If the distance is halved and the charges of both particles are doubled, the force is 16 times as great.
According to Coulomb's law, the electrostatic force between two charges is given by;
Where 'k' is the Coulomb's constant.
If the charges of both particles are doubled and the distance is halved, the new force will be;
So, the new force will be 16 times greater than the old force.
Learn more about Coulomb's law here:
Answer:
The new force is 16 times of the initial force.
Explanation:
The electric force between charges is given by :
If the distance is halved, d' =d/2 and charges are doubles,
New force becomes,
So, the new force is 16 times of the initial force.
a. True
b. False
You first subtract the speed at which the man is moving (11 m/s) from the rate the boat is moving (12.4 m/s). Which equals 1.4, then divide it by 6 meters, as the man is moving relative to the boat.
It therefore equals 4.29 s
Answer:
4.29 s
Explanation:
Apex
b. voltage.
c. resistance.
d. all of these
Explanation:
Acceleration=
Time
FinalVelocity−InitialVelocity
Therefore:
\begin{gathered}Acceleration=\frac { 11.1\quad m/s\quad -\quad 0\quad m/s }{ 9\quad seconds } \\ \\ =\frac { 11.1\quad m/s }{ 9\quad seconds } \\ \\ =1.23\quad m/{ s }^{ 2 }\quad (2\quad decimal\quad places)\end{gathered}
Acceleration=
9seconds
11.1m/s−0m/s
=
9seconds
11.1m/s
=1.23m/s
2
(2decimalplaces)
As the runner was travelling for 9 seconds, he covered a distance of 99.9 metres. 9 seconds x 9 seconds = 81 seconds squared, and the runner covers roughly 1.23 metres in distance every second squared.