Answer:
Carbon-dating techniques rely heavily on Chemistry
Explanation:
Carbon dating or the chemistry of carbon-dating involves the comparison of naturally occurring isotopes of carbon having the same number of proton with different numbers of neutron in their nucleus involving beta (β) radiation.
B. Decreasing the pressure
C. Increasing the pressure
Increasing the pressure
Answer:
water is denser
Explanation:
if you were to fill 2 55 gallon barrels of each product the water would weigh more because water is more dense
149g/mol is the gram-formula mass of (NH)PO. Therefore, the correct option is option C.
The quantity of a compound which has the exact same mass in grammes that its formula mass in an atomic mass unit is said to have the compound's gramme formula mass. Each atom of every component has a distinctive mass, and every molecular unit of a compound possesses a distinctive mass determined by the complex's formula. It is referred to as the Gramme Formula Mass because the formula-determined mass of a substance that is ionic is calculated by adding the atomic masses of each of its constituents. Gram-formula mass of (NH)PO = (14+4)×3+31+16×4= 149g/mol
Therefore, the correct option is option C.
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Ans: A)
HBrO and HBrO₃ are oxyacids where the acidic strength increases with the increase in the number of atoms attached to the central atom.
In both acids, oxygen is the most electronegative atom. In HBrO, the B atom is linked to only one O atom. In contrast, there are 3 electronegative O atoms surrounding the central B atom in HBrO₃ which would make the OH bond more polar and easily accessible. Thus, HBrO₃ tends to lose a proton readily than HBrO making the former more acidic.
HBrO is a weaker acid than HBrO3 because the H-O bond in HBrO is less polar than the H-O bond in HBrO3. In a series of oxyacids with similar formulas, the higher the electronegativity of the central atom, the stronger is the attraction of the central atom for the electrons of the oxygen(s), making the acid stronger.
The acid strength of HBrO is weaker than HBrO3 because the H-O bond in HBrO is less polar than the H-O bond in HBrO3 (Option A). In a series of oxyacids with similar formulas, the higher the electronegativity of the central atom, the stronger is the attraction of the central atom for the electrons of the oxygen(s). This stronger attraction of oxygen for the electrons in the O-H bond makes the hydrogen more easily released, resulting in a stronger acid (Option E). Therefore, HBrO3 is a stronger acid than HBrO.
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B) carbon
C) flourine
D) neon
and can you give me a explanation with the answer you chose