Why is water sometimes called the universal solvent?
A.
because only salts can dissolve in water
B.
because water is not good at cleaning things
C.
because many substances dissolve in water
D.
because water is a clear liquid

Answers

Answer 1
Water is capable of dissolving a variety of different substances, which is why it is such a good solvent. And, water is called the "universal solvent" because it dissolves more substances than any other liquid. This is important to every living thing on earth. It means that wherever water goes, either through the ground or through our bodies, it takes along valuable chemicals, minerals, and nutrients.

It is water's chemical composition and physical attributes that make it such an excellent solvent. Water molecules have a polar arrangement of the oxygen and hydrogen atoms—one side (hydrogen) has a positive electrical charge and the other side (oxygen) had a negative charge. This allows the water molecule to become attracted to many other different types of molecules. Water can become so heavily attracted to a different molecule, like salt (NaCl), that it can disrupt the attractive forces that hold the sodium and chloride in the salt molecule together and, thus, dissolve it, so c!!

Related Questions

What side is the products

Answers

The right side is the product CO2 + H20

13. Examine the following table, each letter represents a piece of missing information. Below
you will be asked to identify the information to complete certain boxes Copy the letter as
showed under the table with its correct answer. (8 pts)
Name
Symbol
Protons
Neutrons
Electrons
Mass
Oxygen-16
A
18
18
8
E
Chlorine-35
B
18
17
F
35, C
To go
E
F
G
H
Oxygen-18
18
8
Chlorine-37
32, CI
17
20
D
H

Answers

Answer: i can understand it sorry

Explanation:

Balance the foll. equations

Answers

Answer:

naf+so2+nho3

Explanation:

beacause sodium is main solution in this equation

Answer:

e) P + O2 → P2O5

balanced equation

4P + 5O2 → 2P2O5

f) NaCl + F2 → NaF + Cl2

balanced equation

2NaCl + F2 → 2NaF + Cl2

g) K + MgBr2 → KBr + Mg

balanced equation

2K +MgBr2 → 2KBr +Mg

h) Mg + O2 → MgO

balanced equation

2Mg + O2 → 2MgO

i) Al + O2 → Al2O3

balanced equation

4Al + 3O2 → 2Al2O3

hope this helps you!

Which of these structures is least in danger of chemical weathering?

a bridge made of iron rods

a pile of tiles made of feldspar

a bench made of composite plastic

a statue made of marble

Answers

Answer: a bench made of composite plastic

Explanation:

The chemical weathering can be defined as the process in which a chemical causes the degradation and decomposition of the rocks into small particles. The iron rods, feldspar, and marble will weather considerably with a greater danger as the have a strong solid body. But plastic when exposed to a chemical agent usually melts and thus there is least or no danger of chemical weathering of plastic.

which is the correct answer??

Answers

Answer:

1

Explanation:

Which of the following characterizes the nucleus of every atom?

1. It has a positive charge

2. It is very dense

3. It is composed of protons, neutrons and electrons

a
I and II only
b
I, II and III
c
I and III only
d
II and III only

Answers

A) 1 & 2

It’s is not 3 because the electrons are found outside of the nucleus; therefore, it only consists of protons and neutrons, and it does has a very dense region.
The answer is A) 1/2

Please help me with this thank you !!

Answers

The answer is I think is c

can someone help me please?
Why can’t you see individual atoms without special tools?

Answers

Answer:

Even the most powerful light-focusing microscopes can't visualise single atoms. What makes an object visible is the way it deflects visible light waves. Atoms are so much smaller than the wavelength of visible light that the two don't really interact. To put it another way, atoms are invisible to light itself.

Explanation:

Can you give me Brainliest pls

And Your welcome :)

Answer:

The atoms are too small to see.

Explanation:

Hope my answer helped you!!

the law of conservation in mass

Answers

The Law of Conservation of Mass dates from Antoine Lavoisier's 1789 discovery that mass is neither created nor destroyed in chemical reactions. ... If we account for all reactants and products in a chemical reaction, the total mass will be the same at any point in time in any closed system.

Which scientific phenomena strengthen wegener's theory?

Answers

Here is your answer, I got it from Socratic, it’s a pretty cool app :)

What is the ground-state electron configuration of O2-? A (σ2s)2(σ2s*)2(σ2p)2(π2p)4(π2p*)1(π2p*)1 B (σ2s)2(σ2s*)2(π2p)4(π2p*)1 C (σ2s)2(σ2s*)2(σ2p)2(π2p)3(π2p*)2(π2p*)2 D (σ2s)2(σ2s*)2(σ2p)2(π2p)4(π2p*)2(π2p*)1

Answers

Answer:

(σ2s)2(σ2s*)2(σ2p)2(π2p)4(π2p*)2(π2p*)1

Explanation:

In writing molecular orbital configuration, the number of valence electrons involved in the molecule are all written into  various molecular orbitals in accordance with the Aufbau principle.

