What is the source of energy that is released in an exothermic reaction? what absorbs the energy that is released ?

Answers

Answer 1
Hello,

Here are your answers:

The proper answers to your questions are....

1. "Chemical bond energy is converted to kinetic energy"...... which causes it to release energy around its surroundings!

2. "Endothermic reactions"...... Endothermic reactions are the things that absorb the energy!

If you need anymore help feel free to ask me!

Hope this helps!

Related Questions

30ml of 0.10 NaOh neutralized 25.0ml of HCL determine the concentration of the HCL? PLEASE HELP ME ASAP

Answers

The equation is one to one so you can use M1V1=M2V2
so
(30ml)(.10M)=(25ml)(x)
x= .12M

Use the particle theory of matter to explain why icing sugar dissolves more rapidly than granular sugar.

Answers

icing sugar dissolves quicker than granulated sugar because of its small fine like particles, icing sugar is made so fine that it almost acts like flour, so its easier to dissolve as it will rapidly dissolve in water due to its bigger surface area. 

Icing sugar dissolves in water faster than granular sugar because it has a larger surface area, which enhances interactions with solvent molecules, thus speeding up dissolution. Stirring and temperature also affect the rate of dissolution but icing sugar's fine particles inherently dissolve quicker.

Using the particle theory of matter, we can explain why icing sugar dissolves more rapidly than granular sugar. The rate at which a solute dissolves is influenced by the surface area exposed to the solvent. Icing sugar, being finely ground, has a much larger surface area compared to granuler sugar, allowing for more interactions between the sugar particles and the water molecules, leading to a faster rate of dissolution.

Agitation of the solution can also increase the rate at which sugar dissolves. Stirring introduces fresh solvent molecules to the solute, enhancing dissolution by preventing saturation at the interface. This principle applies to both icing and granular sugars but is more pronounced with larger particles like those found in granular sugar.

The dissolving process, or rate of dissolution, is enhanced not only by increasing surface area and agitation but also by temperature. Hot water will dissolve sugar faster than cold water due to the increased energy, which in turn increases the frequency and energy of collisions between solvent and solute particles.

Will give brainliest please help ASAP

Answers

A) NOPE!
B)Maybe
C)YUP this is the answer
D)meh...

Name two other compounds with bonding similar to that in hydrogen bromide

Answers

COVALENT AND HYDROGEN BONDING

Why is rusting a chemical change?

Answers

Rusting is a chemical change because it is two substances reacting together to make a new substance. It also has broken and rearranged compounds and usually doesn't simply change back to normal easily or at all. Is that too much or is it good?  

Rusting is a chemical change where iron reacts with oxygen and water to form iron oxide, a new substance with distinct chemical properties. This process signifies a release of energy and is a part of corrosion, differentiating it from mere physical changes.

Rusting is considered a chemical change because it results in the formation of a new substance with different properties compared to the starting materials. When iron is exposed to oxygen and water, a reaction occurs that produces iron oxide, commonly known as rust. This process, known as corrosion, involves not just a change in the appearance of the iron, but also the formation of a new chemical compound with its own distinct properties.

A chemical property of iron is its tendency to combine with oxygen, an observation that can be made when iron begins to rust. The rusting process not only changes the color and texture of the iron but also signifies that energy stored in the reactants has been released during the formation of the rust. Unlike physical changes that do not affect the substance's chemical identity, chemical changes like rusting create a fundamentally different kind of matter.

Help with chemistry hw?

Answers

1) We don't actually need to solve this, because we can tell by eye-balling this; however, let's solve it anyway to go over the steps.


At STP, or standard temperature and pressure, a mole of gas always has a volume of 22.4 L.


We have 48.6 g [tex]CO_2[/tex]. Using the molar mass of carbon dioxide, we find the number of moles

[tex]48.6 \ g \ CO_2 \ * \dfrac{1 \ mol \ CO_2}{44.01 \ g \ CO_2} = 1.10 \ CO_2[/tex].


To get the volume, we write

[tex]1.10 \ mol \ CO_2 * \dfrac{22.4 \ L}{mol} = 24.7 \ L \ CO_2[/tex].


2) We have 0.179 g of this gas taking up 1 L.


That means we have [tex] \frac{1}{22.4} \ mol[/tex] of this gas, because one mole of a gas at STP takes up 22.4 L.


