Which notations represent atoms that have the same number of protons but a different number of neutrons?

Answers

Answer 1
Atoms of the same element, containing the same number of protons, but different numbers of neutrons, are known as isotopes. Isotopes of any given element all contain the same number of protons, so they have the same atomic number (for example, the atomic number of helium is always 2).
Answer 2

The atoms having the same number of protons but a different number of neutrons have been termed isotopes.

The neutrons and protons are the constituents of the nucleus. The number of protons and electrons is equal in the atom. When two different atoms have the same number of protons the species have been termed isotopes. The atomic number of the species differ that resulting in the different positions in the periodic table.

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Related Questions

List four observations that suggest chemical change is occurring

Answers

Answer:

Examples of Chemical Changes

Burning wood.

Souring milk.

Mixing acid and base.

Digesting food.

Cooking an egg.

Heating sugar to form caramel.

Baking a cake.

Rusting of iron.

How many electrons (total number) are in the ion, CO3(2-) ?
Select one:

a.30
b. 24
c. 32
d. 16

Answers

B because there are 12 electron pairs in C03(-2) and 12 pairs=24

How is emission spectra produced?

Answers

Answer:

emission spectra are produced by thin gases in which the atoms do not experience many collisions (because of the low density). The emission lines correspond to photons of discrete energies that are emitted when excited atomic states in the gas make transitions back to lower-lying levels.

Explanation:

A dark-line, or emission spectrum, will be formed when light passes through a cloud or gas at a temperature lower than the temperature of the light source.

What is emission spectra ?

An atom's electrons usually are arranged in a way that keeps the atom's energy as low as possible. The atom's lowest energy state is the atom's ground state. The electrons in those atoms take up the energy and move to a higher energy level when it is given to them. Atomic electrons must move from one energy level to another in discrete steps rather than continuously because these energy levels are quantized. An atom is in an excited state when its potential energy is greater than that of the ground state. In the excited state, an atom is unstable. The energy it gained previously is released as electromagnetic radiation when it returns to the ground state.Atoms initially acquire energy. One way is to pass an electric flow through an encased example of a gas at low strain. Every gas discharge tube will glow in a unique color depending on the gas's identity because the electron energy levels are unique to each element.Atomic emission spectra, also known as line-emission spectra, could not be explained by classical theory. A ground state atom would be capable of absorbing any amount of energy rather than just discrete amounts, as predicted by classical physics. Similarly, any amount of energy could be released when the atoms relaxed back into a lower energy state. A continuous spectrum, in which all wavelengths and frequencies are represented, would emerge as a result of this.

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Which particles are equal in number for an atom with a neutral charge? ​

Answers

electrons and protons

What is the pH after two solutions are mixed: 1. A 0.155 M H2SO4 solution with a volume of 35.0 mL and 2. A 0.225 M solution of KOH with a volume of 35.0 mL. The volumes are additive.

Answers

Answer:

[tex]pH=1.67[/tex]

Explanation:

Hello.

In this case, since the reaction between the sulfuric acid and the potassium hydroxide is:

[tex]2KOH+H_2SO_4\rightarrow K_2SO_4+2H_2O[/tex]

We can see a 2:1 mole ratio between them, thus, we compute the moles of acid and base that are present in the solution by using the employed volume and its concentration:

[tex]n_{H_2SO_4}=0.155mol/L*0.0350L=0.005425molH_2SO_4\\\\n_{KOH}=0.225mol/L*0.0350L=0.007875molKOH\\[/tex]

Next, we use the 2:1 mole ratio to compute the consumed moles of acid:

[tex]n_{H_2SO_4}^{consumed}=0.007875molKOH*\frac{1molH_2SO_4}{2molKOH}=0.0039375molH_2SO_4[/tex]

It means that the leftover of sulfuric acid is:

[tex]n_{H_2SO_4}^{leftover}=0.005425-0.0039375=0.001488molH_2SO_4[/tex]

Therefore, since sulfuric acid is a strong acid, the pH is defined in terms of its concentration which is actually equal to the concentration of hydrogen ions in solution, which is computed considering the total additive volume:

[tex][H^+]=[H_2SO_4]=\frac{0.001488mol}{0.070L}=0.02125M[/tex]

So the pH turns out:

[tex]pH=-log(0.02125)\\\\pH=1.67[/tex]

Best regards.

