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	<title>Comments on: The mass of a golf ball is 45.9g . If it leaves the tee with a speed of 67.0m/s , what is its corresponding?</title>
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		<title>By: Michael</title>
		<link>http://www.serbianproperties.info/and-golf-properties/the-mass-of-a-golf-ball-is-45-9g-if-it-leaves-the-tee-with-a-speed-of-67-0ms-what-is-its-corresponding/comment-page-1#comment-794</link>
		<dc:creator>Michael</dc:creator>
		<pubDate>Tue, 16 Feb 2010 09:12:59 +0000</pubDate>
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		<description>w = h / p
Wavelength = w
h = Planck&#039;s constant = 6.626e-34J*s
p = momentum = m * v
m = mass = 45.9g (1kg / 1000g) = .0459 kg
v = velocity = 67m/s
p = m * v = .0459 kg * 67m/s = 3.0753 N *s
w = h / p = (6.626e-34J*s) / 3.0753 N *s = 2.15e-34 m&lt;br&gt;&lt;b&gt;References : &lt;/b&gt;&lt;br&gt;</description>
		<content:encoded><![CDATA[<p>w = h / p<br />
Wavelength = w<br />
h = Planck&#8217;s constant = 6.626e-34J*s<br />
p = momentum = m * v<br />
m = mass = 45.9g (1kg / 1000g) = .0459 kg<br />
v = velocity = 67m/s<br />
p = m * v = .0459 kg * 67m/s = 3.0753 N *s<br />
w = h / p = (6.626e-34J*s) / 3.0753 N *s = 2.15e-34 m<br /><b>References : </b></p>
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