If [tex]\frac{1}{22.4} \ mol=0.179 g[/tex], we can solve to find its molar mass and then its identity.


[tex](22.4)(0.179) \ \dfrac{g}{mol} = 4.00 \ \dfrac{g}{mol} [/tex]


He has this molar mass, so we know the identity of the gas is He.


3) 


1. This is a decomposition reaction of the form AX ⇒ A + X.


2. ΔH refers to the change in enthalpy in a reaction. For a positive value, the reaction is endothermic; for a negative value, it is exothermic. An endothermic reaction requires energy added to run the reaction, so when this is the case, we write that KE is a reactant. 


To find the value for enthalpy, we use known values to calculate 572 kJ, meaning the reaction is endothermic. We write KE as a reactant. (You can also find enthalpy relatively, which is useful when you don’t have the known values for your calculation).


3. The Law of Conservation of Mass states that in a closed system like a chemical reaction, matter (and thus mass) can neither be created nor destroyed. The Law of Conservation of Energy states that energy can never be created or destroyed. Thus, all reactants and products, including energy, must be balanced in a thermochemical equation.


4) We need to write a balanced equation for this reaction.


[tex]2H_2O = 2H_2+O_2[/tex]


Next, we go from grams to moles.

[tex]1 \ mol \ H_2O = 18.016 \ g \ H_2O[/tex]

[tex]38.0 \ g \ H_2O * \dfrac{1 \ mol \ H_2O}{18.016 \ g \ H_2O} = 2.11 \ mol \ H_2O[/tex].


We use the same process to determine there are [tex]1.98 \ mol \ H_2[/tex].


That means that for 2.11 moles of water, we get 1.98 moles of diatomic hydrogen. There are two moles of diatomic hydrogen per mole of diatomic oxygen here in the balanced equation, so we write 

[tex]1.98 \ mol \ H_2 * \dfrac{1 \ mol \ O_2}{2 \ mol H_2} = 0.99 \ mol \ O_2[/tex]

[tex]0.99 \ mol \ O_2 * \dfrac{32.00 \ g \ O_2}{mol \ O_2 } = 32.00 \ g \ O_2[/tex]


5) [tex]1 \ g \ H_2 = 2.016 \ g \ H_2[/tex]


[tex]12.0 \ g \ H_2 * \dfrac{1 \ mol \ H_2}{2.016 \ g } =5.95 \ mol \ H_2[/tex]


One mole of a gas at STP has a volume of 22.4 L.


5.95 mol * 22.4 L/mol = 133 L


6) [tex]1 \ g \ H_2 = 2.016 \ g \ H_2[/tex]

[tex]2 \ mol \ H_2 * \dfrac{2.016 \ g \ H_2}{1 \ mol \ H_2}=4 \ mol \ H_2[/tex]



7) [tex]1 \ mol \ H_2O = 18.016 \ g \ H_2O[/tex]


[tex]150.0 \ g \ H_2O * \dfrac{1 \ mol \ H_2O}{18.016 \ g \ H_2O} = 8.326 \ mol \ H_2O[/tex]


8) We first balance this to get [tex]2H_2O = 2H_2 + O_2[/tex]. There are two moles of water per mole of diatomic oxygen.


9) To produce 8.0 mol diatomic hydrogen, we use the balanced equation from above.


We have a one-to-one ratio of water to diatomic hydrogen, so we need 8.0 mol water.


10) Again, using our balanced equation, we first find the number of moles of water.


[tex]1 \ mol \ H_2O = 18.016 \ g \ H_2O[/tex]


[tex]50.0 \ g \ H_2O * \dfrac{1 \ mol \ H_2O}{18.016 \ g \ H_2O} = 2.78 \ mol \ H_2O[/tex]


We have that there are two moles of water for every one mole of diatomic oxygen, so we have 1.39 mol diatomic oxygen.


This is [tex]1.39 \ mol * \dfrac{32.00 \ g \ O_2}{1 \ mol \ O_2} = 44.5 \ g \ O_2[/tex]

what causes the salinity of ocean water to decrease

Answers

The melting of icebergs causes the salinity of ocean water to decrease.

Answer:

The salinity of the sea decreases due to an increase in fresh water in the ocean from the melting of the polar ice caps.

Explanation:

Ocean water can become saltier or fresher depending on environmental factors.