According to the nissani what can be some possible ways to save the forest of third world countries​

Answers

Answer:

This question is incomplete

Explanation:

This question is incomplete. However, there are ways to save the forest of third world countries - this includes

1) Creating of forest reserves: Wide areas of land that are still forested can still be preserved and converted to forest reserves which can prevent these areas from being deforested as a result of human activities or industrialization.

2) Government policies: Government can put policies in place to prevent people from embarking on deforestation of certain lands. This is because some parts of the third world countries still rely on wood for cooking and other sources of daily activities.

3) Replanting of deforested areas: Replanting of trees can also help third world countries in saving the forest.

((50 BRAINLY POINTS))
Guys I really need your help on this! It's timed!

Answers

Answer:

its only 25

Explanation:

Complete the sentence by using "Direct", "Inverse", or equal. The pressure and volume of a gas change in opposite directions. This can be described as an " upside-down" relationship. We can also say that the relationship between the pressure and volume of a gas is a __________________ relationship

Answers

answer:  

i believe the answer is inverse.

if i'm wrong sorry :(

if i'm right your welcome :)

BASED ON THE INFORMATION BELOW. CALCULATE THE MASS FOR ONE OF THESE ATOMS:
MASS OF A SINGLE CARBON ATOM:
MASS OF A SINGLE OXYGEN ATOM:
MASS OF A SINGLE HYDROGEN ATOM:

Answers

C = 12 g

O = 16 g

H = 1 g

Further explanation

Conservation of mass stated that  

In a closed system, the masses before and after the reaction are the same

we can calculate the mass of each atom in the compound :

O in O₂ :

mass O₂ = 32

mass O = 32 : 2 = 16 g

H in H₂O

mass H₂O = 18

mass 2.H + mass O = 18

mass 2.H + 16 = 18

mass 2.H=2

mass H = 1 g

C in CH₄

mass CH₄ = 16

mass C + mass 4.H = 16

mass C + 4.1=16

mass C = 12 g

or we can use formula :

Mass of a single C :

[tex]\tt =\dfrac{Ar~C}{MW~CO_2}\times mass~CO_2\\\\=\dfrac{12}{44}\times 44=12[/tex]

Would you expect Nio to dissolve in an aqueous solution of NaNO3?

Answers

Answer:

NiO Does Not Dissolve In An Aqueous Solution Of NaNO3.

Explanation:

Based on the synthesis reaction, what would the product of the reaction be? NaPO3 + CuO → ? NaO + CuPO3 Na + P + Cu + O4 NaCuPO4 NaCu + PO4

Answers

Answer:

C

Explanation:

Based on the synthesis reaction,the product of the given chemical equation is NaCuPO4 .

What is chemical equation?

Chemical equation is a symbolic representation of a chemical reaction which is written in the form of symbols and chemical formulas.The reactants are present on the left hand side while the products are present on the right hand side.

A plus sign is present between reactants and products if they are more than one in any case and an arrow is present pointing towards the product side which indicates the direction of the reaction .There are coefficients present next to the chemical symbols and formulas .

The first chemical equation was put forth by Jean Beguin in 1615.By making use of chemical equations the direction of reaction ,state of reactants and products can be stated. In the chemical equations even the temperature to be maintained and catalyst can be mentioned.

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What does "Telescopically" mean?

