What is the total number of protons contained in the nucleus of a carbon 14 atom

Answers

Answer 1
Answer: A carbon 14 atom would have two more neutrons than a carbon 12 atom but they would both still have 6 protons

Related Questions

For water to become a mechanical weathering agent through ice wedging, it needs to go through a cycle of freezing and thawing.True False
All of the following statements about electrons are true except?
Which hybrid orbitals would be formed if one s orbital and three p orbitals combined? sp sp2 sp3 sp4
Where would the gravitational attraction between the earth and moon be the weakest
Describe 3 ways abrasion occurs in nature

How many electrons are in Al3+?

Answers

atomic number of aluminium  = 13
so the number of electrons=13
 aluminium cation, has 3 positive charge which it attains after losing 3 electrons (protons are not lost, there remain in the nucleus of the atom
electrons in Al3+ = 13 - 3 = 10 

Calculate the number of kilojoules to warm 125 g of iron from 23.5 °C to 78.0 °C.

Answers

Final answer:

Using the formula q = mcΔT, and substituting the values for mass, specific heat capacity of iron, and temperature change, it is calculated that it takes approximately 3.058 KJ to warm 125 g of iron from 23.5 °C to 78.0 °C.

Explanation:

To calculate the amount of heatneeded to warm 125 g of iron from 23.5 °C to 78.0 °C, we use the formula q = mcΔT, where 'm' is the mass in kilograms, 'c' is the specific heat capacity, and 'ΔT' is the temperature change. In this case, the mass 'm' is 0.125 kg (since 1 g = 10^-3 kg), the specific heat capacity 'c' of iron is 0.449 J/g°C (or 449 J/kg°C), and 'ΔT' is 78.0 °C - 23.5 °C = 54.5 °C.

Substituting these values into the formula, we get q = (0.125 kg) * (449 J/kg°C) * (54.5 °C), which gives a result of approximately 3.058 KJ.

Therefore, it would take approximately 3,058 KJ to warm 125 g of iron from 23.5 °C to 78.0 °C.

Learn more about Heat Calculation here:

brainly.com/question/30320641

#SPJ6

Final answer:

To warm 125 g of iron from 23.5 °C to 78.0 °C, it requires approximately 3.93 kilojoules of energy.

Explanation:

To calculate the number of kilojoules required to warm 125 g of iron from 23.5 °C to 78.0 °C, we can use the formula:

q = m * c * ΔT

Where:

  • q is the energy absorbed or released
  • m is the mass of the substance
  • c is the specific heat capacity of the substance
  • ΔT is the change in temperature

Using the given values:

  • m = 125 g
  • c = 0.450 J/g°C (specific heat capacity of iron)
  • ΔT = 78.0 °C - 23.5 °C

Substituting the values into the formula:

q = 125 g * 0.450 J/g°C * (78.0 °C - 23.5 °C)

Simplifying the equation:

q = 125 * 0.450 * (78.0 - 23.5)

q ≈ 3933.75 J ≈ 3.93 kJ

Therefore, it requires approximately 3.93 kilojoules of energy to warm 125 grams of iron from 23.5 °C to 78.0 °C.

Learn more about Specific heat capacity of iron here:

brainly.com/question/36873374

#SPJ12

Which of the following elements has the ability to undergo sublimation?a. oxygen
b. carbon
c. sodium
d. iodine

Answers

The best answer to this question would be (d.) iodine. Iodine is the elements who has the ability to undergo sublimation. Iodine is an important compound in terms of nutrition, production of acetic acid and polymers. Iodine is capable of transitioning from solid to gas without any specialized process. 

The answer to your question is

d. idoine

What element used to be mined in the upper peninsula of Michigan

Answers

coal, they use to mine for it alot

Final answer:

The Upper Peninsula of Michigan was widely known for iron mining. This region saw significant iron ore extraction, primarily in the Marquette Range, dating back to the 1800s. The mining and extraction process relied on iron smelting and made use of iron's magnetic properties.

Explanation:

The element that was extensively mined in the Upper Peninsula of Michigan is iron. This area, primarily in the Marquette Range, was a significant producer of iron ore, a key ingredient in the manufacturing of steel. The mining of iron in Michigan's upper peninsula started in the 1800s and, during its peak periods of the late 19th and early 20th centuries, the industry was critical to Michigan's economy.

Historically, iron ore was obtained through iron smelting, a process that involved heating and melting iron ore to extract pure iron. The iron was then used in various industries, primarily for the manufacturing of steel.

In extracting iron, magnetic properties of individual atoms were often considered due to iron's magnetic nature. Since iron ore is magnetically responsive, this property helped in the location and extraction of the ore. Furthermore, the delivery of the iron ore from the mines was influenced by the location of the mine, the concentration of the iron in the ore, and the difficulties associated with reducing the iron to its free metal form.

Learn more about Iron mining in the Upper Peninsula of Michigan here:

brainly.com/question/32805323

#SPJ12

Which species represents a chemical compound?
(1) N2 (3) Na
(2) NH4+ (4) NaHCO3

Answers

The species that significantly represents a chemical compound is known as NaHCO3. This is also known as Sodium bicarbonate or sodium hydrogen carbonate. Thus, the correct option for this question is D.

What is a Chemical compound?

A chemical compound may be defined as a type of chemical substance that is mainly composed of many similar molecules that contain atoms of more than one chemical element. These atoms are typically held together by chemical bonds.

According to the context of this question, Na is sodium and N2 is dinitrogen or simply nitrogen gas. Both these chemical constituents are classified as the type of chemical element. While NH4+ is a polyatomic ion which is known as an ammonium ion.

So, NaHCO3 is classified into the category of a chemical compound. This is because it mainly consists of sodium, hydrogen, carbon, and oxygen.

Therefore, the species that significantly represents a chemical compound is known as NaHCO3. This is also known as Sodium bicarbonate or sodium hydrogen carbonate. Thus, the correct option for this question is D.

To learn more about Sodium bicarbonate, refer to the link:

brainly.com/question/20670487

#SPJ2

Answer:

4.) NaHCO3

Explanation:

In a compound, two or more elements are chemically combined. NaHCO3 is a compound containing the elements sodium (Na), hydrogen (H), carbon (C), and oxygen (O). N2 and Na are elements. NH4+ is the polyatomic ion ammonium.Zoom

When a bond is formed, energy is _________ the environment.A. released into
B. released from
C. kept stable in

Answers

When a bond is formed, energy is released into the environment. That is because it is an exothermic reaction, it releases energy. 

Answer: can confirm that A: Released into. Is the correct answer