplained. All of science ultimately comes down to a desire to explain the unexplained… *correctly*.

    He could have simply said „The leprechauns did it“ or something equally vapid, but because he has an ounce of intellectual integrity (unlike those who deploy ’spiritual‘ and ‚religious‘ ‚explanations‘), he looked for an actual answer.

    He has found new applications of principles that may help someone.

  7. Because their highly-tuned engineers intuition has identified this as ‚mysterious‘, ie: unexplained. All of science ultimately comes down to a desire to explain the unexplained… *correctly*.

    He could have simply said „The leprechauns did it“ or something equally vapid, but because he has an ounce of intellectual integrity (unlike those who deploy ’spiritual‘ and ‚religious‘ ‚explanations‘), he looked for an actual answer.

    He has found new applications of principles that may help someone.

  8. Because their highly-tuned engineers intuition has identified this as ‚mysterious‘, ie: unexplained. All of science ultimately comes down to a desire to explain the unexplained… *correctly*.

    He could have simply said „The leprechauns did it“ or something equally vapid, but because he has an ounce of intellectual integrity (unlike those who deploy ’spiritual‘ and ‚religious‘ ‚explanations‘), he looked for an actual answer.

    He has found new applications of principles that may help someone.

  9. Because their highly-tuned engineers intuition has identified this as ‚mysterious‘, ie: unexplained. All of science ultimately comes down to a desire to explain the unexplained… *correctly*.

    He could have simply said „The leprechauns did it“ or something equally vapid, but because he has an ounce of intellectual integrity (unlike those who deploy ’spiritual‘ and ‚religious‘ ‚explanations‘), he looked for an actual answer.

    He has found new applications of principles that may help someone.

  10. Because their highly-tuned engineers intuition has identified this as ‚mysterious‘, ie: unexplained. All of science ultimately comes down to a desire to explain the unexplained… *correctly*.

    He could have simply said „The leprechauns did it“ or something equally vapid, but because he has an ounce of intellectual integrity (unlike those who deploy ’spiritual‘ and ‚religious‘ ‚explanations‘), he looked for an actual answer.

    He has found new applications of principles that may help someone.

  11. This is bullshit. Water moves up because of centrifugal forces. It sticks to the egg because water has a tendency to stick to objects. It causes the meniscus shape in test tubes and it is the reason why water drips down pipes. In fact, this won’t work with a fluid like mercury because of what I just said. These guys are fucking idiots.

  12. This is bullshit. Water moves up because of centrifugal forces. It sticks to the egg because water has a tendency to stick to objects. It causes the meniscus shape in test tubes and it is the reason why water drips down pipes. In fact, this won’t work with a fluid like mercury because of what I just said. These guys are fucking idiots.

  13. This is bullshit. Water moves up because of centrifugal forces. It sticks to the egg because water has a tendency to stick to objects. It causes the meniscus shape in test tubes and it is the reason why water drips down pipes. In fact, this won’t work with a fluid like mercury because of what I just said. These guys are fucking idiots.

  14. This is bullshit. Water moves up because of centrifugal forces. It sticks to the egg because water has a tendency to stick to objects. It causes the meniscus shape in test tubes and it is the reason why water drips down pipes. In fact, this won’t work with a fluid like mercury because of what I just said. These guys are fucking idiots.

  15. This is bullshit. Water moves up because of centrifugal forces. It sticks to the egg because water has a tendency to stick to objects. It causes the meniscus shape in test tubes and it is the reason why water drips down pipes. In fact, this won’t work with a fluid like mercury because of what I just said. These guys are fucking idiots.

  16. This is bullshit. Water moves up because of centrifugal forces. It sticks to the egg because water has a tendency to stick to objects. It causes the meniscus shape in test tubes and it is the reason why water drips down pipes. In fact, this won’t work with a fluid like mercury because of what I just said. These guys are fucking idiots.

  17. This is bullshit. Water moves up because of centrifugal forces. It sticks to the egg because water has a tendency to stick to objects. It causes the meniscus shape in test tubes and it is the reason why water drips down pipes. In fact, this won’t work with a fluid like mercury because of what I just said. These guys are fucking idiots.

  18. This is bullshit. Water moves up because of centrifugal forces. It sticks to the egg because water has a tendency to stick to objects. It causes the meniscus shape in test tubes and it is the reason why water drips down pipes. In fact, this won’t work with a fluid like mercury because of what I just said. These guys are fucking idiots.

  19. No this is not the Bernoulli Principle. The liquid can’t have a pressure difference because its surface is always touching the air which of course has the same pressure at the bottom and middle of the ball.

    The Bernoulli Principle is based on conservation of energy, which means if you want to speed up a liquid „pressure energy“ must be turned „speed energy“. But you are adding energy to the system by spinning the ball which is why the liquid can be accelerated without a pressure drop.

  20. No this is not the Bernoulli Principle. The liquid can’t have a pressure difference because its surface is always touching the air which of course has the same pressure at the bottom and middle of the ball.

    The Bernoulli Principle is based on conservation of energy, which means if you want to speed up a liquid „pressure energy“ must be turned „speed energy“. But you are adding energy to the system by spinning the ball which is why the liquid can be accelerated without a pressure drop.

