Which body system make movement possible

Answers

Answer 1
Answer: The intestinal system, which is part of the alimentary system.
Answer 2
Answer: Muscular system makes movement possible

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Describe how wavelength, frequency, and energy are related.

Answers

The wavelength and frequencyincrease (decrease) in proportion to energy levels. Short wavelengths have a higher energy than long wavelengths because of the link between wavelength and frequency, which dictates that the higher the frequency, the shorter the wavelength.

What is energy?

Energy is defined as the capacity of a physical system to perform work.

Wavelength is related to energy and frequency by

E = hν = hc/λ,

where E = energy, h = Planck's constant, ν = frequency, c = the speed of light, and λ = wavelength

The number of waves that pass a specific place in a predetermined period of time is known as the wave frequency. The hertz is the wave frequency SI unit (Hz)

The distance between two successive crests or troughs of a wave is known as its wavelength. It is calculated using the wave's direction.

The wavelength and frequencyincrease (decrease) in proportion to energy levels.

To learn more about energy refer to the link:

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The greater the energy, the larger the frequency and the shorter (smaller) the wavelength. Given the relationship between wavelength and frequency — the higher the frequency, the shorter the wavelength — it follows that short wavelengths are more energetic than long wavelengths.

How does lightning occur?

Answers


I've learned that lighting occurs when clouds  in the sky bump into each other. The harder the clouds bump into each other, the louder and bigger the lighting gets :D

The positive and negative electrons split in the cloud

Positive going to the bottom of the cloud and negative to the top.

Since you are made of negative electrons, you attract the positive electrons to you causing you to get struck by lightning.

The ground has negative electrons too!

This will shock the ground and end up shocking you as well, since the ground and you are connected.

Lightning and thunder are connected! They do happen at the same time. The reason why the thunder travels later than the lightning is because you are away from the lightning and the sound waves are just getting near you

B.) How are thunderstorms dangerous?

Thunderstorms are dangerous because they give off positive energy. If you are standing outside while a thunderstorm is in session, you could get shocked since you are made of negative energy and attract positive energy.

If your hair is sticking straight up, you are about to be struck by lightning. Crouch down and cover your head next to your ears and prepare for impact.

You might ask, "Why can't I just run from the lightning?" That is true, but since you aren't faster than light itself, you will still wind up caught in the storm.

Avoid this by staying inside.

Hope this helps <3

A circuit has a known resistance of 5 Ohms. An ammeter in the circuit gives a reading of 5 Amps. What is the Voltage of the circuit?

Answers

E = I R

Voltage = (current)×(resistance).

V = 5A x 5 ohms = 25 volts.

Calculate the distance in kilometers that Charlie runs if he maintains an average speed of 8 km

Answers

8 km is not a speed. And even if it were, we would still need to know how much time Charlie spent running.

Which type of volcano forms when eruptions contain mostly dust, ash, and cinders?composite cone volcano
cinder volcano
hot vent volcano
shield volcano

Answers

Your answer would be Cinder Volcanoes :)

1) Car A has a mass of 1,000 kg and is traveling 60 km/hr. Car B has a mass of 2,000 kg and is traveling 30 km/hr. Compare the kinetic energy of car A with that of car B?
A) equal
B) half as much
C) twice as much
D) four times as much

Answers

Answer: C

Explanation:

Calculate EkA -kinetic energy of car A

m=1000kg

Va=16.66 m/s

EkA=m*Va²/2

Eka=(1000kg*277.556m²/s²)/2

Eka=138 777.8 J

Calculate kinetic energy of CarB:

m=2000 kg

Vb=8.33 m/s

Ekb=(m*Vb²)/2

Ekb=(2000kg*69.39m²/s²)/2

Ekb=69 388.9 J

compare Eka with EkB

Eka/Ekb=138 777.8 J/69 388.9

Eka/Ekb=2

Final answer:

The kinetic energy of car A is twice as much as that of car B. This is calculated using the formula for kinetic energy, which is 1/2 * mass * (velocity)^2.

Explanation:

To compare the kinetic energy of car A with that of car B, we first need to understand the mathematical formula for kinetic energy, which is 1/2 * mass * (velocity)^2.

Let's calculate for each car:

  • For car A: kinetic energy = 1/2 * 1000 kg * (60 km/hr)^2 = 1800000 Joules
  • For car B: kinetic energy = 1/2 * 2000 kg * (30 km/hr)^2 = 900000 Joules

Therefore, car A has twice as much kinetic energy as car B.

Learn more about Kinetic Energy here:

brainly.com/question/26472013

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