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Some measurements of the initial rate of a certain reaction are given in the table below.
[N2]. [H2]. Initial rate of reaction
0.434 M 2.29 M 8.00 x 10^4M/s
0.434 M 3.23M 1.13 x 10^5M/s
0.630M 2.29 M 1.69x10^5M/s
Use this information to write
rate law for this reaction, and calculate the value of the rate constant k.
Rate =k
K=
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Chemistry, 22.06.2019 19:00, ghernadez
Imagine that a new planet is discovered with two moons of equal mass: moon a and moon b. the mass of the new planet is greater than the combined mass of its moons. moon a is farther away from the new planet than moon b. what is the planet's gravitational pull on moon a compared to the planet's gravitational pull on moon b? the planet's gravity repels moon a with a greater force than it repels moon b, which is why moon a is farther away. the gravitational pull on moon b is greater than on moon a because moon b is closer to the new planet than moon a. the gravitational pull on moon b is greater than on moon a because moon b is farther away from the new planet than moon a. the gravitational pull on moon a is the same as the gravitational pull on moon b because distance does not affect the planet's gravity.
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Some measurements of the initial rate of a certain reaction are given in the table below.
[N2]. [H...
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