Answer : The correct option is, (3)
Explanation :
Isomers : It is defined as the molecule that has the same chemical formula but it has the different structures.
Same chemical formula means that the same number of elements are present in both the compounds.
In option 1,2 and 4, both chemical formula and the structure are different. So, the option 1 compounds are not the isomers of each other.
In option 3, the chemical formula is same but the structure are different. So, the option 3 compounds are the isomers of each other.
Hence, the correct option is, (3)
492 mm Hg
740 mm Hg
805 mm Hg
Answer:
805 mmHg is the pressure when the container is compressed
Explanation:
Initial Volume of the gas, V = 55.0 L
Initial Moles of the gas, n = 2.4 mol
Initial Pressure of the gas ,P=760 mmHg
initial temperature of the gas, T = 280 K
Using an Ideal gas equation:
...(1)
Final Volume of the gas, V '= 43.0 L
Final Moles of the gas, n' = 1.8 mol
Final Pressure of the gas = p'
Final temperature of the gas, T' =36 °C = 309 K
Using an Ideal gas equation:
..(2)
(1)=(2)
P' = 805 mmHg
805 mmHg is the pressure when the container is compressed.
In the calorimeter, the heat received is the same as the heat released
Q abs = Q release
Heat can be calculated using the formula:
Q = mc∆T
Q = heat, J
m = mass, g
c = specific heat, joules / g ° C
∆T = temperature difference, ° C / K
Q released by a metallic ore and absorbed by water at calorimeter
Q ore = Q water
m = 0.5 kg = 500 g
c = 4.18 J/g–°C.
Δt = 24.3 - 22 = 2.3
Q ore = Q water = 4807 J
m ore = 3.5 kg = 3500 g
Δt = 100 - 24.3 = 75.7
B. They have different properties because the arrangement of atoms is different.
C. They have the same properties because they have the same atoms.
D. They have different properties because they have different atoms.
Answer is B.
Answer:
B is the answer
Explanation:
I took the test
chemical energy
electrical energy
mechanical energy
The number of liters of a gas that would produced at STP is 121.86 Liters
calculation
Step 1 : calculate the moles of hydrogen chloride gas using ideal gas equation
That is PV=nRT where,
P( pressure) = 5100 mm hg
V(volume)= 20.1 L
n(number of moles)= ? moles
R( gas constant) = 62.3636 L.mmhg/mol.K
T( temperature) =29 °C in to kelvin = 29 +273 =302 K
by making n the subject of the formula by diving both side by RT
n= Pv/RT
n=[(5100 mm hg x20.1 L)/(62.3636 l.mmhg/mol.k x 302 K)] =5.44 moles
Step : calculate the liters of a gas at STP
that is at STP
1 moles = 22.4 L
5.44 moles=? L
by cross multiplication
=( 5.44 mole x 22.4 L) / 1 mole =121.86 liters