QUESTION IMAGE
Question
the table below shows four pairs of atoms and the electric charge of each atom. the atoms in each pair are located the same distance from each other
| pair | atom a | atom b |
|---|---|---|
| x | -6 | -1 |
| y | +9 | +1 |
| z | -3 | -2 |
which pair of atoms is experiencing the strongest electric force?
a. pair w
b. pair x
c. pair y
d. pair z
Step1: Recall Coulomb's Law
The electric force \( F \) between two charges is given by \( F = k\frac{|q_1q_2|}{r^2} \), where \( k \) is a constant, \( q_1 \) and \( q_2 \) are the charges, and \( r \) is the distance between them. Since the distance \( r \) is the same for all pairs, the magnitude of the force depends on the product \( |q_1q_2| \).
Step2: Calculate the product \( |q_1q_2| \) for each pair
- Pair W: \( |(+1)(+5)| = |5| = 5 \)
- Pair X: \( |(-6)(-1)| = |6| = 6 \)
- Pair Y: \( |(+9)(+1)| = |9| = 9 \)
- Pair Z: \( |(-3)(-2)| = |6| = 6 \)
Step3: Compare the products
The largest product is 9 (for Pair Y), so Pair Y experiences the strongest electric force because the force is proportional to the product of the magnitudes of the charges when the distance is constant.
Snap & solve any problem in the app
Get step-by-step solutions on Sovi AI
Photo-based solutions with guided steps
Explore more problems and detailed explanations
C. Pair Y