how should the charge q be divided into two parts such that they experience maximum electrostatic repulsion

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Answer 1
Answer:

Answer:

To divide the charge q into two parts such that they experience maximum electrostatic repulsion, the charges should be equal in magnitude and opposite in sign. In other words, the charge q should be divided into two equal charges of -q/2 and +q/2. This arrangement will result in the maximum electrostatic repulsion between the charges, as like charges repel each other.

Explanation:


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There are 10 apples in a one-kilogram bag of apples. What is the average mass of each apple in the bag?Give your answer in units of kilograms and grams.

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wouldn't it be .1 kilograms?.
1 apple=.1
2 apples=.2
3 apples=.3
4 apples=.4
5 apples=.5
6 apples=.6
7 apples=.7
8 apples=.8
9 apples=.9
10 apples= 1.0 kilogram

Which element of art creates edges of shapes and visual cues for the viewer in terms of both motion and space?a. emphasis
b. form
c. line
d. unity

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The element of art that creates edges of shapes and visual cues for the viewer in terms of both motion and space is line. The correct option among all the options that are given in the question is the third option or option "c". The lines have the ability to create a sense of motion when drawn in spaces. 
The correct answer for the question that is being presented above is this one: "c. line." The element of art creates edges of shapes and visual cues for the viewer in terms of both motion and space is the line. Line is one of the basic elements of art.

A ferris wheel is 20 meters in diameter and boarded from a platform that is 4 meters above the ground. The six o'clock position on the ferris wheel is level with the loading platform. The wheel completes 1 full revolution in 4 minutes. The function h = f(t) gives your height in meters above the ground t minutes after the wheel begins to turn. What is the Amplitude?

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Answer:The amplitude is approximately 4.52 h x 2.3 f(t)

Explanation:

Assuming that all carts are moving, compare and contrast the differences in the motion of the 3 carts.

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To compare and contrast the differences in the motion of three carts, it's essential to consider various aspects of their motion, including speed, direction, and acceleration. Without specific details about the motion of each cart, I can provide a general framework:

Comparison:
1. Speed: You can compare the speeds of the carts to determine which one is moving the fastest and which one is the slowest.
2. Direction: Compare the directions in which the carts are moving. Are they all moving in the same direction, or are some moving in opposite directions?
3. Acceleration: Consider if any of the carts are accelerating (changing their speed) and in which direction.

Contrast:
1. Speed: Highlight the differences in speed between the carts. For example, Cart A may be moving slowly, while Cart B is moving quickly.
2. Direction: Discuss any differences in direction. Are some carts moving forward while others are moving backward or in different angles?
3. Acceleration: Note if any of the carts are accelerating differently. For instance, Cart C might be accelerating rapidly while Cart A maintains a constant speed.

To provide a more detailed comparison and contrast, it would be helpful to have specific information about the motion of each cart, such as their speeds, directions, and accelerations.

The electron configuration of nitrogen (N) is

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Answer: 1s^22s^22p^3

Explanation:

Electronic configuration represents the total number of electrons that a neutral element contains. We add all the superscripts to know the number of electrons in an atom.

The electrons are filled according to Afbau's rule in order of increasing energies and thus the electronic configuration  for nitrogen with atomic number of 7 which also contains 7 electrons is:

N:7:1s^22s^22p^3

The electron configuration of (N) is 1s²2s²2p³

What is the expression of the chemical composition of a compound

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Element formula....

I do hope this helps you Darling

Answer: the correct answer is chemical formula .

Explanation: