The "Great Ocean Conveyor Belt" is an ocean current that helps move heat energy around the earth and keeps our atmosphere more liveable. This ocean current is caused by differences in water density. These differences are caused mainly by
A.) Chemical content and surface winds

B.) Salinity and surface winds

C.) Water temperatures and salinity

D.) Water temperatures and geographical formations
I NEED ANSWER ASAP

Answers

Answer 1

The ocean current is caused by differences in water density. The difference in the density of water is mainly caused by the temperature and salinity of water.

What is density?

Density of a substance is the measure of its mass per unit volume. It describes how closely its particles are packed within a given volume. Density of a substance is dependent on the temperature and pressure also.

The density of water is affected by the temperature and salinity. Water has its maximum density at 4 ° C. The more saline is water, more will be the density. Because, more ions or salts makes water denser.

The density vary with variations in temperature and salinity. This variation causes water currents from the denser areas to the less dense areas. Ocean currents are also affected by the gravity.

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Related Questions

It takes a water wave 5.2 seconds to travel between two docks there are 19 m apart. An observer notices that 20 crests pass the first dock in 17 seconds.

find the wavelength of the water waves.

Answers

Answer:

152.12

Explanation:

hope it helps

Kong Mali po sorry

Describe an adaptation to a plant's life cycle and explain how this adaptation helps the plant survive.

Answers

alright, sum leaves have large air pockets inside that allow the plant to absorb oxygen from the water from rain or puddles

Answer:

Plant adaptations are modifications that enable a plant species thrive in its natural habitat. Underwater aquatic plants have enormous air pockets in their leaves that allow them to collect oxygen from the water. Aquatic plants' leaves are also incredibly delicate, allowing them to move with the waves.

what happens when stress in rock builds up inside earth

Answers

Answer:

Explanation:

Stress causes the build up of strain, which causes the deformation of rocks and the Earth's crust. Compressional stresses cause a rock to shorten. Tensional stresses cause a rock to elongate, or pull apart.

Is this water or oil

Answers

Answer:

it is oil.

Explanation:

it is oil because if water was written that would be wried so I think it is oil.

How many grams of water will you make from 7 moles of H2?

Answers

Multiply the molar mass x 7 and you should get your answer :)

What is the smallest measurement you can make on the meter stick using the metric scale?

Answers

The smallest measurement you can make on the meter stick using the metric scale is the millimeter.

The millimeter is the smallest measurement on the meter stick . The millimeter is the smallest reading in the meter stick. we use the meter stick to simply measure the length. The meter reading is calibrated in the centimeters in the meter scale. the least count in the meter scale is the millimeters. we can measure the things as the length of the table or the width.

Thus, the smallest measurement in the meter stick using the meter scale is the millimeters. the symbol of the millimeters is mm.

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[sulfate ion] in a1.15 M potassium sulfate

Answers

The concentration terms are molality, normality and mole fraction. Molarity can be used to find out the ionic strength of any solution. Therefore, the concentration of sulfate ion is 1.15 M.

What is molarity?

Molarity can be calculated by dividing number of moles of solute by volume of solution in litre. Molarity is affected by temperature. Its unit is mole/liter. It measure the concentration of any solute in a solution.

K₂SO₄[tex]\rightarrow[/tex]2K⁺ + SO₄²⁻

concentration of potassium sulfate=concentration of potassium ion=concentration of sulfate ion

1.15 M =concentration of potassium ion=concentration of sulfate ion

Therefore, the concentration of sulfate ion is 1.15 M.

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Frida wants to measure the volume of a stone. She starts by pouring 473 mL of water into a large measuring cup. Then she drops in the stone. Now the water measures 499 mL. What is the volume of the stone

Answers

Frida wants to find the volume of a stone by measuring the change in water volume before and after the stone is added.  the volume of the stone is 26 cm³.

Frida wants to find the volume of a stone by measuring the change in water volume before and after the stone is added. She fills a measuring cup with 473 mL of water and drops the stone in, causing the water level to rise to 499 mL. Using the conversion factor that 1 mL = 1 cm³, the initial volume of water is 473 cm³ and the final volume of water is 499 cm³. By applying the equation [Volume of stone] + [Initial water volume] = [Final water volume],

substituting the values

⇒ xcm3 +473cm3 = 499cm3

xcm3 =499cm3 −473cm3

xcm3 =26cm cube

the volume of the stone can be determined to be 26 cm³.

