which describes the composition of the ocean floor?

Answers

Answer 1
The oceanic crust is about 4 miles thick.
Answer 2

The composition of the ocean floor can be described as option A. Basalt covered in sediment

which describes the composition of the ocean floor?

Basaltic rocks are the main type of rock on the ocean floor. They are made from cooled lava. Basalt is a kind of rock that has a lot of iron and magnesium. It looks dark and smooth. It forms most of the bottom layer of the ocean.

The ocean floor has different types of stuff called sediments covering it. These sediments can come from land, like rocks breaking down and being carried away, or from sea creatures, like shells and skeletons collecting on the ocean floor.

Hence option a is correct.

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see full text below

Which describes the composition of the ocean floor?

A. Basalt covered in sediment

B. Sediment covered in basalt

C. Granite covered in sediment

D. Basalt covered in granite


Related Questions

lewis structures cannot

Answers

Answer:

Show the strength of bonds.

Explanation:

Lewis structures just show the bonding but not the strength.

Answer:

Show the strength of bonds

Explanation:

which of the following for an object should be known to calculate its density

Answers

Density = mass / volume

therefore, both mass and volume are needed

the first one represents volume

The Space it occupies is the answer

How are electromagnetic waves affected as the frequency of the waves increases?

A) energy and wavelength increase
B) energy and wavelength decrease
C) energy decreases, wavelength increases
D) energy increases, wavelength decreases

Answers

As the frequency is how many waves pass a fixed point in certain amount of times. This means that the waves get closer together and, therefore, the wavelength decreases. It also means that the wave has more energy.

Answer: D) Energy increases, wavelength decreases

When the frequency of the waves increases, its energy increases, while the wavelength decreases.  

• A travelling disturbance, which mediates energy from one place to another is known as a wave.  

• The tendency to do work or cause a change is known as the energy.  

• Waves can be determined with the help of frequency and wavelength.  

• In a given unit of time, the number of complete wavelengths is known as frequency.  

• With the increase of the size of wavelengths, its energy and frequency decreases.  

• There are two basic kind of waves, that is, electromagnetic and mechanical waves.  

• The waves, which can travel through a medium or a vacuum is known as the electromagnetic waves.  

• The waves with long wavelengths comprise less energy than waves with short wavelengths.  

Thus, correct answer is option d, that is, energy increases, wavelength decreases.  

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An individual with an excellent sense of smell is handed a bottle of perfume. After smelling the perfume, he reports that the perfume contains a predominant smell of roses with a faint touch of vanilla. If the perfume is made from water, rose essence, and a splash of vanilla, it is most likely A. a mixture. B. a gas. C. an element. D. a compound.

Answers

Answer:

A. a mixture.  

Step-by-step explanation:

If the perfume is made from water and anything else, it is a mixture.

B. is wrong, because water is a liquid at room temperature.

C. is wrong, because water is a compound.

D. is wrong, because the perfume is a mixture of water and other compounds.

Answer: A. a mixture.

Explanation:

Element is a pure substance which is composed of atoms of similar elements. It can not be decomposed into simpler constituents using chemical reactions.Example: Copper [tex]Cu[/tex]

Compound is a pure substance which is made from atoms of different elements combined together in a fixed ratio by mass.It can be decomposed into simpler constituents using chemical reactions. Example: water [tex]H_2O[/tex]

Mixture is a substance which has two or more components which do not combine chemically and do not have any fixed ratio in which they are present.The components do not combine chemically and hence retain their original properties. Example: perfume made from water, rose essence, and a splash of vanilla.

Thus the perfume is most likely a mixture as different components retain their original properties.

What do you, a complex, multicellular organism, have in common with this single-celled algae that lives in the ocean? A) We have nothing in common. B) We have similar cell structure. C) We have the exact same cell parts. D) We both need salt water to survive.

Answers

Answer:

The answer is "B". We have similar cell structure.

