Answer:
Explanation:
1. Gather all the information in one place
M_r: 22.99
2Na + 2H₂O ⟶ 2NaOH + H₂
T = 25.0 °C
V = 246 mL
2. Moles of H₂
To find the moles of hydrogen, we can use the Ideal Gas Law:
pV = nRT
(a) Calculate the partial pressure of the hydrogen
(b) Convert the volume to litres
V = 246 mL = 0.246 L
(c) Convert the temperature to kelvins
T = (25.0 + 273.15) K = 298.15 K
(d) Calculate the moles of hydrogen
3. Moles of Na
The molar ratio is 2 mol Na: 1 mol H₂
4. Mass of Na
The number of grams of sodium used in the reaction will be approximately 0.1387 grams.
To calculate the number of grams of sodium used in the reaction, we need to use the ideal gas law and consider the effect of the vapor pressure of water on the pressure of the collected hydrogen gas.
Given data:
Volume of hydrogen gas (V) = 246 mL = 0.246 L
Pressure of hydrogen gas (P) = 1.00 atm
Vapor pressure of water (P_water vapor) = 0.0313 atm (subtracted from the total pressure)
Temperature (T) = 25.0°C = 298.15 K
The ideal gas law is given by the equation: PV = nRT, where n is the number of moles of the gas.
First, calculate the total pressure by subtracting the vapor pressure of water from the given pressure of the gas:
Total pressure (P_total) = P - P_water vapor
= 1.00 atm - 0.0313 atm = 0.9687 atm
Now, rearrange the ideal gas law equation to solve for n (moles of gas):
n = PV / RT
Plug in the values:
n = (0.9687 atm × 0.246 L) / (0.0821 L·atm/mol·K × 298.15 K)
n ≈ 0.01206 mol
According to the balanced chemical equation, 2 moles of sodium (Na) produce 1 mole of hydrogen gas (H₂). Therefore, the number of moles of sodium used in the reaction is half of the calculated moles of hydrogen gas:
Moles of sodium = 0.01206 mol / 2 = 0.00603 mol
Finally, calculate the mass of sodium (molar mass of sodium = 22.99 g/mol)
Mass of sodium = Moles of sodium × Molar mass of sodium
Mass of sodium = 0.00603 mol × 22.99 g/mol
≈ 0.1387 g
Therefore, the number of grams of sodium used in the reaction is approximately 0.1387 grams.
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The complete question is attached in the attachment.
Out of the given options, Selenium is the one which is most brittle element.
As selenium is a metalloid or a crystalline non metal which is lustrous and is ductile in nature and is highly brittle in nature.
Selenium is the most brittle out of all the other elements
c. temperature
b. appearance
d. melting point
B. stomach
C. small intestine
D. large intestine
its actualy liver! i got small intestine wrong:/
(2) 79 (4) 197
The atomic number of an element is the number of its protons. Here, the total number of electrons is 79 and thus the element s having 79 protons also. Thus, option 2 is correct.
An atom is composed of nucleus and and electrons. Protons and neutrons are located inside the nucleus. Electrons are revolving around the nucleus.Electrons are negatively charged particles and protons are positively charged whereas neutrons are neutral.
The atomic number of an element is the number of its electrons or protons. For a neutral atom the number of electrons and protons are equal. Thus all the positive charges are neutralized by equal number of negative charges.
The electrons are filled in different orbitals and from the configuration we can understand the number of electrons given is 79. Thus its number of electrons and protons is 79.
Hence, the number of protons for the element with the given electronic configuration is 79. The name of this element is gold.
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