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Select the correct answer from each drop-down menu. what are the percent compositions of vanadium and lead? a metallurgist begins with 1,250 grams of vanadinite (pb5(vo4)3cl) and ends up with 135 grams of pure vanadium and 915 grams of pure lead. the percent composition of vanadium in the ore is , and the percent composition of lead is .

Answers

The percent composition of vanadium in the ore is 1A: 10.8%, and the percent composition of lead is 2B: 73.2%.

Vanadinite (Pb₅ (VO₄)₃Cl) = 1250 grams

Pure vanadium= 135 grams

Pure lead = 915 grams

Percent composition of vanadium =?

Percent composition of lead  =?

The formula to find the percent composition is as follows:

Percent composition =(substance mass in grams/ sample mass in grams) × 100

1: Now solving to find the percent composition of vanadium by putting values in the formula:

Percent composition of vanadium =  (vanadium mass/sample mass) × 100

Percent composition of vanadium =  (135 g/ 1250 g) × 100

Percent composition of vanadium =  10.8 %

2: Now finding the  percent composition of lead by using the same formula:

Percent composition of lead     = (lead mass/sample mass) × 100

Percent composition of lead    = (915 g / 1,250 g) × 100

Percent composition of lead    =  73.2%

"

Complete question:

What are the percent compositions of vanadium and lead?

A metallurgist begins with 1,250 grams of vanadinite (pb5(vo4)3cl) and ends up with 135 grams of pure vanadium and 915 grams of pure lead.

The percent composition of vanadium in the ore is ______ , and the percent composition of lead is ________ .

OPTIONS:

1.

A. 10.8%

B. 14.3%

C. 14.8%

D. 62.4%

2.

A. 55.6%

B. 73.2%

C. 16.0%

D. 23.8%

"

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Answer:

10.8%

73.2%

Explanation:

I just did the test and its right on  plato, Have a great a day!

Which type (or types) of crystalline solid is characterized by each of the following: (a) high mobility of electrons throughout the solid; (b) softness, relatively low melting point; (c) high melting point and poor electrical conductivity; (d) network of covalent bonds?

Answers

Types of crystalline solids characterized by;

(a) high mobility of electrons throughout the solid; metallic solids.

(b) softness, relatively low melting point; covalent network solid.

(c) high melting point and poor electrical conductivity; ionic solids.

(d) network of covalent bonds; molecular solids.

What are the types of crystalline solids?

Crystalline solids are those that have their atoms, ions, or molecules arranged in a regular, well-defined pattern. The unit cell is the smallest repeating pattern of crystalline solids, and unit cells are similar to bricks in a wall in that they are all identical and repeating.

Ionic solids, molecular solids, network covalent solids, and metallic solids are the four types of crystalline solids. A covalent network solid is a type of solid that has a low melting point, softness, and low electrical conduction. Metal cations are surrounded by a "sea" of mobile valence electrons in metallic crystals.

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What mass of HCI is needed to
generate 45.2 g of AICI3?
2AI + 6HCI → 2AICI3 + 3H2
AICI3: 133.33 g/mol
HCI: 36.46 g/mol
[?] g AlCl3

Answers

you must use the process known as dimensional analysis. start with what the problem gives you, which in this case is g of AlCl3!
(45.2 g AlCl3) * (1 mol AlCl3/133.33g AlCl3) * (6mol HCl/2mol AlCl3) * (36.46gHCl/1molHCl)
Now multiply across. the correct answer should cancel all units except g HCl, since that is what the problem asks for
34.9 g HCl is required!

What are the things to consider before using hot and cold compress?

Answers

Answer:

Explanation:

There are several things to consider before using hot and cold compresses:

The condition being treated: Different conditions may require the use of hot or cold compresses. For example, hot compresses may be used to alleviate muscle pain, while cold compresses may be used to reduce swelling and inflammation.

The individual's sensitivity to temperature: Some people may be more sensitive to temperature changes and may need to use a compress that is not as hot or cold.

The duration of use: It is generally recommended to use hot compresses for no more than 20 minutes at a time, and cold compresses for no more than 15 minutes.

The potential for burns or frostbite: Hot compresses should not be used on skin that is broken or damaged, as they can cause burns. Cold compresses should not be applied directly to the skin for an extended period of time, as they can cause frostbite.

