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Comic strip a conspiracy myth

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Speaking of physics flashbacks, this reminds me of my old high school physics teacher, who use coyote&roadrunner cartoons in all his word problems.



"If NWO Kitty has Mad Cow bearing down on him at 35 km/hr, and NWO Kitty can jump at 4.5 m/s initial velocity, at what time T and angle A should NWO Kitty jump at, in order to land on Mad Cow's back? Assume Mad Cow starts moving 50 m away from NWO Kitty. show your work."
 
[qimg]http://s3.amazonaws.com/stripgenerator/strip/57/33/55/00/00/full.png[/qimg]


Speaking of physics flashbacks, this reminds me of my old high school physics teacher, who use coyote&roadrunner cartoons in all his word problems.



"If NWO Kitty has Mad Cow bearing down on him at 35 km/hr, and NWO Kitty can jump at 4.5 m/s initial velocity, at what time T and angle A should NWO Kitty jump at, in order to land on Mad Cow's back? Assume Mad Cow starts moving 50 m away from NWO Kitty. show your work."

I need the height and length of Mad Cow to work that out don't I?
 
Speaking of physics flashbacks, this reminds me of my old high school physics teacher, who use coyote&roadrunner cartoons in all his word problems.



"If NWO Kitty has Mad Cow bearing down on him at 35 km/hr, and NWO Kitty can jump at 4.5 m/s initial velocity, at what time T and angle A should NWO Kitty jump at, in order to land on Mad Cow's back? Assume Mad Cow starts moving 50 m away from NWO Kitty. show your work."


How tall is Mad Cow?
 
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[qimg]http://s3.amazonaws.com/stripgenerator/strip/57/33/55/00/00/full.png[/qimg]


Speaking of physics flashbacks, this reminds me of my old high school physics teacher, who use coyote&roadrunner cartoons in all his word problems.



"If NWO Kitty has Mad Cow bearing down on him at 35 km/hr, and NWO Kitty can jump at 4.5 m/s initial velocity, at what time T and angle A should NWO Kitty jump at, in order to land on Mad Cow's back? Assume Mad Cow starts moving 50 m away from NWO Kitty. show your work."

um, below is an actual problem from my relativity text from college, chapter 1 (review of Newtonian mechanics) problem 2. Page 11. Special Relativity. T.M Helliwell 1986.

A 3-1/2 ton two-horned African rhinoceros charges at 30 miles/hour into a 7-ton ball of putty sitting on a frictionless sheet of ice in a perfect vacuum. Assuming the rhino gets stuck in the putty, find the final velocity of the two. Is kinetic energy conserved in the collision?

The author of the book (and the professor of the class) had a thing about rhinos. The cover of the book even had a cartoon image of two rhino's facing each other.
 
One forward flip? Not even a paw-stand?

That's only a 7.6 at best. You need more work on the pommel cow, get to it.
 
One forward flip? Not even a paw-stand?

That's only a 7.6 at best. You need more work on the pommel cow, get to it.



Alas, the Pure Awesomeness of NWO Kitty is severely restricted by the Complete Lack of Awesomeness of my artistic skills.
 
NWO Kitty lost his gun huh? Not something I would expect an evil mastermind to do unless he's lost his cool.

<CT>That's not NWO Kitty but a stunt double and the person in charge of continuity will soon be "Disappeared" or have a sudden case of the "Klutzies" leading to an untimely and unfortunate death by accident</CT>
 

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