  21. No this is not the Bernoulli Principle. The liquid can’t have a pressure difference because its surface is always touching the air which of course has the same pressure at the bottom and middle of the ball.

    The Bernoulli Principle is based on conservation of energy, which means if you want to speed up a liquid „pressure energy“ must be turned „speed energy“. But you are adding energy to the system by spinning the ball which is why the liquid can be accelerated without a pressure drop.

  22. No this is not the Bernoulli Principle. The liquid can’t have a pressure difference because its surface is always touching the air which of course has the same pressure at the bottom and middle of the ball.

    The Bernoulli Principle is based on conservation of energy, which means if you want to speed up a liquid „pressure energy“ must be turned „speed energy“. But you are adding energy to the system by spinning the ball which is why the liquid can be accelerated without a pressure drop.

  23. No this is not the Bernoulli Principle. The liquid can’t have a pressure difference because its surface is always touching the air which of course has the same pressure at the bottom and middle of the ball.

    The Bernoulli Principle is based on conservation of energy, which means if you want to speed up a liquid „pressure energy“ must be turned „speed energy“. But you are adding energy to the system by spinning the ball which is why the liquid can be accelerated without a pressure drop.

  24. No this is not the Bernoulli Principle. The liquid can’t have a pressure difference because its surface is always touching the air which of course has the same pressure at the bottom and middle of the ball.

    The Bernoulli Principle is based on conservation of energy, which means if you want to speed up a liquid „pressure energy“ must be turned „speed energy“. But you are adding energy to the system by spinning the ball which is why the liquid can be accelerated without a pressure drop.

  25. No this is not the Bernoulli Principle. The liquid can’t have a pressure difference because its surface is always touching the air which of course has the same pressure at the bottom and middle of the ball.

    The Bernoulli Principle is based on conservation of energy, which means if you want to speed up a liquid „pressure energy“ must be turned „speed energy“. But you are adding energy to the system by spinning the ball which is why the liquid can be accelerated without a pressure drop.

  26. No this is not the Bernoulli Principle. The liquid can’t have a pressure difference because its surface is always touching the air which of course has the same pressure at the bottom and middle of the ball.

    The Bernoulli Principle is based on conservation of energy, which means if you want to speed up a liquid „pressure energy“ must be turned „speed energy“. But you are adding energy to the system by spinning the ball which is why the liquid can be accelerated without a pressure drop.

  27. No this is not the Bernoulli Principle. The liquid can’t have a pressure difference because its surface is always touching the air which of course has the same pressure at the bottom and middle of the ball.

    The Bernoulli Principle is based on conservation of energy, which means if you want to speed up a liquid „pressure energy“ must be turned „speed energy“. But you are adding energy to the system by spinning the ball which is why the liquid can be accelerated without a pressure drop.

  28. No this is not the Bernoulli Principle. The liquid can’t have a pressure difference because its surface is always touching the air which of course has the same pressure at the bottom and middle of the ball.

    The Bernoulli Principle is based on conservation of energy, which means if you want to speed up a liquid „pressure energy“ must be turned „speed energy“. But you are adding energy to the system by spinning the ball which is why the liquid can be accelerated without a pressure drop.

  29. I understand much more than you I assure you since you can’t even distinguish between centrifugal and centripetal forces. The main reason it rises is because there is an upward component of the centrifugal force. Come on, don’t act like you understand things that you clearly don’t.

  30. I understand much more than you I assure you since you can’t even distinguish between centrifugal and centripetal forces. The main reason it rises is because there is an upward component of the centrifugal force. Come on, don’t act like you understand things that you clearly don’t.

  31. I understand much more than you I assure you since you can’t even distinguish between centrifugal and centripetal forces. The main reason it rises is because there is an upward component of the centrifugal force. Come on, don’t act like you understand things that you clearly don’t.

  32. I understand much more than you I assure you since you can’t even distinguish between centrifugal and centripetal forces. The main reason it rises is because there is an upward component of the centrifugal force. Come on, don’t act like you understand things that you clearly don’t.

  33. I understand much more than you I assure you since you can’t even distinguish between centrifugal and centripetal forces. The main reason it rises is because there is an upward component of the centrifugal force. Come on, don’t act like you understand things that you clearly don’t.

  34. I understand much more than you I assure you since you can’t even distinguish between centrifugal and centripetal forces. The main reason it rises is because there is an upward component of the centrifugal force. Come on, don’t act like you understand things that you clearly don’t.

  35. I understand much more than you I assure you since you can’t even distinguish between centrifugal and centripetal forces. The main reason it rises is because there is an upward component of the centrifugal force. Come on, don’t act like you understand things that you clearly don’t.

  36. I understand much more than you I assure you since you can’t even distinguish between centrifugal and centripetal forces. The main reason it rises is because there is an upward component of the centrifugal force. Come on, don’t act like you understand things that you clearly don’t.

  37. I understand much more than you I assure you since you can’t even distinguish between centrifugal and centripetal forces. The main reason it rises is because there is an upward component of the centrifugal force. Come on, don’t act like you understand things that you clearly don’t.

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