Explanation:

We have similar cell structure. The algae is made of one cell. We are made of many, many cells. The cells that make up complex living things are different from each other.

The thing that a complex, multicellular organism, has in common with single-celled algae that live in the ocean is B. We have a similar cell structure.

Cells are referred to as the building blocks of life. Cells are important for every organism. It should be noted that while a unicellular organism and one cell, the multicellular organisms have two or more cells.

It should be noted that the unicellular organisms and the multicellular organisms have the same cell structure.

In this case, the unicellular organisms and the multicellular organisms both have cytoplasm and plasma membranes. They also contain DNA and ribosomes which are important for gene expression.

In conclusion, the correct option is B

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Which answer choice is an example of a correct chemical name?

Al2O3
aluminum oxygen
O3Al2
aluminum oxide

Answers

im very postive it is aluminum oxide (;

Hello There,

The answer is:

aluminum oxygen

Hope this help have a great day :)

chemicals integrate to kill insects and other pests that damage crops are

Answers

I believe the answer is pesticides

Hello,

Farmer's use many chemicals on their crops. The specific chemical you are looking for is Insecticides. Insecticides are specifically for crops, and it is used to kill insects and bugs. There are three different kinds of pesticides, and the one that mainly kills bugs in insecticides

- I . A -

What happens to the particles of an object as temperature is added to it or taken away from it

Answers

Answer:

If temperature added

If temperature is added to the object, the particles of the object vibrate faster, the space between atoms increases. The motion and spacing of the particles determines the space of matter of the object. This results in increased molecular motion, object expands and takes up more space

If temperature taken away

If temperature is taken away from object, the particles vibrate slower. The atoms can get closer result in the matter contracts.

In both cases the mass is not changes. and it happens in all solids, liquids and gases

An element's atomic number is 44. How many electrons would an atom of this element have?

Answers

Atomic number is the number of protons in an atom and is equal to the number of electrons also.

Atomic number = 44.

Hence number of electrons in an atom of this element (with atomic number 44) = 44 electrons.


a certain skin lotion is a fine mixture of water and various oils. this lotion is cloudy and cannot be separated into oil and water by filtration. moreover, it’s compon do not separate when left standing. what type of mixture is it

Answers

Final answer:

The lotion is a colloid, which is a stable mixture of water and oils that remains consistent without separation and exhibits the Tyndall effect.

Explanation:

The skin lotion described is a type of mixture known as a colloid. In this colloid, the water and oils do not separate upon standing, nor can they be easily filtered apart. The mixture is cloudy because the particles are large enough to scatter light, which is also known as the Tyndall effect. Typical lotions are oil-in-water emulsions that use substances to keep the mixture consistent without separation. Despite the presence of water and oils, which are generally immiscible, the formulation of lotions ensures that they remain stable and homogenous through the use of emulsifiers.

What is the density of the table tennis ball ? Record your answer to the nearest hundredth

Answers

Final answer:

The density of a table tennis ball cannot be determined without knowing its mass and volume.

Explanation:

The density of a table tennis ball is the mass of the ball divided by its volume.

Since we do not have the mass or volume of the table tennis ball, we cannot calculate its density.

The density of an object is typically measured in grams per cubic centimeter (g/cm³) or kilograms per cubic meter (kg/m³).

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Final answer:

Table tennis ball's density can't be provided directly without specific mass or volume data. However, it's generally understood to be less than water's density since it floats in water. You can measure the ball’s mass and volume yourself to calculate the density.

Explanation:

The density of an object can be calculated by dividing its mass by its volume. We don't have specific mass or volume values for a table tennis ball provided, so we cannot directly provide a density value. However, you can usually find this information on the ball packaging or from the manufacturer. Alternatively, you could calculate it yourself by measuring the mass of the ball using a scale, and the volume by displacement method in a liquid.

