Continental crust is primarily witch kind of rock

Answers

Answer 1
Answer: The correct answer is granite oceanic. Continental crust is primarily a granite oceanic. Continental crust is the layers of sedimentary, igneous, and metamorphic rocks that form the area of the shallow seabed that is near the shore. 

Related Questions

Melody is riding her mountain bike along a trail with multiple hills. At the bottom of the second hill, she has 3200 J of kinetic energy. At the top of the third hill, when she is going the slowest, her potential energy measures 1650 J. Which statement below is true? A. The total amount of energy at the bottom of the hill cannot equal the amount at the top, because some of the energy from the environment is gained. B. The total amount of energy at the top is equal to the amount at the bottowm, but she gained some energy as she traveled due to a higher speed going down the first two hills. C. The total amount of energy at the bottom of the hill cannot be equal to the amount at the top, because some of the energy is lost.
What happens to the temperature of a substance during a phase change?a. The temperature increases. b. The temperature decreases. c. The temperature remains constant. d. The temperature fluctuates randomly.
What are the three types of seismic waves?
Geothermal energy cannot meet all of our energy needs because access to geothermal energy is _________.a. limited to certain regions. b. the earth is not hot enough. c. geothermal energy is intermittent. d. geothermal sources do not have enough energy to generate electricity
What does the ozone layer absorb?a. Microwaves c. UV radiation b. X-rays d. Infra-red radiation

How much energy ( in joules ) is released when 0.06 kilograms of mercury is condensed to a liquid at the same temperature ? A. 697.08 J
B. 17,705.1 J
C. 20,075.04 J
D. 51,302.88 J

Please include how you got your answer , thank you.

Answers

Answer:

B. 17,705.1 J

Explanation:

The hear released when the mercury condenses into a liquid is given by:

Q=m \lambda_v

where

m = 0.06 kg is the mass of the mercury

\lambda_v is the latent heat of vaporization

For mercury, the latent heat of vaporization is \lambda_v = 296 kJ/kg, so the heat released during the process is:

Q=(0.06 kg)(296 kJ/kg)=17.76 kJ = 17,760 J

So, the closest option is

B. 17,705.1 J

The energy ( in joules ) released when 0.06 kilograms ofmercury is condensed to a liquid at the same temperature is about 697.08 J. inother to solve this problem, should know the latent heat of fusion of mercurywhich is equal to about 11.4 kJ/kg and multiplying by mass of mercury.

Which two of the following actions would result in a guitar string sounding a lower note
when plucked?
A Loosening the string
B Tightening the string
C Shortening the string
D Using a heavier string

Answers

Answer is d using a heavier string

two different types of rope with different properties are fused together to make one long rope. when a wave transfers from the first type of rope to the second type of rope, the wavelength becomes one-fourth of what it was before the transfer. what is true about the speed of the wave?(1 point) responses the speed of the wave becomes double its original speed after the transfer.

Answers

When a wave transfers from one medium to another with different properties, the speed of the wave can change. In this case, we know that the wavelength changes when the wave transfers from the first type of rope to the second type of rope. If the wavelength becomes one-fourth of what it was before the transfer, this means that the second type of rope has a higher wave speed than the first type of rope.

The wave speed is defined as the product of the wavelength and the frequency of the wave. Since the frequency of the wave remains constant as it transfers from one medium to another, a decrease in wavelength means an increase in wave speed. This can be seen from the wave equation, c = λf, where c is the wave speed, λ is the wavelength, and f is the frequency.

Therefore, if the wavelength becomes one-fourth of what it was before the transfer, this means that the wave speed in the second type of rope is four times the wave speed in the first type of rope. In other words, the speed of the wave becomes quadruple its original speed after the transfer.

To know more about quadruple click this link-

brainly.com/question/7966538

#SPJ11

Name the planets to which these moons belong(1.callisto
2deimos
3.europa
4.ganymede
5.triton
6.titan
7.phobas
8.lo

Answers

The moons belong to the following planets in the following order:

1. Callisto ==> Jupiter
2. Deimos ==> Mars
3. Europa ==> Jupiter
4. Ganymede ==>Jupiter
5. Triton ==> Neptune
6. Titan ==> Saturn
7. Phobos ==> Mars
8. Io ==> Jupiter

Hope that helped =)

when the lowest frequency above the fundamental is played, at what height will the particles' displacement be out of phase and have the same amplitude as that of the particles 8.0cm above the surface of the water? give your answer as a distance above the surface of the water.

Answers

Answer:

theg watte wil shajka

Explanation:

bshswu

Which of the following distances is the longest?a. 0.006 kilometersb. 0.3 decimeters

c. 820 meters

d. 20,000 millimeters

Answers

820 meters is the longest