A- to communicate via phone
B- To use a telescope
C- to viee close distances
D- To see without a device

Answers

Answer:

It is b to use a telescope

Answer:

B

Explanation:

Which of the following are membranous sacs abundant in kidney and liver cells?
a. golgi bodies
b. mitochondria
c. lysosomes
d. peroxisomes

Answers

Answer: it’s B!! :)

yeha so i went to ther e htctct

Answers

Answer:

hi

Explanation:

hi

hi

hi

hi

hi

hi

hi

hi

hi

hi

you cool

and what is this about?

Why do we need to identify matter?

Answers

Answer:

It's important for scientists to know the properties of matter because all things are made up of matter. Each type of matter has different physical characteristics and scientists need to know and understand these characteristics to make calculations. ... The main phases of matter are solid, liquid, and gas

Explanation:

^^

What is the coefficient of oxygen (O_2) in the balanced equation for the reaction written below?

Answers

Answer:

1 is your coefficient of oxygen

Explanation:

hope it helps

what is the form of light​

Answers

Answer:

most likely Energy that's what I'm thinking


- What part of the ocean absorbs a large amount of solar energy?

Answers

Answer:

artic ocean

Explanation:

The artic because of its cold

At his favorite restaurant, Dylan orders a soda with his dinner. The ice in his drink has a mass of 6 g and a volume of 20 cm3. What is the density of the ice? Explain the steps you took to solve this problem, showing your work.

Answers

Answer: d =  0.3 g/cm³ Explanation: Density: Density is equal to the mass of substance divided by its volume. Units: SI unit of density is Kg/m3. Other units are given below, g/cm3, g/mL , kg/L Formula: D=m/v D= density m=mass V=volume Symbol: The symbol used for density is called rho. It is represented by ρ. However letter D can also be used to represent the density. Given data: Mass = 6 g Volume = 20 cm³ Density = ? Solution: d = m/v d = 6g/20 cm³ d =  0.3 g/cm³

If 342.2 grams of C12H22O11 (sucrose) is dissolved in 1.0 L of solution. What is the molar concentration of the solution? Report your answer with the correct number of significant figures.

Answers

Answer:

M = 1 M

Explanation:

Given data:

Mass in gram = 342.2 g

Volume of solution = 1.0 L

Molar concentration = ?

Solution:

Molarity is used to describe the concentration of solution. It tells how many moles are dissolve in per litter of solution.

Formula:

Molarity = number of moles of solute / L of solution

Number of moles of sucrose:

Number of moles = mass/molar mass

Number of moles = 342.2 g/ 342.2 g/mol

Number of moles = 1 mol

Molarity:

M = 1 mol / 1.0 L

M = 1 mol/L

M = 1 M

The molar concentration of the solution is :

- M = 1 M

Check below to see the full solution.

Molar Concentration

Molarity is used to describe the concentration of solution. It tells how many moles are dissolve in per litter of solution.

What information do we have?

Mass in gram = 342.2 g

Volume of solution = 1.0 L

Molar concentration = ?

Number of moles of sucrose:

Number of moles = mass/molar mass

Number of moles = 342.2 g/ 342.2 g/mol

Number of moles = 1 mol

Molarity:

Molarity = number of moles of solute / L of solution

M = 1 mol / 1.0 L

M = 1 mol/L

M = 1 M

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If the compound below is oxidized, the resulting product is ___. Select one: a. methane and propane b. butanal c. butanoic acid d. butane

Answers

The complete question is

If the compound below is oxidized, the resulting product is ___.

the compound given is Butanal

Select one:

a. methane and propane

b. butanal

c. butanoic acid

d. butane

Answer:

C. Butanoic Acid

Explanation:

When Butanal is oxidized using reagents like KMnO4, Tollens reagent etc.

When Aldehyde is oxidized corresponding Carboxylic Acid is produced

 Butanal →  Butanoic Acid

Which of the following is NOT a
homogenous mixture?

Answers

this is a black screen. there’s no picture.

