Answer: aluminum and 2.7
Explanation:
29.81 g/mol
48.81 g/mol
67.81 g/mol
The molar mass of BF3 is 67.81 g/mol
Explanation
that is;
atomic mass of B = 10.81 g/mol
atomic mass of F = 19 g/mol
67.81 g/mol is the molar mass of BF . Therefore, the correct option is option D among all the given options.
The ratio among the mass with the quantity of substance (measured within moles) in any sample of a compound of chemicals is known as the molar mass (M) in chemistry. The molar mass of a material is a bulk attribute rather than a molecular one. The compound's molecular weight is an average over numerous samples, which frequently have different masses because of isotopes. A terrestrial average or a function of the relative proportion of the isotopes of the component atoms on Earth, the molar mass is most frequently calculated using the standard atomic weights.
atomic mass of B = 10.81 g/mol
atomic mass of F = 19 g/mol
atomic massof F in BF= 3 x19 = 57 g/mol
total molar mass of BF = 10.81 g/mol + 57 g/mol = 67.81 g/mol
Therefore, the correct option is option D.
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1)Cu
2)PO4-3
3)SO2
Answer:
Explanation: the answer is B. PO4-3
Which type of chemical reaction is represented by this equation?
(1) synthesis (2) decomposition
(3) single replacement (4) double replacement
Answer : The correct option is, (1) synthesis
Explanation :
Synthesis reaction : A type of chemical reaction in which multiple reactants combine to form a single product.
It is represented as,
Decomposition reaction : A type of chemical reaction in which a single reactant decomposes into two or more products.
It is represented as,
Single replacement reaction : A type of chemical reaction where the more reactive element replace the less reactive element.
It is represented as,
(A is more reactive element and B is less reactive element)
Double replacement reaction : A type of chemical reaction in which a positive cation and a negative anion of two reactants exchange their places to form two new products.
It is represented as,
(A and C are the cations, B and D are the anions)
The given balanced reaction is,
The given reaction is an example of synthesis reaction in which lithium combine with the nitrogen to form a single product as lithium nitride.
Hence, the correct option is, (1) synthesis reaction
B) phosphodiester bond
C) hydrogen bond
D) peptide bond
Answer:
The specific heat capacity of the metal is approximately 0.3903 J/(g·°C)
Explanation:
The mass of the sample of the unknown metal, = 134.0 g
The temperature to which the metal is raised, = 91.0°C
The mass of water into which the mass of metal is placed, = 125 g
The temperature of the water into which the metal is placed, = 25.0°C
The final temperature of the water, = 31.0°C
The specific heat capacity of water, = 4.184 J/(g·°C)
The specific heat capacity of the metal =
Therefore, by the first laws of thermodynamics we have;
The heat transferred = Heat supplied by the metal = Heat gained by the water
The heat transferred, ΔQ, is given as follows;
ΔQ = ××( - ) = × ×( - )
125 × 4.184 × (31 - 25) = 134 × × (91 - 31)
∴ = (125 × 4.184 × (31 - 25))/(134 × (91 - 31)) ≈ 0.3903 J/(g·°C)
The specific heat capacity of the metal = ≈ 0.3903 J/(g·°C)