Answer:
about 0.0143 microfarads
Step-by-step explanation:
The effective capacitance of capacitors in series is the reciprocal of the sum of their reciprocals:
1/(1/0.02 +1/0.05) = 1/(50+20) = 1/70 ≈ 0.0143 . . . microfarads
So the Rational Zeros Theorem states that <u>the potential zeros are ± P/Q, with P = factors of the constant and Q = factors of the leading coefficient.</u>
In this case, the constant is -3 and the leading coefficient is 2.
With P and Q established, divide them all as such:

<u>In short, your potential zeros are ± 1/2, ± 3/2, ± 1, and ± 2.</u>
Answer:
the opposite of what is in the parentheses so -(-6) would just be 6
The distance formula is synonymous to Pythagorean's theorem.