Remember, the unit of density is often expressed as grams per cubic centimeter (g/cm³) or kilograms per cubic meter (kg/m³) depending upon the unit system being used. If we were to compare a table tennis ball generally to water, which has a density of 1 g/cm³, we could say that the table tennis ball has a much lower density because it floats on water.

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A sample of air with a volume of 2.20m3 at a pressure of 105 KPa and a temperature of 30c is cooled to 10c and the pressure is reduced to 75.0 KPa.

What is the new volume?
6.9
1.34
2.56
43.0
2.88

Answers

it would be 43.0


hope it's right sir

Answer: The answer is 2.88 m3

Explanation: Since temperature, pressure and volume are given in the question, the general gas equation will be useful in calculating the new volume.

General gas equation,

(P1V1)/T1 = (P2V2) /T2 ................ (1)

Where,

P1 = Initial pressure

P2 = Final pressure

V1 = Initial volume

V2 = Final volume

T1 = Initial temperature in kelvin

T2 = Final temperature in Kelvin

Hence, from the question :

P1 = 105 KPa = 105,000 Pa

P2 = 75 KPa = 75,000 Pa

V1 = 2.20 m3

V2 =?

T1 = 30 °C = (273+30) K = 303 K

T2 =10 °C = (273+10) K = 283 K

Therefore, substitute these value into the general gas equation as given in eq (1) above.

V2 = (P1V1T2) /P2V1

V2 = (105000×2.2×283)/ (75000×303)

V2 = 2.88 m3

The equation that describes the process of photosynthesis

Answers

the last choice is the equation for photosynthesis

the last choice is the equation for photosynthesis

explain how heat transfer is occurring through convection, radiation AND conduction in this picture.

Answers

Heat is type of energy can be transferred in three different ways:

1) direction contact through collisions (also called conduction).  

Thermal conductuction is the transfer of heat through physical contact.

Thermal conduction is the transfer of heat by microscopic collisions of particles.

Heat spontaneously flows from a hotter (in this example hot liquid) to a colder body (in this example spoon).

2) through a fluid making a current created by less dense fluids floating and more dense fluids sinking (also called convection).  

Stirring hot liquid with spoon.

3) by waves traveling with or without a medium (also called radiation).

Waves radiate from hot liquid.

Final answer:

Heat is transferred through conduction, convection, and radiation, often occurring simultaneously. Conduction involves direct contact, convection is the movement of warm fluids, and radiation transfers energy via electromagnetic waves. These processes can be observed in a system like a fireplace, where all three mechanisms contribute to heat transfer.

Explanation:Heat Transfer: Conduction, Convection, and Radiation

In the context of heat transfer, conduction, convection, and radiation are three core mechanisms that allow energy to be transferred as heat. Whenever a temperature difference exists, these mechanisms facilitate the movement of heat.

Conduction: This type of heat transfer occurs through stationary matter by physical contact. For example, heat transferring from the burner of a stove through the bottom of a pan to the food is achieved by conduction.Convection: Convection involves the macroscopic movement of a fluid (either gas or liquid). Heat is carried by the fluid as it moves, such as in the case of hot water rising within a pot on a stove, allowing colder water to sink and get heated at the bottom, thus setting up a circulation pattern.Radiation: Radiation is the transfer of energy through electromagnetic waves without the need for a medium. An example is the heat we feel from the Sun, where the energy is transferred through the vacuum of space.

In scenarios like a fireplace, these three methods of heat transfer are evident:

Heat radiates into the room, warming it up.The structure of the fireplace and the adjacent wall conduct heat into the room, albeit at a slower pace.Convection occurs as warm air rises and escapes up the chimney, drawing in colder air from the surrounding space, which then gets heated by the fire.

Helppppp what are the atomic mass neutrons and nuclear charge to these elements? For 15 POINTS

Answers

In these atoms, the positive and negative charges cancel each other out, leading to an atom with no net charge.

