1,000 kilograms = 1 gram
100 centimeters = 1 meter
Answer:
100 centimeters = 1 meter
Answer : The concentration (in molarity) of the unknown solution Q is, 0.265
Explanation :
Using Beer-Lambert's law :
where,
A = absorbance of solution
C = concentration of solution
l = path length
= molar absorptivity coefficient
From the Beer's Law plot between absorbance and concentration we concldue that the slope is equal to and path length is 1 cm.
As we are given that:
Slope = 0.543 M⁻¹
and,
Slope =
Now we have to determine the concentration (in molarity) of the unknown solution Q.
Using Beer-Lambert's law :
Therefore, the concentration (in molarity) of the unknown solution Q is, 0.265
Answer: Yes, lead ion will react with potassium iodide.
Explanation: When lead ion reacts with KI, a bright yellow colored precipitate is formed.
The reaction of these two follows:
Hence, ion reacts with KI to yield
This test is the confirmatory test for lead ion which is present in Group I.
Heavy metals are located on the lower part of the periodic table, specifically in the d-block and f-block elements.
In the periodic table, heavy metalsare found in the d-block and f-block, at the bottom. Elements in the d-block, or transition metals, span groups 3 through 12 in the periodic table. Metals like iron, copper, and zinc are included in this category.
The f-block elements, which comprise the lanthanides and actinides, may be found at the very end of the periodic table and are referred to as the inner transition metals. Due to their large atomic weights and high densities, elements like uranium and plutonium are classified as heavy metals.
Learn more about heavy metals, here:
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As this reaction takes place at higher temperatures, it is observed that the equilibrium shifts toward the products. The
reaction is ?
1) exothermic
2)endothermic
Answer:
I think D. shift the equilibrium reaction to favor the endothermic process
Explanation:
covalent compound
element
atom
When a nonmetal bonds with another nonmetal, they typically form a covalent compound. This is because nonmetals have similar tendencies to attract electrons and, hence, they form a mutual sharing of electrons which constitutes a covalent bond.
When a nonmetal bonds with another nonmetal, they form a covalent compound. Covalent compounds are formed when two atoms share electrons, rather than transferring them as in ionic bonding. Nonmetals typically have similar electronegativities, meaning they both have similar tendencies to attract electrons. As a result, neither atom completely transfers its electron(s) to the other, they rather settle on a compromise and decide to share the electron(s). This sharing of electrons is the basis of a covalent bond. An example is the covalent bond of two oxygen atoms to form an O2 molecule.
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