 Melted ice, fresh water, will decrease the salinity of the oceans. That is, the process of oceanic desalination or decrease in salinity, known as freshening, is generated by the discharge of fresh water from the ice of glaciers into the salty water of the seas that surround it.

For the chemical reaction H2 + CO2 → H2O + CO, the energy contained in the reactants is 394 kJ, and the energy contained in the products is 352 kJ, assuming 1 mol of each substance is present. Which of the following statements is true?

A. 42 kJ is released, and the reaction is exothermic.

B. 42 kJ is absorbed, and the reaction is exothermic. C. 42 kJ is absorbed, and the reaction is endothermic. D. 42 kJ is released, and the reaction is endothermic

Answers

C.
Because the amount of energy in the products is less than that of the reactants, the reaction is endothermic. Endothermic reactions use up, or absorb energy.

A globe is placed on your desk and you are asked to identify its physical properties. How would you describe the globe?

Answers

You could describe it's shape, color, varieties on sizes and shape of states, how it's rounded but with a top and bottom.

A globe is a spherical model that precisely represents the Earth's geography with a true-scale size and shape of continents and oceans, but it has limitations such as being less portable and not showing all sides simultaneously.

To describe the physical properties of a globe placed on a desk, one would note several characteristics. A globe is a spherical representation of the Earth, including details such as continents, countries, and geographical features like mountains and oceans. It is equipped with a geographic coordinate system and a scale which helps to maintain accurate distances and proportions between locations. Due to its shape, a globe provides a distortion-free representation of Earth's geography, preserving both the size and shape of landmasses and bodies of water. However, a globe has limitations as it is not as portable as flat maps, cannot be viewed entirely at once, and cannot be easily stored in compact spaces. Moreover, while globes provide a true-to-scale representation of the Earth, they cannot be easily enlarged to show detailed views of specific areas.

Josh was blowing bubbles through a straw into a glass of tap water. As Josh exhaled into the straw, he blew carbon dioxide gas into the water. The harder he blew, the more bubbles entered the water. The more bubbles, the ______________ the solution gas/water solution.. A) warmer B) more dilute C) less concentrated D) more concentrated

Answers

Hi!

Josh was blowing bubbles through a straw into a glass of tap water. As Josh exhaled into the straw, he blew carbon dioxide gas into the water. The harder he blew, the more bubbles entered the water. The more bubbles, the more concentrated the solution gas/water 

A solution is a mixture of a solute (A substance that is dissolved and is in the least amount, in this case, the CO₂) and a solvent (The substance that is dissolving the solute, in this case, the water). When blowing bubbles into the water, Josh is adding more CO₂ (Solute) to the mixture, making the concentration of the gas in the water to rise up, as the amount of solute will be higher.

Have a nice day!

A series circuit contains two devices, one with a resistance of 10 ohms and one with a resistance of 4 ohms. If the generator supplies a voltage of 42 V, what is the magnitude of the current? P

Answers

The net effective resistance of 10-ohms and 4-ohms 
in series is 14 ohms.

The current in the series loop is  I = E/R = 42V/14-ohms = 3 amperes.




Answer : The magnitude of the current is, 3 ampere

Solution :

In a series circuit, the total resistance will be,

[tex]R=R_1+R_2[/tex]

[tex]R=10\Omega +4\Omega =14\Omega[/tex]

Using coulomb's law,

[tex]V=I\times R\\\\I=\frac{V}{R}[/tex]

where,

V = voltage = 42 V

I = electric current

R = resistance = 14 ohms

Now put all the given values in the above formula, we get

[tex]I=\frac{42V}{14\Omega}=3ampere[/tex]

Therefore, the magnitude of the current is, 3 ampere

How does the energy from the sun help the tree in the process of photosynthesis?

A.chlorophyll in the leaves capture the suns energy and uses it to make food from carbon dioxide from the atmosphere and water through the roots

B.the tree captures the energy from the sun, making its leaves and bark too hot for predators to eat

C.the tree absorbs most of the suns heat so that the animals may survive in an atmosphere where the temperature is much less

D.the tree does not rely on the suns energy in any way

Answers

The energy from the sun helps the tree in the process of photosynthesis?

The answer is A.chlorophyll in the leaves capture the suns energy and uses it to make food from carbon dioxide from the atmosphere and water through the roots

Where does subduction happen?

