A wave travels down the length of a 25-meter rope in 5.0 seconds. The speed of the wave is _____.5.0 m/s
0.2 m/s
125 m/s
25 m/s

Answers

Answer 1
Answer: The answer is 5.0 m/s. It is asking for the SPEED of the wave, therefore, you need to know that speed = distance / time. You just simply divide 25 meters (distance) to 5.0 seconds (time) which will leave you the speed of 5.0 m/s. 
Answer 2
Answer:

Answer:

5.0 m/s

Explanation:

Distance/Time Taken


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How to generate electricity from biogas?

Answers

The same way as electricity is generated from any other gas:

-- Burn the gas.
-- Use the heat to boil water.
-- Pipe the steam through the fan of a turbine.
-- Use the rotation of the turbine to spin an electric-power generator.

Which state of matter contains particles that move slightly in a fixed posistion

Answers

Solid moves slightly in a fixed position

Answer:

soliddddd

Explanation:

When Emma pushes a bag with a force of 27 newtons, the coefficient of kinetic friction between the bag and the floor is 0.23. What is the normal force acting on the bag by the floor?

Answers

This can be answered by manipulating the formula for the coefficient of kinetic friction, which is as follows:

Let: μ = coefficient of kinetic friction
F = force
N = normal force

μ = F / N

Substituting the given values:

0.23 = 27N / N
N = 27 / 0.23
N = 117.39 N

When an oxygen atom forms an ion, it gains two electrons. What is the electrical charge of the oxygen ion? A.-2

B.+2

C.+1

D.-1

Answers

The oxygen atom, before it gains these two electrons, has a neutral charge, meaning that it has as many protons as electrons. After it gains 2 electrons, it has 2 more electrons than protons. Each electron has a charge of -1, so the whole molecule will  have a charge of -2. The correct answer is a)!

Answer:

A is the corect answer

Explanation:

What is force of inertia?????????​

Answers

The force of inertia is the property common to all bodies that remain in their state, either at rest or in motion, unless some external cause is introduced to make them alter this state.

Which situation shows where potential energy and kinetic energy are balanced? A stopped bicycle A roller coaster car going uphill A car moving at a steady speed A runner slowing down

Answers

Potential energy or stored energy, and kinetic energy, the energy due to motion can be balanced in the process of converting kinetic energy to potential energy during an uphill motion

The correct option for, which situation shows potential energy and kinetic energy are balanced is option;

A roller coaster car going uphill

The reason the selected option is correct is as follows:

Potential energy is the energy that is due to the relative position of an item in relation to a ground or zero state. The formula for potential energy due to the elevation is given as follows;

Potential energy, P.E. = m·g·h

Kinetic energy is the energy that is due to motion. The kinetic energy of an item is given as follows;

Kinetic energy, K.E. = (1/2) × m × v²

The potential and kinetic energy of a body is balanced when we have;

P.E. = m·g·h = K.E. = (1/2)·m·v²

Which gives;

g·h = (1/2)·v²

Therefore, a point is reached as the an body moves up a heal, where the potential energy (the energy due to height of the object) and the kinetic energy (the energy due to current speed) of the object are equal

The correct situation which shows potential energy and kinetic energy are balanced is therefore; A roller coaster car going uphill

Learn more about potential and kinetic energy here:

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