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Setler79 [48]
3 years ago
12

When is there no solution to a compound inequality?

Chemistry
1 answer:
FinnZ [79.3K]3 years ago
6 0
Many times, solutions lie between two quantities, rather than continuing endlessly in one direction. For example systolic (top number) blood pressure that is between 120 and 139 mm Hg is called borderline high blood pressure. This can be described using a compound inequality, b < 139 and b > 120. Other compound inequalities are joined by the word “o
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How many copies of DNA would be created after 24 cycles?
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After 30 cycles, as many as a billion copies of the target sequence are produced from a single starting molecule

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The formation of ClF (chlorine monofluoride) from its elements has an equilibrium constant of 22.3 at room temperature. Which of
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A the reaction will form

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HELP!!how can the Rescue workers get energy to the
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3 years ago
This decomposition is first order with respect to phosphine, and has a half‑life of 35.0 s at 953 K. Calculate the partial press
Solnce55 [7]

Answer:

0.57 atm

Explanation:

When a a reaction is first order, we have from calculus the following relation:

ln[A]t/[A]₀ = - kt

where [A]t is the concentration of A ( phosphine in this case ) after a time, t

           [A]₀ is the initial concentration of A

           k is the rate constant, and

           t is the time

We also know that for a first order reaction

           k = 0.693/ t 1/2

wnere t 1/2 is the half-life.

This equation is derived for the case when A]t/= 1/2 x [A]₀ which occurs at the half-life.

Thus, lets first find k from the half life time, and then solve for t = 70.5 s

k = 0.693 /  35.0 s = 0.0198 s⁻¹

ln [ PH₃ ]t / [ PH₃]₀ = - kt

from the ideal gas law we know pV = nRT, so the volumes cancel:

ln (pPH₃ )t / p(PH₃)₀ = - kt

taking inverse log to both sides of the equation:

(pPH₃ )t / p(PH₃)₀  = - kt

thus:

(pPH₃ )t  = 2.29 atm x e^(- 0.0198 s⁻¹ x 70.5 s ) = 0.57 atm

3 0
4 years ago
Calculate the standard free-energy change for the following reaction at 25 C. Standard reduction potentials can be found here.
n200080 [17]
<span>n = 6</span><span>
Ecell = E Au - E Zn
= 1.498 - 0.76
= 0.738
</span><span>
to find the standard free energy, use the formula:
</span>ΔG = -nFEcell 
so,
ΔG = -(6)(96,500)(0.738)
= -427.3 kJ
5 0
4 years ago
Read 2 more answers
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