Answers

subduction happens at a convergent boundary usually In the ocean. the denser plate will be subducted


The melting and boiling points of a substance are independent of
A.
rate of heat change.
B.
mass.
C.
volume.
D.
all of these
please just give the laginitmit awser dont go all into deatail and or explain it

Answers

Answer is D.


Have a nice day.

Answer:

D.

all of these

What do I need to convert mass of product to ma's of a reactant

Answers

Given A+ 3B C+4D
For instant u have rhe mole of one of the compond of the given equation...
Use the mole ratio of the balance equation and then convert to mass

Mole =mass ÷Mr

For instant mole ration of the productd to the reactant A is 4:1.....
If u have mole of D u can find that of A and so on...

To convert mass of a product to mass of a reactant, determine the molar mass of both substances, convert the product's mass to moles, apply the mole ratio, and convert the reactant's moles back to mass.

To convert the mass of a product to the mass of a reactant in a chemical reaction, you need to follow several steps:

First, determine the molar mass of the product.

Use this molar mass to convert the product's mass to moles.

Next, apply the mole ratio from the balanced chemical equation to find out the number of moles of the reactant.

Finally, use the molar mass of the reactant to convert these moles back to mass.

This process involves a sequence of conversions from mass to moles, mole ratio application, and finally, from moles back to mass.

The Doppler effect changes the

A) Frequency due to motion

B) Speed of sound due to motion

C) Speed of light due to motion

D) Radar waves in a police car

Answers

A) Frequency due to motion

As you are moving toward the object that is making the sound the frequency is higher.  When you begin to move away the frequency lowers.
The best answer that I would would be B

give an example that shows that gravity affects objects through gases liquids and solids


Help please before 10 it's urgent for my daughter

Answers

Answer:

Certainly! Here's an example that demonstrates how gravity affects objects through gases, liquids, and solids:

Explanation:

Consider a balloon filled with helium gas. When the balloon is released, it rises upwards due to the force of gravity acting on it. Gravity pulls the balloon downwards, but the buoyant force exerted by the surrounding air (a gas) is greater than the weight of the balloon, causing it to float or rise in the air.

Now, imagine a similar scenario but with a beach ball floating in water (a liquid). When the beach ball is placed in water, it experiences the force of gravity pulling it downwards. However, the buoyant force exerted by the water is greater than the weight of the beach ball, causing it to float or rise to the surface of the water.

Lastly, let's consider a solid object like a book placed on a table. The force of gravity pulls the book downwards, creating a normal force between the book and the table. This normal force counteracts the force of gravity, preventing the book from falling through the table and keeping it in place.

In all these examples, gravity acts on the objects, whether they are in the form of gases, liquids, or solids. The specific interactions between gravity and the objects depend on the density, buoyancy, and other physical properties of the substances involved.

Final answer:

Gravity's effects can be seen when a helium balloon (gas) rises in the air, an apple (solid) falls and sinks in water (liquid), and a book (solid) is held stationary on a table due to the force of gravity counteracted by the table's support.

Explanation:

Gravity affects all objects regardless of whether they're in gas, liquid, or solid states. An example that illustrates gravity's influence through gases, liquids, and solids could involve observing a helium balloon in the air (gas), an apple falling into water (liquid), and a book resting on a table (solid).

In the case of the helium balloon, gravity is acting upon the balloon, but it is also acting upon the surrounding air. Because helium is less dense than air, the balloon rises, yet gravity still holds it within Earth's atmosphere.When an apple falls from a tree and lands in water, gravity causes the apple to fall, and it continues to pull on the apple even when it hits the water's surface, causing it to sink until the buoyant force of the water balances the weight of the apple.A book on a table is subject to gravity, which pulls it downward. The table provides a normal force that counteracts gravity, preventing the book from falling.

It is safe to thaw frozen foods at room temperature true or false

Answers

True.

I do this all the time.

If you thaw foods hotter/warmer than room temperature, it will spoil.
If you thaw it colder than room temperature it's not going to thaw at all, lol.

It's the same thing if you are thawing a frozen food in water. You need to use room temperature water or else it will either spoil, or not thaw at all. (If you thaw in water, make sure you don't leave it in too long or else it will spoil)

Remember to put foods into a refrigerator after you thaw it. This will prevent it from going bad/spoiling. Also, you can NEVER refreeze something that was thawed (Ice-cream, meat, frozen fruit, etc.)