O2^- contains 17 electrons. Its molecular orbital configuration is KK(σ2s)2(σ2s*)2(σ2p)2(π2p)4(π2p*)2(π2p*)1. Recall that the inner (σ1s)2 and (σ1s*)2 is designated as KK. This inner shell does not take part in bonding. The bond order in O2^-  is 1.5.

The ground state electron configuration of O2- is Choice C: (σ2s)2(σ2s*)2(σ2p)2(π2p)3(π2p*)2(π2p*)2

Discussion:

The molecular orbital configuration is dependent on the number of electrons involved in the molecule.

These are all written into various molecular orbitals as described in the Aufbau principle of electron configuration.

Since O2 contains 16 electrons, when it gains an electron to become O2-;

O2^- contains 17 electrons.

Its molecular orbital configuration is;

KK(σ2s)2(σ2s*)2(σ2p)2(π2p)3(π2p*)2(π2p*)2.

It is noteworthy to remember that the inner (σ1s)2 and (σ1s*)2 are represented as KK. This inner shell does not take part in bonding.

Read more:

https://brainly.com/question/15568826

An atom of which element has the strongest attraction for electrons in a chemical bond?
A) chlorine
B) nitrogen
C) oxygen
D) selenium

Answers

Answer:

Fluorine. This element has the greatest electronegativity value, so has the greatest attraction to electrons in a bond.

Explanation:

The atom of element with the strongest attraction for electrons in a chemical

bond from the options is Chlorine.

The element with the strongest attraction for electrons in a chemical bond is

the most electronegative element.

The electronegativity of an atom is the tendency of an atom to attract

bonding pairs of electrons.

Generally, electronegativity of an element increases across the period. The

electronegativity of an element also decreases down the group. The most

electronegative element is fluorine.

Halogen group are naturally electronegative.

Therefore, the most electronegative element in the option is chlorine and its

the element that has the strongest attraction for electrons in a chemical

bond.

learn more: https://brainly.com/question/318199?referrer=searchResults

Look up and compare the ionic radii of In3+, Mn3+, and Y3+ for a specific coordination number. Why do you think Mn3+ forms a solid substitution on the In3+ rather than the Y3+ site?

Answers

Answer:

See explanation

Explanation:

Substitution implies that one thing is repalced by the other.

Substitution of one ion by another largely depends on the sizes of the ions in question.

The ionic radius of Mn3+ is about 0.65 Angstroms while that of In3+ is about 0.94 Angstroms. On the other hand, the ionic radius of Y3+ is about 1.032 Angstroms.

It is clear that the sizes of Mn3+ and In3+ are closer to each other hence Mn3+ can substitute for In3+ easily than Y3+ in a lattice site.

The larger size of Y3+ explains why it is not easily replaced by Mn3+.

9th grade...Chemistry help needed​

Answers

Answer:

1). Scientific

2). Plating the diluted bacteria on media that supports the growth of only living micro organisms. Statistically accurate.

A scientist was studying layers of earth in the side of a mountain. In the lower layers, she found fossils of reindeer and polar bears. In the upper layers, she found fossils of coyotes and squirrels. Which conclusion most likely explains the different fossils?
Group of answer choices

The climate was very cold in earlier time periods and became warmer in later time periods

The climate was very hot in earlier time periods and became colder in later time periods.

The climate was wet in earlier time periods and became drier in later time periods.

The climate was dry in earlier time periods and became wetter in later time periods.

Answers

Answer:

The climate was very hot in earlier time periods and became colder in later time periods.

Explanation:

I believe it is B.

The earlier days in the earth was of very cold and it is believed to be an ice planet where animals adapted to cold climate was more. Hence, option 1 is correct.

What is climate?

The long time pattern of weather in an area is called climate. Climate changes with time and region to region. The different climates in earth is influenced by sun.

Different regions on earth experience different climate due to the varying distance from sun, and other factors such as air quality, presence of mountains, sea, etc.

Earlier days of earth was very much cold and it was known as ice age. This climate was because of the reduced temperature . Thus animals adapted to cold climate was there. Later earth changed to greenhouse period where the heat gradually increased and set into current state.

The fossils of earlier animals was deposited in the lower layer and that of continued age is upper layer. Hence, option 1 is correct. Where the earlier life was of cold climate.