The individual's overall health: Individuals with certain medical conditions, such as circulation problems, should be careful when using hot and cold compresses and should consult with a healthcare professional before doing so.

Estimate how much heat in joules is released when 25. 0 g of water (C = 4. 184 J/g°C) is cooled from 80. 0°C to 30. 0°C?

Answers

The heat in joules is released when 25. 0 g of water (C = 4. 184 J/g°C) is cooled from 80. 0°C to 30. 0°C is -5210 J

To find the amount of heat released when a substance is cooled, we can use the equation:

q = mcΔT

where q is the amount of heat (in joules), m is the mass of the substance (in grams), c is the specific heat capacity of the substance (in joules per gram per degree Celsius), and ΔT is the change in temperature (in degrees Celsius).

Given the information in the question, we have:

m = 25.0 g

c = 4.184 J/g°C

ΔT = 30.0°C - 80.0°C = -50.0°C

So, we can substitute these values into the equation and get:

q = (25.0 g)(4.184 J/g°C)(-50.0°C)

q = -5210 J

Therefore, the amount of heat released when 25.0 g of water is cooled from 80.0°C to 30.0°C is -5210 J.

A negative sign means the heat is absorbed during the cooling process, it is an endothermic process.

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Which types of salts produce SO2 gas on reacting with acids?

Answers

Answer:

 SO2 and SO3 are acidic oxides that react with bases in aqueous solutions to create sulfurous acid and sulfuric acid salts as these gases dissolve in water. In aqueous solution, SO2 and SO3 react with NaOH to form Na2SO3 and Na2SO4.

Explanation:

Acellus

A steel pipe measures

62. 95 feet. How many

kilometers is this?

? ] km

Be sure to round your answer to the

correct number of significant figures.

Length in km

Enter

Answers

The answer is 0.01918 kilometers.

To convert from feet to kilometers,

you must first convert feet to meters. To do this, multiply the number of feet by 0.3048. In this case, 62.95 feet multiplied by 0.3048 equals 19.18 meters To convert from meters to kilometers, multiply the number of meters by 0.001. 19.18 meters multiplied by 0.001 equals 0.01918 kilometers. Therefore, 62.95 feet is equal to 0.01912 kilometers.

To review the conversion steps more closely, starting with feet and ending with kilometers:

1. Feet (62.95) to meters (19.18): Multiply by 0.3048

2. Meters (19.18) to kilometers (0.01918): Multiply by 0.001 or divide by 1000.

Therefore, 62.95 feet is equal to 0.01918 kilometers.

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Which molecule is shown below

Answers

Answer:

A

Explanation:

You can see the top part looks kinda like methane, and the bottom part looks like hexane.

Answer:

A is correctvia A P E x

Explanation:

I need some chemistry help
Thank u

Answers

H2(g) + Cl2(g) = 2 HCl (g) AH-184.6 kJ where the mathematical notation for "is equivalent to" is. However, we also have a quantity called energy change in our thermochemical equation

What is a thermochemical equation mean?

Thermochemical equations are symmetric chemical equations that take into account both the energy change and the physiological state of all products and reactants. When energy is a reactant, a reaction is endothermic; whereas, when energy is a product, a reaction is exothermic.

How is a thermochemical process expressed in writing?

A balance empirical formula with its heat per reaction is known as a thermochemical equation. They appear to be equal to A+B+C+H=Xjoules. You are already proficient at creating and balancing chemical equations. Therefore, all we must do is add either H or U values.

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what kind of information does this map show ​

Answers

Answer: C(Elevation of surface features)

Explanation: It's a topographical Map which displays lines of Equal Elevation.

if the density of hydrogen is 0.090 g l and its rate of diffusion is 5.93 times that of chlorine, what is the density of chlorine

Answers

The density of chlorine will be  3.163 g/L.

The mass of a substance per unit of volume is its density. According to Graham's law, a gas's rate of effusion is inversely proportional to its square root density. When a material's particles are concentrated in a low area, they tend to travel to the place where the concentration is highest. When we use perfume or a scented spray in one area of the room and subsequently can smell it throughout the entire space, that is a simple illustration of this process.

rate1 = H2 = 5.93

rate2 = Cl2 = 1

The molecular weight of H2 = 2.016

The molecular weight of Cl2 = x.

