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G . Richard Locke, MD, 72
Moody County Enterprise
Dr. Locke was born on January 12, 1937 in Youngstown, Ohio. He attended DePauw University where he met Judy Blang who he married August 2, 1958. ...
and more »
Moody County Enterprise
Dr. Locke was born on January 12, 1937 in Youngstown, Ohio. He attended DePauw University where he met Judy Blang who he married August 2, 1958. ...
and more »
Gabriola Daily Photo: ABC Wednesday > G is for Generations
Snapper
Wed, 02 Sep 2009 14:24:00 GM
ABC Wednesday > . G. is for Generations. This is the kind of photograph at which the Leica excels but I had the DSLR with me so digital it is . Taken on the fly at last month's theatre festival art fair. The ABC Wednesday host page is here ...
Snapper
Wed, 02 Sep 2009 14:24:00 GM
ABC Wednesday > . G. is for Generations. This is the kind of photograph at which the Leica excels but I had the DSLR with me so digital it is . Taken on the fly at last month's theatre festival art fair. The ABC Wednesday host page is here ...
How do I find distance in terms of g and t?
Q. A package is dropped from helicopter that's descending steadily at speed v0. 1) After t seconds elapse, what distance is the package from helicopter in terms of g and t? 2) If instead the helicopter is rising steadily at the same speed, what is the speed of the package in terms of v0, g, and t? What is the distance in terms of g and t?
Asked by Eric B - Wed Sep 3 23:07:11 2008 - - 1 Answers - 1 Comments
A. acceleration due to gravity is g. And is downward. v0 is positive if in the same direction as acceleration. Use the distance equation d = (v0 * t) + (1/2 * a * t^2) Plug in g for a. Done. For the second part, v0 would be negative, since you're traveling up and gravity is down. And you can use the standard acceleration equation to solve for Vf (acceleration = (final velocity - initial velocity) / time
Answered by Ryan G - Wed Sep 3 23:17:33 2008
Q. A package is dropped from helicopter that's descending steadily at speed v0. 1) After t seconds elapse, what distance is the package from helicopter in terms of g and t? 2) If instead the helicopter is rising steadily at the same speed, what is the speed of the package in terms of v0, g, and t? What is the distance in terms of g and t?
Asked by Eric B - Wed Sep 3 23:07:11 2008 - - 1 Answers - 1 Comments
A. acceleration due to gravity is g. And is downward. v0 is positive if in the same direction as acceleration. Use the distance equation d = (v0 * t) + (1/2 * a * t^2) Plug in g for a. Done. For the second part, v0 would be negative, since you're traveling up and gravity is down. And you can use the standard acceleration equation to solve for Vf (acceleration = (final velocity - initial velocity) / time
Answered by Ryan G - Wed Sep 3 23:17:33 2008
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