(Protons, neutrons, and electrons)

Which statement is true about a proton and a neutron?
1) they have the same masses and different charges
2)they have the same masses and different charges
3) they have different masses and the same charge
4) they have different masses and different charges

Answers

Final answer:

The true statement is that protons and neutrons have approximately the same masses and different charges. Hence option 1- 'They have the same masses and different charges' is the correct answer.

Explanation:

The statement that is true about a proton and a neutron is that they have approximately the same masses and different charges. Both the proton and neutron have masses close to 1 atomic mass unit (amu), but they have different charges: the proton has a positive charge (+1), while the neutron is electrically neutral (0 charge).

Protons and neutrons, which reside in the nucleus of an atom, are considered the primary contributors to the atom's mass, as their mass is approximately 1836 times greater than that of an electron. Despite their similar masses, protons and neutrons differ significantly in their electric charge, which is crucial for understanding atomic structure and nuclear chemistry.

whoch of the following statments doesnt describe the structure of a atowhich of the following do not describe the structure of an atom inside the nucleus of an atom are protons and neutrons protons are positively charged subatomic co-product electrons are negatively charged subatomic particles most of the mass of the atom comes from the electron cloud

Answers

Answer : The incorrect option is, The most of the mass of the atom comes from the electron cloud.

Explanation :

There are three basic particles of an atom which are neutrons, protons and electrons.

The nucleus which is present in the center of an atom that contains the neutrons and the protons. The protons are positively charged and neutrons has no charge.

The outer region of an atom contains the electrons and the electrons are negatively charged.

As per given options, the statement which is the most of the mass of the atom comes from the electron cloud is incorrect statement because the most of the mass comes from the nucleus in which protons and neutrons are present.

please help tia!
Referring to the previous question, who had used more power ; the man who walked up the hill or the man who bicycled up the hill?

They both used the same amount of power

The one who walked

Neither of them used power

The one who bicycled

Answers

I need to see the previous question in order to answer this!

If a refrigerator is a heat pump that follows the first law of thermodynamics, how much heat was removed from food inside of the refrigerator if it released 258J of energy to the room?

Answers

In the first law of thermodynamics, it states when heat is converted into energy, where as the total energy in the room could transform into another but can never be created or destroyed. If you release 258J of energy in the room, 258J would also be removed from the food according to the isolating system.

Your answer would be 258J.


Which of the following is a solution for reducing greenhouse gases?



public transportation


not recycling


cutting down more trees

Answers

Answer:

public transportation

mark me as brainliest

Answer:

A) public transportation

Explanation:

public transportation can help reduce the amount of cars that contribute to an accumulation of greenhouse gases

Wrong answers:

not recycling contributes to greenhouse gases by requiring new products to be made and contributing to land fills

cutting down more trees both requires tools that create greenhouse gases and lowers the number of trees that could help absorb greenhouse gases

Therefore, the correct answer is A) public transportation

Visible light, X Rays infrared radiation and radio waves all have the same

Answers

Answer:Visible light, X Rays infrared radiation and radio waves all have the same speed.
Final answer:

The common feature of visible light, X-rays, infrared radiation, and radio waves is that they all represent types of electromagnetic radiation, possessing different wavelengths and energy levels, but all moving at the speed of light.

Explanation:

Visible light, X-rays, infrared radiation, and radio waves all fall under the umbrella of electromagnetic radiation, which consists of waves of energy that move through space at the speed of light. This spectrum includes, from longest wavelength to shortest: radio waves, microwaves, infrared radiation, visible light, ultraviolet radiation, X-rays, and gamma rays. The important common feature between all these types of rays is that they travel at the same speed in a vacuum, which is the speed of light, at approximately 299,792 kilometers per second.

Each type of electromagnetic radiation is characterized by its wavelength and frequency, which determine its position in the electromagnetic spectrum. For example, X-rays have shorter wavelengths and thereby more energy, enabling them to penetrate human tissue. Visible light has wavelengths ranges from 380 to 740 nm, frequencies visible to the human eye. Infrared radiation and radio waves have longer wavelengths and lesser energy.