By Graham's Law:

5.93 / 1 = x / 2.016

35.1649 = x / 2.016

x = 70.89 g/mol

Determine gas density by volume

70.89 g / 22.414 L = 3.163 g/L

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 (Question) How many atoms are in 3 grams of Cu?
(20 points)

Answers

3 grams of Cu = 6.022 x 10^23 atoms of copper.

Answer:

2.84 × 10^22 atoms

Explanation:

To calculate the number of atoms in 3 grams of Cu, we can use avogadro's constant where:

[tex]1 \: mole = 6.02 \times 10 {}^{23} \: atoms[/tex]

Firstly, we have to calculate the number of moles in 3 grams of Cu. The formula to calculate moles is:

[tex]moles = \frac{mass}{molar \: mass} [/tex]

the mass = 3g and the molar mass = 63.55 (this value can be found in the periodic table)

Substitute the values in formula:

[tex]moles = \frac{3}{63.55} [/tex]

[tex]moles = 0.0472[/tex]

Now use the number of moles to convert to atoms using avogadro's number, where x is the unknown number of atoms we want to find:

[tex]1 \: mole : 6.02 \times 10 {}^{23} \: atoms[/tex]

[tex]0.0472 \: moles : x \: atoms[/tex]

Cross multiply and equate to solve for x:

[tex]1 \times x = 6.02 \times 10 {}^{23} \times 0.0472[/tex]

[tex]x = 6.02 \times 10 {}^{23} \times 0.0472[/tex]

[tex]x = 2.84 \times 10 {}^{22} \: rounded \: to \: 3sf[/tex]

Hence, there are 2.84 × 10^22 atoms in 3 grams of Cu

help help help help help help ​

Answers

Answer:

d) Hypothesis

Explanation:

I think d) Hypothesis is the correct answer for the question.

Hope it helps :)

which conditions generally cause the characteristics of a gas deviate most from the ideal gas laws

Answers

Answer: Low temperature high pressure

Explanation: i’m literally doing the same quiz right now

How many moles in 18g of H3PO4?

Answers

Answer:

0.184 mol

Explanation:

Look up molar masses for the elements that comprise H₃PO₄:

H = 1.008 g/mol

P = 30.97 g/mol

O = 15.99 g/mol

The molar mass of H₃PO₄ is a weighted sum of these (3 hydrogen + 1 phosphorus + 4 oxygen) that comes out to about 97.99 g/mol.

Then

(18 g H₃PO₄) × (1/97.99 mol/g) ≈ 0.1837 mol

If you dilute 125 mL of a 2.5 M solution of Lici to 1.0 L, determine the new
concentration of the solution.

Answers

Answer:

0.31M is the new concentration of the solution

Explanation:

The solution is diluted from 125mL to 1.0L = 1000mL. The dilution is of:

1000mL / 125mL = 8 times.

That means the concentration of the diluted solution is 8 times lower than the original solution. That is:

2.5M / 8 times =

0.31M is the new concentration of the solution

What is the first thing you should do following an accident with a chemical?

Answers

Immediately rinse chemicals off with a lot of water.                                  

Different assistance must be used because different chemical accidents might occur in various ways.

Help while inhaling a chemical:                

To provide the person access to fresh air, remove them from the factory or work location. Make sure your company has a plan in place for what to do if a worker becomes unconscious or is unable to move. If the person has inhaled chemicals, administer oxygen from an oxygen tank.

Help if a Chemical touch your skin:  

Immediately rinse chemicals off with lots of water for at least 15 minutes. The more quickly and for a longer period of time you start to pour water over the region, the more damage you will limit. Chemicals that catch fire or absorb quickly through the skin must be washed for a longer time, 30 minutes to 1 hour.

Help if chemical is in eye:        

Right away, rinse the eye or both eyes. Rinse for at least 15 minutes while using a lot of water. If you have an emergency eye wash, activate it while keeping your eyes open with your fingers. If you must use your hands to splash water in your eyes, keep them open while doing so. Seek assistance in keeping them open.

Help if chemical is in mouth:                                                        

Look for the chemical label or any other relevant information. Typically, the label will provide information on "ingestion" in the first aid section. If the person should vomit up the chemical or not is determined there. It is crucial that you heed that counsel. If the chemical is consumed, the label can include an antidote. Give the remedy if you have it.

