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devlian [24]
3 years ago
7

what does our life have in common with the periodic table, What is the relationship between the world around us and the periodic

table?
Chemistry
1 answer:
Lena [83]3 years ago
7 0

Answer:

Summary. To summarize, the periodic table is important because it is organized to provide a great deal of information about elements and how they relate to one another in one easy-to-use reference. The table can be used to predict the properties of elements, even those that have not yet been discovered.

Explanation:

You might be interested in
For an ideal gas condition, what is the mass (g) of N2 if the pressure is 2.0 atm, the volume is 25 mL and the temperature is 29
Alchen [17]

Answer:

THE MASS OF NITROGEN GAS IN THIS CONDITIONS IS 0.0589 g

Explanation:

In an ideal condition

PV = nRT or PV = MRT/ MM where:

M = mass = unknown

MM =molar mass = 28 g/mol

P = pressure = 2 atm

V = volume = 25 mL = 0.025 L

R = gas constant = 0.082 L atm/mol K

T = temperature = 290 K

n = number of moles

The gas in the question is nitrogen gas

Molar mass of nitrogen gas = 14 * 2 = 28 g/mol

Then equating the variables and solving for M, we have

M = PV MM/ RT

M = 2 * 0.025 * 28 / 0.082 * 290

M = 1.4 / 23.78

M = 0.0589 g

The mass of the nitrogen gas at ideal conditions of 2 atm, 25 mL volume and 290 K temperature is 0.0589 g

3 0
4 years ago
Which type of energy transformation occurs when a flashlight shines?
never [62]

Answer:

chemical to light

Explanation:

the chemicals in batteries are converted to electricity and then to light

6 0
3 years ago
Read 2 more answers
1. According to Le Châtelier's principle, an increase in temperature will shift the equilibrium position toward the products in
sdas [7]

Answer:

1. True

2. Shift it toward the side with lower total mole concentration

3. It will shift toward the product side as there are a fewer number of moles of gas on the product side.

Explanation:

1.

An endothermic reaction is reaction that will absorb energy from the surrounding arena. Increasing temperature will increase the heat of the system. Since the average heat of the surrounding is higher, it will be easier to do an endothermic reaction than exothermic, so this will shift the equilibrium position toward endothermic reaction.

2.

When pressure increase, the molecule will harder to expand. This mean reaction that produces more molecules will be harder to happen since it will take more room and increase the pressure further. This will make the equilibrium shift toward the side with lower total mole concentration since it will help to make more room, thus making the pressure lower.

3.

Remember that only the gas form will contribute to the pressure of the system. In this reaction, there are 3 kinds of gas: nitrogen, hydrogen, and ammonia. Since all form in this reaction gas, you can calculate them all.

On the left side, we have 1 nitrogen and 3 hydrogen so the total is 4.

On the right side, we have 2 ammonia so the total is 2.

When pressure decrease, the equilibrium will shift toward the side with lower total mole concentration, which is the ammonia side. So, the reaction will shift to the product side.

3 0
3 years ago
How would understanding the properties of matter be helpful in other fields of study besides chemistry?
erma4kov [3.2K]
Matter is the basic unit of all things in the world, whether living or nonliving. It is not only useful in chemistry, but also to other fields of science like physics. Physics deals with motion, so it has something to do with matte especially the movement of molecules for solids and fluids.
5 0
3 years ago
Read 2 more answers
Calculate the volume (in liters) of 12.5 g of argon gas at a pressure of 1.05 atm and a temperature of 322k.
Bess [88]

The volume (in liters) of 12.5 g of argon gas at a pressure of 1.05 atm and a temperature of 322 k is 7.86L.

Given,

Mass of argon = 12.5 g

Molar mass of argon = 40 g

Pressure = 1.05 atm

Temperature = 322K

By using ideal gas equation:

PV = nRT

where,

P = pressure, V = volume, n = number of moles,

R = gas constant = 0.0821Latm/ mol K

and T = temperature

<h3>Calculation of moles</h3>

Moles = given mass/ molar mass

= 12.5/40

= 0.3125 mol

<h3>Calculation of volume</h3>

V = nRT/P

V = 0.3125× 0.0821 × 322/1.05

= 7.86L

Thus, we find that the volume of 12.5 g of argon gas is 7.86L.

learn more about ideal gas equation:

brainly.com/question/4147359

#SPJ4

4 0
2 years ago
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