P.S: Can you please mark me brainliest? I am only 2/5 in ranking up and your cooperation would help me a lot.

what is the approximate ratio of neutrons to protons in a nucleus of radon -222

Answers

More protons in the nucleus need more neutrons to bind the nucleus together. The graph below is a plot of the number of neutrons versus the number of protons in various stable isotopes. The stable nuclei are in the pink band known as the belt of stability. They have a neutron/proton ratio between 1:1 and 1.5.

The ratio of neutrons to protons in Radon-222 has been found to be 1.58.

The radon has been the radioactive element.  The atomic number of the element has been 222. The element has been consisted of 86 protons.

The number of neutrons and protons has been the mass of the nucleus and has been consisted of the atomic mass of the element. In an isotope, the element has 222 as the atomic number.

Since. Atomic number = Neutrons + Protons

222 = Neutrons + 86

Neutrons = 136

The ratio of neutrons to protons can be given as:

[tex]\rm \dfrac{Neutrons}{Protons}[/tex] = [tex]\rm \dfrac{136}{86}[/tex]

[tex]\rm \dfrac{Neutrons}{Protons}[/tex] = 1.58

The ratio of neutrons to protons in Radon-222 has been found to be 1.58.

For more information about neutrons and protons, refer to the link:

https://brainly.com/question/15916785

Which bear describes a chain reaction associated with nuclear reaction

Answers

If your choices are the following: A.Neutrons released during a fusion reaction cause other nuclei to fuse.
B. Neutrons released during a fission reaction cause other nuclei to split.
C. Helium nuclei released during a fission reaction cause other nuclei to split.
D. Helium nuclei released during a fusion reaction cause other nuclei to fuse.

Then the answer is B. In fission, the nuclei is splitted and releases neutrons causing another chemical to form.

how many moles of hcl are produced from a reaction with 6.2 moles of h2 given the following equation

Answers

It would be 12.4 moles of HCL because you multiply 6.2 by how many moles of HCL in te equation then divide it by how many moles of h2 in the equation so you multiple 6.2 by 2 moles because there’s two moles of HCL which gives you 12.4 then you divide it by one because in the equation there is only 1 mole of H2

what is one result of meiosis?

Answers

Daughter cells?
It might be called haploid daughter cells too.
haploid daughter cells

Hope I helped!

Let me know if you need anything else!

~ Zoe

Choose all that apply.

Gas pressure within a fixed container will increase when ____

A) gas is cooled

B) gas is heated

C) gas volume changes

D) mass of gas is increased

Answers

B) Gas is heated, And D) Mass of gas increased.

Gas pressure within a fixed container will increase when gas is heated and also when mass of gas is increased.

Answer: Options B and D

Explanation:

In a closed container, the temperature is proportional to pressure according to the pressure law. When the gas presents in a container, it means that the size of the container remains constant unless/until it is changed by increasing its size or decreasing it.

When the container gets heated, gas particles gains more kinetic energy, moves faster and hits the inner walls of the container. The amount of gas particles also seems to be more.

And so, it hits the container's wall more frequently and with more speed and force. Hence, these make the gas pressure in the container to increase. According to the Boyle’s law,

                                        [tex]p V=n R T[/tex]

Where, p – pressure, V – volume, n – no. of moles, R – gas constant, T – temperature.

This also tells the reason how the gas pressure increases when the amount of gas and temperature get increased.

Balance this compound

Answers

This should be what you need to have it balanced

Answer: The balanced chemical equation is given by,

[tex]2C_2H_6+7O_2\rightarrow 4CO_2+6H_2O[/tex]

Explanation:

[tex]C_2H_6+O_2\rightarrow CO_2+H_2O[/tex]

Law of conservation of mass states that mass can neither be created nor be destroyed but it can only be transformed from one form to another form.  

This also means that total mass on the reactant side must be equal to the total mass on the product side.

So, the balanced chemical equation is given by, will writing stoichiometric coefficient 2 in front of ethane , 7 in front of oxygen , 4 in front of carbon dioxide gas and 6 in front of water.

[tex]2C_2H_6+7O_2\rightarrow 4CO_2+6H_2O[/tex]

According to reaction, 2 moles of ethane reacts with 7 moles of oxygen to give 4 moles f carbon dioxide gas and 6 moles of water.