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Please help ASAP!!!!!!!!!!!!
1) What properties of a supercritical fluid are more similar to those of a liquid than a gas?
2) What properties of a supercritical fluid are more similar to those of gas than a liquid?
3) Why does CO2 need to be a supercritical fluid for the process of decaffeination?

Answers

stan StayC and stream ASAP
1) A supercritical fluid is a substance with both gas-and liquid-like properties. It is gas-like in that it is a compressible fluid that fills its container, and is liquid-like in that it has comparable densities (0.1–1 g ml-1) and solvating power.

the chemical name for Cu3N2 is?
A)copper(I) nitride
B)copper nitride
C)copper (II) nitride
D)copper (I) nitride

Answers

C. Copper (II) nitride

What happens to molecules when they move faster?

Answers

When molecules move faster, they increase their kinetic energy.

What is Kinetic energy?

Kinetic energy is essentially the energy of motion. It is the type of energy that an object possesses as a result of its motion. It is commonly defined as the work required to accelerate a given mass body from rest to its stated velocity. Kinetic energy is directly related to the object's mass and the square of its velocity.

This increase in kinetic energy causes the molecules to vibrate more rapidly, resulting in an increase in temperature. As molecules move faster, they also collide with each other more frequently, leading to more chemical reactions.

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What are the two quantities in this module for which we will develop unit factors to do dimensional analysis with chemical substances?

Answers

The two quantities in this module for which we will develop unit factors to do dimensional analysis with chemical substances are mass and volume.

What is chemical substances?

Chemical substances are any material made up of atoms and molecules that have distinct chemical properties. They include elements, compounds, and mixtures of elements and compounds. Chemical substances are the building blocks of all matter, from the atoms and molecules that make up the smallest particles to the complex structures of living organisms. Chemical substances can exist in various states, such as solid, liquid, and gas, and can react with other substances to form new compounds or break down into simpler substances. Chemical substances are important in many areas of science, including chemistry, biology, geology, and physics.

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Balance the following equation. Do
H₂+NO → H₂O + N₂

V

Answers

V2 + 2NO → 2H2O + N2 The equation is balanced by adding an additional coefficient (2) to the hydrogen (H2) and water (H2O) molecules on the product side.

What is balanced?

Balanced is a term used to describe a state of equilibrium or harmony. It implies a situation where all elements are in proportion and none are out of place or dominant. This could describe a healthy diet that provides a balance of proteins, carbohydrates, and fats, or a successful family life where time is shared between work, play, and private activities. Balance is also a key factor in physical and mental health, when all aspects of life are in alignment it allows for a more fulfilling and enjoyable experience.

This ensures that the number of atoms of each element is equal on both sides of the equation. In other words, the number of atoms of hydrogen (H2) and water (H2O) molecules on the left side of the equation must be equal to the number of atoms of hydrogen (H2) and water (H2O) molecules on the right side of the equation.

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trigonometry, please help thanks How does Scout compare and contrast the ladies world and the world of my father? 15 POINTS dont explainA.neitherB.HLC.SAS Read the passage and answer the question below.Principal Stevens, Trustees, Faculty members, family, friends and fellow graduates, today is a day to be thankful and to be inspired.First we have much to be thankful for. Here at Peterson School we have received a great education thanks to our fine administration and teachers. We are prepared to move on and to take on whatever challenges come next in our lives.Fellow graduates, I want you to know what a great gift being as prepared as we are is because that cannot be said for all schools. Here we have had a high degree of academic excellence and whether you intend to continue your education or not, you will benefit from what you learned here.We can also be thankful for our families. These past four years have presented us with a lot of ups and downs and it is good to know that we had our families in our corner, supporting us along the way. Thanks Mom and Dad. I would not be here today without you.Finally, we can be thankful for each other. The friendships that we have made here will last a lifetime and in the same way we have helped each other to, in some ways survive these 4 years here and in other ways succeed in these years at Peterson, I hope we will continue to be there for each other and to support each other in future endeavors.Now, what can we be inspired by today? Personally, I am inspired by our classmate Alan Rockford who has overcome so much adversity to be here graduating today. Alan, you have been tenacious and have had such a great attitude in the face of so many setbacks. Whenever I get a little down about something that didnt turn out just the way I wanted it to, I remember some of the talks we have had and it gives me the perspective I need. 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