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Aliun [14]
3 years ago
10

If a fast-moving neutron were to hit an atomic nucleus and break it into smaller atomic nuclei, a ________ reaction would occur.

Chemistry
1 answer:
kramer3 years ago
8 0
B. fission

Fission process involves breaking down of larger nuclei into smaller ones.
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Which of the following suggests that a physical change has taken place in an ice cube
zaharov [31]
The melting of the ice cube indicates physical change has taken place
7 0
3 years ago
During a chemical reaction, an iron atom became the ion Fe2+. What happened to the iron atom?
kirill115 [55]

Explanation:

Iron atom is been oxidised as it losses 2 electron to form 2 + ion.

4 0
3 years ago
The heat capacity of water is 1cal degree'g1 (1 calorie per degree centigrade, per gram). You are given 1 gallon of water at 25
sdas [7]

Answer:

The heat needed to boil 1 gallon of water is 81,490.62 Joules.

Explanation:

Q=mc\Delta T

Where:

Q = heat absorbed or heat lost

c = specific heat of substance

m = Mass of the substance  

ΔT = change in temperature of the substance

We have :

Volume of water = V = 1 gal = 4546.09 mL

Density of water , d= 1 g/mL

mass of water = m = d × V = 1g/mL × 4546.09 mL =  4546.09 g

Specific heat of water = c = 1 Cal/g°C

ΔT = 100°C - 25°C = 75 °C

9 (boiling pint of water is 100°C)

Heat absorbed by the water to make it boil:

Q= 4546.09 g\times 1 Cal/g^oC\times 75^oC=340,956.75 Cal

1 calorie = 4.184 J

Q=\frac{340,956.75}{4.184} J = 81,490.62 J

The heat needed to boil 1 gallon of water is 81,490.62 Joules.

5 0
3 years ago
Choose the correct answer to make the statement true.
yaroslaw [1]
D.
The prefix “exo” indicates a release. “-thermic” indicates heat. Because there is a release of heat, the reaction gives off heat and is warm to the touch. ΔH is negative because there is a loss of heat energy.
3 0
3 years ago
How many moles are in 4.35 X 1024 atoms of Iron (Fe)?
Naya [18.7K]

Answer:

<h3>The answer is 7.23 moles</h3>

Explanation:

To find the number of moles in a substance given it's number of entities we use the formula

n =  \frac{N}{L}  \\

where n is the number of moles

N is the number of entities

L is the Avogadro's constant which is

6.02 × 10²³ entities

From the question we have

n =  \frac{4.35 \times  {10}^{24} }{6.02 \times  {10}^{23} }  \\  = 7.225913...

We have the final answer as

<h3>7.23 moles</h3>

Hope this helps you

3 0
3 years ago
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