Answer:blacks screen. No answers to choose from. Thanks for the points:))

Explanation:

True or false, physical properties are distinguished by the way something looks, taste, smell, and feels.

Answers

Answer:

True

Explanation:

Physical properties are based on all of our five senses, so yeah

this is true because all of those senses are physical.

A student is building an electrical circuit. Which material should she choose for the wires, and why?
A. A noble gas such as krypton, because its atoms are far apart and it is nearly inert
B. A nonmetal such as carbon, because its atoms have tightly bound electrons
C. A metalloid such as germanium, because only some of its atoms have mobile electrons
D. A metal such as copper, because its atoms have very mobile electrons​

Answers

Answer:

d

Explanation:

Answer:

d

Explanation:

A mixture of propane and butane is burned with pure oxygen. The combustion products contain 46.7 mole% H2O. After all the water is removed from the products, the residual gas contains 69.0 mole% CO2 and the balance O2 a. What is the mole percent of propane in the fuel?

Answers

Answer:

28%

Explanation:

Basically, all o did was write the equations, balance it and solve for them. Also, at the place I stared, I used simultaneous equation to solve it. Multiplying by 8 and also 3.

It's a pretty straightforward question.

At the final step that's missing, I Did

(y)C3H8 = 2.8 / ( 2.8 + 7.1)

(y)C3H8 = 0.28

If ·X: represents the electron-dot symbol of an element, that element could be

Answers

Answer:

The answer is b

lab

table b:eyedrop of blue water in cold water

table c:eyedrop of red water in hot water

table d:see how temperature changes on white + black paper with light shining on them
plz help

brainliest for 1st correct answer

Answers

Answer:

lol, I just did this assignment, cold water

0:30: slowly expand

1:00: still expanding

1:30: expanding is continued

2:00: still expanding slowly

2:30: expanding slowly

3:00: expanded twice the size from the first time

hot water

0:30: expanding quickly

1:00: still expanding

1:30: starts to reach the surface and still expanding

2:00: almost all the of the dye reached the top

2:30: the dye reached the top and is starting to split

3:00: the dye split appart and is moving down again

radiation

white paper

0:30: at a low temp. at around 3.3 C

1:00: still at a low temp. around 4.4 C

1:30: slowly rising temp. around 5.5 C

2:00: still slowly rising temp. around 7.2 C

2:30: still at a low temp. around 8.3 C

3:00: ends at a low temp. around 10 C

black paper

0:30: at a resonable temp. at around 6.6 C

1:00: temp. rises quicker at around 13.3 C

1:30: temp. stil rising quickly at around 17.7 C

2:00: temp. is getting hotter at around 21.6 C

2:30: temp. is still getting hotter at around 26.1 C

3:00: temp. ends at a hot temp. at around 30 C

Explanation:

C. If an electron is added to the outer shell, how will this affect the charge and volume of the atom?
if an electron is added on the outer shell

Answers

Answer:

An atom that gains or loses an electron becomes an ion. If it gains a negative electron, it becomes a negative ion. If it loses an electron it becomes a positive ion.

Answer:

when an atom gains an electron, it gains a negative charge . it's volume increases as well due to the increase in repulsion between the electrons

Explain the application of silver halides in darkening effect in industry

Answers

Explanation:

Silver halides are ionic crystals consisting of a regular cubic lattice of Ag and halide ions together with a small proportion of defects, such as Ag ions that have been displaced from their regular lattice position to another “interstitial” position (the Ag ions are much smaller than the halide ions), and the corresponding vacancy in the lattice.

The application of silver halides in darkening effect in industry can be seen in the production of photographic film.

What is Silver halide?

This compound is usually formed when Silver reacts with an halogen under special conditions.

In photography, it is used in the production of photographic film which darkens to produce an image when exposed to light due to the effect of the compound.

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An element that has an electronegativity value of zero

Answers

Answer:

Noble gases

Explanation:

Noble gases

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