Answer:
copper wire, metal nail, battery
Explanation:
To create an electromagnet, the material to be magnetized (such as a metal nail) is placed inside a solenoid, the ends of the coils are connected to a circuit that includes a battery.
Current is allowed to flow for a few seconds and then cut off. The polarity of the magnet depends on the direction of flow of current in the solenoid.
the answer is ionic bonds
Answer: The mass of molten iron formed will be 1.92 kg
Explanation:
We are given:
Moles of iron (III) oxide = 17.2 moles
To calculate the number of moles, we use the equation:
......(1)
Given mass of aluminium = 2.28 kg = 2280 g (Conversion factor: 1 kg = 1000 g)
Molar mass of aluminium = 27 g/mol
Putting values in equation 1, we get:
The chemical equation for the reaction of aluminium and iron (III) oxide follows:
By Stoichiometry of the reaction:
1 mole of iron (III) oxide reacts with 2 moles of aluminium
So, 17.2 moles of iron (III) oxide will react with = of aluminium
As, given amount of aluminium is more than the required amount. So, it is considered as an excess reagent.
Thus, iron (III) oxide is considered as a limiting reagent because it limits the formation of product.
By Stoichiometry of the reaction:
1 mole of iron (III) oxide produces 2 moles of iron
So, 17.2 moles of iron (III) oxide will produce = of iron
Now, calculating the mass of iron by using equation 1, we get:
Molar mass of iron = 55.8 g/mol
Moles of iron = 34.4 moles
Putting values in equation 1, we get:
Hence, the mass of molten iron formed will be 1.92 kg
Answer:Concentration is a measurement of the amount of solute that is dissolved in a given quantity of solvent; usually expressed as mol/L.
Explanation:
B. An atom is entirely solid and has no empty spaces between its particles.
C. An atom has a dense nucleus surrounded by mostly empty space where electrons travel.
Answer:
Option B. Add 1.46 g of NaCl to 250 mL of H₂O
Explanation:
Analyse the data given: 250 mL and 0.10 M
The molar concentration and the volume of solution can indicate the moles of solute that were used.
Let's convert the volume from mL to L → 250 mL . 1 L /1000mL =0.250L
M . volume = moles → 0.10 mol/L . 0.250L = 0.025 moles
If we convert the moles to mass, we'll know the mass of solute:
0.025 mol . 58.4 g/mol = 1.46 g
Answer:
We have to solve 1.46 grams of NaCl in 250 mL H2O (option B)
Explanation:
Step 1: Data given
Volume = 250 mL = 0.250 L
Molarity NaCl solution = 0.10 M
Molar mass of NaCl = 58.4 g/mol
Step 2: Calculate moles NaCl
Moles NaCl = molarity * volume
Moles NaCl = 0.10 M * 0.250 L
Moles NaCl = 0.025 moles
Step 3: Calculate mass NaCl
Mass NaCl = moles NaCl * molar mass NaCl
Mass NaCl = 0.025 moles * 58.4 g/mol
Mass NaCl = 1.46 grams
We have to solve 1.46 grams of NaCl in 250 mL H2O (option B)