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The four main economic systems include...

Answers

I would say traditional, command, market and mixed.



Hope this helped


Mind marking me brainliest. Thank you!

CO2+ H2O --> C6 H12 O6 +O2

Answers

hello there the answer is 6 H2O + 6 CO2 = C6H12O6 + 6 O2

Answer:

Photosynthesis

Explanation:

What is the number of moles in 432g Ba(NO3)2

Answers

First there is a need to calculate the molar mass of Ba(NO₃)₂:

137.3 + 2 (14.0) + 6 (16) = 261.3 grams/mole

The molar mass, denoted by M in chemistry refers to a physical characteristic illustrated as the mass of a given component divided by the amount of the component. The molar masses are always denoted in grams/mole.

After finding the molar mass, the number of moles can be identified as:

432 grams / 261.3 g/mol = 1.65 moles of Ba(NO₃)₂.

The number of moles in 432g of Ba(NO₃)₂, is 1.653.

To calculate the number of moles in 432g of Ba(NO₃)₂, we first need to find its molar mass. The molar mass of Ba(NO₃)₂ is calculated as follows:

Ba: 137.3 g/molN: 2 x 14.0 g/mol = 28.0 g/molO: 6 x 16.0 g/mol = 96.0 g/mol

Therefore, the molar mass of Ba(NO₃)₂ is 261.3 g/mol.

Next, we use the formula for the number of moles:

Number of moles = mass / molar mass

So, the number of moles of Ba(NO₃)₂ in 432g is:

Number of moles = 432g / 261.3 g/mol = 1.653 moles

help me with this please!!

Answers

heterogeneous mixtures are those that are mixed, but not evenly. so you can see the different parts.  compound is something made up of 2 or more elements.  so, K will be a compound, as they are giving you the chemical formula, and showing there are 2 elements.  and L is the heterogeneous mixture, as, even though it is crushed, the rocks can be picked apart.

what takes place during a redox reaction

Answers

Final answer:

In a redox reaction, one substance is oxidized (loses electrons) while another substance is reduced (gains electrons). An example is the reaction between hydrogen and fluorine.

Explanation:

During a redox reaction, one substance gets oxidized, meaning it loses electrons, while another substance gets reduced, meaning it gains the electrons that were lost by the oxidized substance. This simultaneous oxidation and reduction is why these reactions are referred to as 'redox' reactions. For example, in the reaction between hydrogen and fluorine, H2 + F2 → 2HF, hydrogen is oxidized, as it loses an electron, and fluorine is reduced, as it gains the electron lost by hydrogen.

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the normal boiling point of liquid x is less than of y which is less than that of z which of the following is in the correct order of increasing vapor pressure of the three liquids at stp?

Answers

XYZ is the answer

mark brainliest if helpful

The correct order of increasing vapor pressure at STP for the liquids X, Y, and Z is Z, Y, X, because vapor pressure is inversely related to boiling point. Option B is correct.

The student has asked to arrange liquids X, Y, and Z in the correct order of increasing vapor pressure at Standard Temperature and Pressure (STP). Liquids boil when their vapor pressure becomes equal to the external pressure. As per the given information, the normal boiling point of X is less than that of Y, which is less than that of Z. It is known that the vapor pressure of a liquid is inversely related to its boiling point.

Therefore, the liquid with the lower boiling point will have a higher vapor pressure at a given temperature. Hence, since X has the lowest boiling point, followed by Y, then Z, the correct order of increasing vapor pressure at STP would be Z, Y, X.

Hence, B. is the correct option.

The complete question is:

The normal boiling point of liquid X is less than that of Y, which is less than that of Z. Which of the following is the correct order of increasing vapor pressure of the three liquids at STP?

A) X, Y, Z

B) Z, Y, X

C) Y, X, Z

D) X, Z, Y

E) Y, Z, X

Rutherford's research was primarily involved with: electron distribution defining the components of nuclei using electromagnetic energy

Answers

Answer is: defining the components of nuclei.

