UK Police Chase UFO Devon 1967

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Uploaded by on Mar 16, 2010

http://www.facebook.com/UFOBevy

British UFOlogists still recall the famous Devon flying cross case of 1967 October 24 in which two police constables, Roger Willey and Clifford Waycott, chased an apparent UFO in their police car along country lanes at up to 90 mile/h in the early hours of the morning. It looked like a star-spangled cross radiating points of light from all angles, Constable Willey told the press. It was travelling about tree-top height over wooded countryside near Holsworthy, Devon. We drove towards it and it moved away. It then led us on a chase as if it was playing a game with us.

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  • it was a real ufo , no doubt. the britsh just released all kinds of stuff about ufos

  • It's not an apparent UFO, it is IS a UFO. Would be good if people stopped confusing UFO with 'extra terrestrial craft'. UFO is simply an unidentified flying object. So any flying object, even a plane, that has not been identified is a UFO

  • (ff 2) ... as untrue. And this concept works for more than 60 years in politics, economy and science. Check it out for yourself: Under the assumption, you'd be a respected financial specialist, you can push every share by a convincing analysys. If you speculate on a falling value, you can present the same analysis, but simply wear jeans instead of a business suit during your presentation. Your credibility becomes damaged, the value drops - and you can encash.

    (\_/)

    ^_^

  • kcdl, LOL! Thank you for your compliment. It was so easy to manipulate and deceive you! Remember, Hitler and Goebels used the doctrine to repeat a fat lie so many times, until it became believed by the people - and was caught lying within months. This lesson was learnt in the sense, we do tell people the truth (or at least parts of it), but still have the control over belief/disbelief by adjusting our apparent credibility. Since no lies are told nobody can debunk such deceptive statements...

  • @debrainwasher So you intended to come off as a 13 year with a laptop? Congratulations, you've won. I wish I'd read your profile page first, it would have saved a lot of time. You really are not very intelligent at all but you do like to copy and paste stuff you don't understand. Have a nice life. Ain't puberty a bitch? *Big Derisive LOL*

  • kcdl, Your conclusion was intended.

    (\_/)

    o_o

  • kcdl, again, if advanced intelligent species existed, and visited us and wanted to enter into an open relationship with humanity, they did it already. Since no such incident happened for the past millenia, either, these beings don't exist, don't visit earth, or we are simply not ready to be accepted as socios inter pares. [Fermi paradoxon] Whatever of these compenents is true or wrong, the outcome (no ET will shake your hands) will remain the same. That's scientific logic.

    (\_/)

    ^_?

  • @debrainwasher which means the same thing. I used the term differential force which implies a gradient of acceleration. I don't think you know what you are talking about, you are copying and pasting stuff from Wiki (or something) and pretending you understand it. I will end my discussion with you since you don't have a clue about what you are talking about. You are a poser.

  • ++ (ff 2) ...particle of your body. Hence, there is no force difference between atoms, even if you change a fast. There is a simple proof: Within a rotational movement (e.g. at the end of a rope), the tangetial acceleration component is canceled out. When you released the rope, you'd fly away in tangential direction. In the moment, you form the vectorial sum between gravitation and a gravitation-like force, you can survive every a within the field. Isn't that simple?

    (\_/)

    ^_~

  • kcdl, I hate to be the bearer of bad news, but you are wrong. The reason, whe you can feel g-forces (g-force=acceleration a, 1g=9.81m/s²) is, because you have a counterforce (e.g. exerted by the seat of your car, plane, the earth's surface, etc). according to Newton's law F=ma. As long as an acceleration field is gradient free |grad(a)|→0 you can't feel it, because the vectorial sum attaches at each graviton (aka Higg's boson in the projected standard model of physics) of a subatomic ...

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