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Rus_ich [418]
2 years ago
15

1.00 g of a metallic element reacts completely with 300 cm3 of oxygen at 298 K and 1 atm pressure to form an oxide which contain

s O2– ions. The volume of one mole of gas at this temperature and pressure is 24.0 dm3. What could be the identity of the metal? A calcium B magnesium C potassium D sodium 11
Chemistry
1 answer:
Ivenika [448]2 years ago
3 0

Answer : The metal could be Calcium.

Solution : Given,

Mass of metallic element = 1 g

Volume of oxygen = 300Cm^3=0.3L        (1L=1000Cm^3)

Temperature of gas = 298 K

Pressure of the gas = 1 atm

First we have to calculate the moles of oxygen gas.

Using ideal gas law,

PV=nRT\\n=\frac{PV}{RT}

where,

P = pressure of the gas

V = volume of the gas

T = temperature of the gas

n = number of moles of gas

R = gas constant = 0.0821Latm/moleK

Now put all the given values in this formula, we get the moles of oxygen gas.

n=\frac{(1atm)\times (0.3L)}{(0.0821Latm/moleK)\times (298K)}=0.01226moles

As per question, the reaction is,

2M+O_2\rightarrow 2MO

From the reaction we conclude that the

1 mole of oxygen react with 2 moles of metallic element

0.01226 moles of oxygen react with 2\times 0.01226=0.02452 moles of metallic element

Now we have to calculate the molar mass of metallic element.

\text{ Molar mass of metallic element}=\frac{\text{ Mass of metallic element}}{\text{ Moles of metallic element}}=\frac{1g}{0.02452moles}=40.783g/mole

Therefore, this molar mass is more closer to the molar mass of the calcium. So, this metal could be Calcium and form calcium oxide.

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Determine the overall charge on particles with the subatomic makeups given.
Gwar [14]

Answer:

The correct solution will be "+3".

Explanation:

The given values are:

Number of protons

= 13

Number of neutrons

= 14

Number of electrons

= 10

As we know,

⇒  Charge = Number \ of \ protons - Number \ of \ electrons

On putting the estimated values, we get

⇒               =13 - 10

⇒               =+3

5 0
2 years ago
A substance has a density of 4.5gmL. What is this in kgL? Report your answer with two significant figures.
Ipatiy [6.2K]

Answer:

4.5 kg/L

Explanation:

Density is 4.5g/mL and it means that in 1 mL of volume, the mass contained is 4.5 g.

Let's make a rule of three

1L = 1000 mL

1 mL has a mass of 4.5 g

1000 mL would have 4500 g

Our new density would be 4500 g/L, but we may convert the g to kg

1 kg / 1000 g . 4500 g = 4.5 kg

In conclusion 4.5 g/mL = 4.5 kg/L

7 0
2 years ago
A Gas OCCUPIES 525ML AT A PRESSURE OF 85.0 kPa WHAT WOULD THE VOLUME OF THE GAS BE AT THE PRESSURE OF 65.0 kPa
german

Boyle's law of ideal gas: This law states that the volume of a gas is inversely proportional to its pressure at a constant temperature. Acc to this law we can write the relation of pressure and volume as:

PV=Constant

That means:

P_{1}V_{1}=P_{2}V_{2}

From that equation we can calculate Volume of gas at a certain pressure:

P₁=Initial pressure

V₁=Initial volume

P₂=Final pressure

V₂= Final volume

Here P₁, initial pressure is given as 85.0 kPa

V₁, initial volume is given as 525 mL

P₂, final pressure is 65.0 kPa

P_{1}V_{1}=P_{2}V_{2}

so,

V_{2}=85\times 525\div 65

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Volume of gas will be 686 mL.

8 0
2 years ago
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Which diagram shows the correct way to represent an ionic compound of magnesium oxide?
Daniel [21]
The answer is ................................ c
8 0
2 years ago
How many known elements have atoms, in their ground-state, with valence electrons whose quantum numbers are n = 5 and l = 1?a. 3
Goshia [24]

Answer:

c. 6.

Explanation:

Looking at the description given in the question, the elements involved must belong to the p- block of the periodic table and must be in period 5. They also must possess valence electrons in the 5p- orbital.

Now if we look at the p- block of period 5, the following elements satisfy these  requirements; Sr, In, Sn, Sb, Te and I.

Hence there are six of such elements.

7 0
2 years ago
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