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![SOLVED:Deal with radioactive decay and the function M(x)=c\left(.5^{x / h}\right) . A sample of 300 grams of uranium decays to 200 grams in .26 billion years. Find the half-life of uranium. SOLVED:Deal with radioactive decay and the function M(x)=c\left(.5^{x / h}\right) . A sample of 300 grams of uranium decays to 200 grams in .26 billion years. Find the half-life of uranium.](https://cdn.numerade.com/previews/c55caa30-1914-4779-a0d6-783a07f443cf_large.jpg)
SOLVED:Deal with radioactive decay and the function M(x)=c\left(.5^{x / h}\right) . A sample of 300 grams of uranium decays to 200 grams in .26 billion years. Find the half-life of uranium.
![SOLVED:Blue light is used to form a single-slit diffraction pattern on a screen. As the slit is made wider, does the separation of the bright bands on the screen decrease, increase, or SOLVED:Blue light is used to form a single-slit diffraction pattern on a screen. As the slit is made wider, does the separation of the bright bands on the screen decrease, increase, or](https://cdn.numerade.com/previews/bf7c5b87-a95d-4d8e-b40d-db3dd612bdaa_large.jpg)
SOLVED:Blue light is used to form a single-slit diffraction pattern on a screen. As the slit is made wider, does the separation of the bright bands on the screen decrease, increase, or
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