Answer : The answer will be
Explanation :
Significant figures : The figures in a number which express the value -the magnitude of a quantity to a specific degree of accuracy is known as significant digits.
The rule apply for the multiplication and division is :
The least number of significant figures in any number of the problem determines the number of significant figures in the answer.
The product of
In the given expression, 2.5 has 2 significant figures and 3.5 has 2 significant figures. From this we conclude that 2 is the least significant figures in this problem. So, the answer should be in 2 significant figures.
Thus, the answer will be
the result of multiplying (2.5 × 10¹⁰) and (3.5 × 10⁻⁷) is 8.8.10³ (cause the result must have 2 significant number)
Significant numbers are numbers obtained from the measurement results of exact numbers and the last number estimated
In scientific notation, all numbers are displayed before the big order is called significant numbers
the scientific notation can be described as:
a, ... x 10ⁿ
a, ... called an important number
10ⁿ is called a big order
Rules for significant numbers in general:
In the question it is known that (2.5 × 10¹⁰) and (3.5 × 10⁻⁷) both have a significant number in a row 2.5 and 3.5
so that it meets the rule of significant numbers which is multiplication of 2 significant number produces numbers that have the fewest significant numbers, So the multiplication of the two will produce 2 significant number
So that we do the significant number then proceed a big order
So the result = 8.75.10³
Because the result must have 2 significant number , the result is 8.8.10³ (8.75 we round up)
significant figures brainly.com/question/11151926
significant figures in the following number: 5.67 x 106 brainly.com/question/7539478
the number of significant figures is 0.025 brainly.com/question/10343704
0.080 significant figures brainly.com/question/1999241
the fewest number of significant figures brainly.com/question/11464470
b- Diprotic
c- Triprotic
d- None of the above
Answer:
Some elements are abbreviated with more than two letters such as the Ununtrium (Uut), Ununpentium (Uup), Ununseptum (Uus) and Ununoctio (Uuo).
Explanation:
Some elements have intuitive symbology, such as Chlorine (Cl), among others, which are represented by the first letters that make up the name. However, there are others who receive symbols that do not remember the name of the element, such as Lead (Pb). Regardless of the similarity between the names and the symbol of the elements, most of them have the symbol composed of one or two letters, except for the elements Ununtrium (Uut), Ununpentium (Uup), Ununseptum (Uus) and Ununoctio (Uuo).
Answer:
Explanation:
% of C = 35.5
Molar mass of C = 12.0107 g/mol
% moles of C = = 2.95569
% of H = 4.8
Molar mass of H = 1.00784 g/mol
% moles of H = = 4.76266
% of N = 8.3
Molar mass of N = 14.0067 g/mol
% moles of N = = 0.59257
% of Na = 13.5
Molar mass of Na = 22.989769 g/mol
% moles of N = = 0.58721
% of O = 37.9
Molar mass of O = 15.999 g/mol
% moles of O = = 2.36889
Taking the simplest ratio for C, H, O, N, Na and O as:
2.95569 : 4.76266 : 0.59257 : 0.58721 : 2.36889
= 5 : 8 : 1 : 1 : 4
The empirical formula is =
Molecular formulas is the actual number of atoms of each element in the compound while empirical formulas is the simplest or reduced ratio of the elements in the compound.
Thus,
Molecular mass = n × Empirical mass
Where, n is any positive number from 1, 2, 3...
Mass from the Empirical formula = 12*5 + 1*8 + 14 + 23 + 16*4 = 169 g/mol
Molar mass = 170 g/mol
So,
Molecular mass = n × Empirical mass
170 = n × 169
⇒ n ≅ 1
The molecular formula =
Answer : The molecular formula of a compound is,
Solution :
If percentage are given then we are taking total mass is 100 grams.
So, the mass of each element is equal to the percentage given.
Mass of C = 35.5 g
Mass of H = 4.8 g
Mass of O = 37.9 g
Mass of N = 8.3 g
Mass of Na = 13.5 g
Molar mass of C = 12 g/mole
Molar mass of H = 1 g/mole
Molar mass of O = 16 g/mole
Molar mass of N = 14 g/mole
Molar mass of Na = 23 g/mole
Step 1 : convert given masses into moles.
Moles of C =
Moles of H =
Moles of O =
Moles of N =
Moles of Na =
Step 2 : For the mole ratio, divide each value of moles by the smallest number of moles calculated.
For C =
For H =
For O =
For N =
For Na =
The ratio of C : H : O : N : Na = 5 : 8 : 4 : 1 : 1
The mole ratio of the element is represented by subscripts in empirical formula.
The Empirical formula =
The empirical formula weight = 5(12) + 8(1) + 4(16) + 1(14) + 1(23) = 169 gram/eq
Now we have to calculate the molecular formula of the compound.
Formula used :
Molecular formula =
Therefore, the molecular of the compound is,