Rutherford theorized that atoms have their charge concentrated in a very small nucleus.

This was famous Rutherford's Gold Foil Experiment: he bombarded thin foil of gold with positive alpha particles (helium atom particles, consist of two protons and two neutrons).  

Rutherford observed the deflection of alpha particles on the photographic film and notice that most of alpha particles passed straight through foil.

That is different from Plum Pudding model, because it shows that most of the atom is empty space.

Rutherford conducted research that led to the first splitting of the atom in a nuclear reaction.

Ernest Rutherford's research primarily focused on defining the components of nuclei, leading to the discovery of the atomic nucleus and a planetary model of the atom, which advanced the understanding of the atom's structure.

Ernest Rutherford, a pioneering physicist, is renowned for his groundbreaking work that led to the modern understanding of atomic structure. His research involved defining the components of nuclei through experiments with alpha particles. Rutherford's shocking discovery was that atoms consist of a tiny, dense, positively charged nucleus, revolutionizing the atomic model at the time.

Unlike the previous plum pudding model, which assumed a uniform distribution of electrons within a positively charged atom, Rutherford proposed that electrons orbit this central nucleus, analogous to planets orbiting the sun. This model represented a significant shift from the thought that electrons were uniformly distributed throughout the atom's volume. Rutherford's planetary model laid the foundation for the quantum mechanical principles that describe electron distribution in contemporary atomic theory.

Rutherford's experiments involved directing a beam of alpha particles, emitted from the radioactive decay of radium, at thin gold foil. Along with his colleagues Hans Geiger and Ernest Marsden, Rutherford observed the scattering of these particles, leading to the conclusion that a massive positive charge (the nucleus) occupied a minute portion of the atom's space.

I need help with #26

Answers

Radioactive substances decay and emit alpha, beta, positron, and gamma particles in the process of converting to stable nuclei. An alpha particle has two protons and two neutrons, is relatively heavy and deflected by electrical and magnetic fields. Beta particles are fast moving electrons which are greatly deflected by electrical and magnetic fields. Gamma particles (highly energetic) are neutral and not deflected electrical and magnetic fields. Positron is positively charged beta particle. Opposite charges attract each other. So we can say that alpha particle and positron being positively charged are attracted towards the negative plate. Alpha particle is heavy, so it is slightly deflected towards the negative plate. Beta particle being negatively charged is deflected towards the positive plate and gamma particle is neutral and not deflected in the electrical field.

Therefore, the correct answer is,

A. Beta particle

B. Gamma particle

C. Alpha particle

D. Positron

The correct answer indicating the particle deflected towards the positive plate is option A, the Beta particle. Options B (Gamma particle), C (Alpha particle), and D (Positron) are not deflected towards the positive plate in an electric field.

In the context of radioactive decay, the behavior of particles in electric and magnetic fields provides clues to their charge and mass.

Beta particles, being fast-moving electrons, are negatively charged and deflect towards the positive plate.

Gamma particles, being neutral, remain unaffected by electric and magnetic fields.

Alpha particles, although positively charged, are heavy and only slightly deflected towards the negative plate.

Positrons, being positively charged, would be attracted towards the negative plate.

Therefore, the correct answer indicating the particle deflected towards the positive plate is option A, the Beta particle. Options B (Gamma particle), C (Alpha particle), and D (Positron) are not deflected towards the positive plate in an electric field.

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Which of the following is NOT needed in air for water condensation to occur?
A. Temperature at the dew point
B. Condensation nuclei
C. Temperature inversion
D. Water vapor

Answers

Im not so sure but i think it D.

Answer:

option C)

Explanation:

correct option is option C)

in troposphere when we move up the temperature goes on decreasing and the hot air from the earth surface   comes into  contact with the cold air of the troposphere then air gets condensed.

but in temperature inversion when moves up temperature increases and this leads the gases to not to condense.

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