There are islands in the ocean that are growing larger. The Hawaiian Islands are good examples of this. The reason that the islands were formed and are still growing is A) they were produced by drought. B) they were produced by volcanoes. C) they were produced by hurricanes. D) they were produced by earthquakes.

Answers

My guess would be "B) they were produced by volcanoes" because hawaii has a bunch of volcanoes and volcanoes can produce extra land. While the other answers wouldn't make sense. Definitely B.

what is the mass of 5.0 cm^3 piece of copper having a density of 8.96 g/cm^3

Answers

To solve this problem, multiply 250 g by the latter.  It's the same as dividing the mass by the density, but that's really not important here.  As long as the units cancel out to a volume unit, everything's fine.   250 g x (1 cm3 / 8.9 g) = 28 cm3

Answer:

The mass of copper piece is 44.8 grams

Explanation:

Density is defined as amount of mass present in the unit volume of the substance.

Mathematically written as:

[tex]\text{Density of substance}=\frac{\text{Mass of substance}}{\text{Volume of substance}}[/tex]

We are given:

Density of copper, d =[tex]8.96 g/cm^3[/tex]

Mass of copper piece = M

Volume of the copper piece = V = [tex] 5.0 cm^3[/tex]

Putting values in above equation, we get:

[tex]8.96 g/cm^3=\frac{M}{ 5.0 cm^3}[/tex]

[tex]M=8.96 g/cm^3\times 5.0cm^3=44.8 g[/tex]

Hence, the mass of copper piece is 44.8 grams

how do you tell by the formula that an element on the periodic table is a metal

Answers

The metalloids are on the right side of the periodic table B, Si, Ge, As, Sb, Te, and At. The nonmetals are also on the right side next to the metalloids, there should be a He at the top right of the periodic table and there should be one more nonmetal at the top left of the periodic table that is H. And from the metals they are all on the middle next to the metalloids, starting from Li, Be, Na, and Mg as so on all of those are metals.

A 100 meter dash was held with 20 contestants. The best time was 10.7 seconds, and the worst time was 15.3 seconds. Only the fastest 10 contestants advance to the final race. Which measure of central tendency should be used to calculate the cutoff time for the final race? A. median B. mode C. mean D. range

Answers

Answer:

median

Explanation:

study island i got it right

Answer:

median

Explanation:

table salt and water are examples of

Answers

They are an example of mixtures

Table salt (sodium chloride) and water are two fundamental examples of chemical compounds with distinct properties and essential roles in our daily lives. While table salt is ionic and dissolves easily in water, water itself is a covalent compound with unique properties that are vital for sustaining life and various industrial applications.

Table salt (sodium chloride, NaCl) and water (H2O) are examples of chemical compounds, which are formed when two or more elements combine in fixed proportions through chemical bonding. Here's an explanation of each:

Table Salt (Sodium Chloride, NaCl):

Table salt is a common chemical compound that consists of two elements, sodium (Na) and chlorine (Cl). Sodium is a highly reactive metal, and chlorine is a toxic, greenish-yellow gas. However, when these elements chemically react, they combine to form the stable compound sodium chloride (NaCl). Sodium donates one electron to chlorine, forming a positively charged sodium ion (Na+) and a negatively charged chloride ion (Cl-).

These oppositely charged ions are held together by ionic bonds due to electrostatic attraction. Table salt is a crystalline solid with a distinct salty taste and is commonly used to season food and preserve it. It is highly soluble in water, and when dissolved, it dissociates into its constituent ions, making it an electrolyte that conducts electricity in solution.

Water (H2O):

Water is a vital chemical compound consisting of two hydrogen (H) atoms covalently bonded to one oxygen (O) atom. Covalent bonds involve the sharing of electrons, resulting in a molecule with a bent, V-shaped geometry. Water is unique due to its high polarity, meaning it has a partial positive charge near the hydrogen atoms and a partial negative charge near the oxygen atom.

This polarity results in several of water's essential properties, such as its ability to form hydrogen bonds, which give water a high heat capacity, surface tension, and excellent solvent properties. Water is essential for life, serving as the universal solvent in which many biochemical reactions occur. It's also crucial for regulating temperature and maintaining life processes in living organisms.

For more such information on: table salt

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In two or more complete sentences, describe two differences between electromagnetic waves and mechanical waves.

Answers

Electromagnetic waves can travel through space or a medium while mechanical waves need matter to transfer energy.
Other Questions
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