To find more on fossils, refer here:

https://brainly.com/question/6867325

#SPJ2

why light sometimes changed a material and sometimes doesn’t?

Answers

Answer:

When light falls on a material, the energy in its photons can affect the atoms in the material. In some materials, such as metal, the atoms absorb some of the photons so light does not pass through them. In other materials, such as glass, the atoms cannot absorb the photons and light passes through them.

Explanation:

Hope this is good

When light falls on a material, the energy in its photons can affect the atoms in the material. In some materials, such as metal, the atoms absorb some of the photons so light does not pass through them. In other materials, such as glass, the atoms cannot absorb the photons and light passes through them.

In an ionic bond

A. Two metals can bond together to form a compound

B. Two anions can bond together to form a compound

C. A cation and an anion can bond together to form a compound

Answers

C. A cation and an anion can bond together to form a compound

what is the number of atoms in 1 mole of carbondioxide??

Answers

Answer:

6.02×10 to be tge power 23

A genetic mutation is always observable in an organism physical appearance True or false

Answers

Answer:

false

Explanation:

false, only a small percentage of mutations cause genetic disorders—most have no impact on health or development. For example, some mutations alter a gene's DNA sequence but do not change the function of the protein made by the gene.

In a science experiment 50 grams of salt are placed in a metal pan and are dissolved in 100 mL of water. The water is heated for 3 minutes. What is most likely happening in the pan when the water reaches 100°C?

A. The water will have all evaporated.
B. The water will no longer contain salt.
C. The water will be boiling.
D. The water will be cool enough to pour into a beaker.

Answers

Answer:

The water will be boiling

Explanation:

When water reaches 100⁰C the water will be boiling.

can anyone do this. i dont get it​

Answers

13. Nt
14. St
15. St
16. At
17. Nt

Which of the following is a chemical change?
melting of ice
burning of wood
breaking of glass
Evaporation of water

Answers

The answer is burning of wood.

Answer:

The answer is burning of wood

Explanation:

just took the quiz

If the mass of the Crown is 505431 mg, and volume is 44 mL, what is the density of the Crown? Was the Crown solid gold? (the density of gold is 19.3 g per cubic centimetre.)​

Answers

Answer:

11.49g/cm³

The crown is not gold

Explanation:

Given parameters:

Mass of crown = 505431mg  = 505.431g

Volume of crown  = 44mL  = 44cm³

Unknown:

density of the crown = ?

Solution:

Density is the mass per unit volume of a substance.

  Density  = [tex]\frac{mass}{volume}[/tex]

insert the parameters and solve;

  Density  = [tex]\frac{505.431g}{44 }[/tex]  = 11.49g/cm³

The density of gold is 19.3g/cm³.

The crown is not gold

The pH scale expresses the
concentration of hydroxide
concentration of hydrogen ion
concentration of electrons​

Answers

Answer:

Hydrogen ions

Explanation:

Answer:

concentration of hydrogen ion

Explanation:

what would decreased the resistance of wires an electric current

Answers

Answer:Thicker wires have a larger cross-section that increases the surface area with which electrons can flow unimpeded.

Explanation:I really do not know

Sorry it’s for science

Answers

Answer:

A

Explanation:

Density/Formula

\rho ={\frac {m}{V}}

\rho = density

m = mass

V = volume

does anyone else simp for mhanifa?

Answers

Answer:

i dont XD

Explanation:

Answer:

no

Explanation:

!!please help asap ty only if you can ty!!!
2. How many atoms of zinc are present in 0.48 mol of zinc?
(show solution)​

Answers

Answer:

2.89× 10²³ atom   of Zn

Explanation:

Given data:

Number of moles of Zn = 0.48 mol

Number of atoms of Zn = ?

Solution:

Avogadro number.

It is the number of atoms , ions and molecules in one gram atom of element, one gram molecules of compound and one gram ions of a substance.  The number 6.022 × 10²³ is called Avogadro number.

1 mole = 6.022 × 10²³ atom

0.48 mol ×  6.022 × 10²³ atom / 1mol

2.89× 10²³ atom

How many molecules do you have in 64 g of CO2?

Answers

Answer:

8.757 x 10^23 molecules

Explanation:

Use Avogadro's number of  6.022 × 10 ^23  molecules per mole.

64g CO2/44.01 g/mol = 1.454 moles of CO2

1.454 x  6.022 × 10 ^23 =

8.757 x 10^23 molecules

Explain what happened to the valence electrons in each atom.​

Answers

Answer:

the happen is a fraction of valence is a compalation of the electrons

Explanation:

yan yung answer ko sana makatulong

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