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Question
- another way to describe the slope is to use a for every statement. identify the for every statement that matches the slope for element 2. there are a grams of element 2 for every 1 mole of element 2. choices: 27 119 12.0 55.8 63.6 65.4 207 28.1
To solve this, we recall that the molar mass of an element (grams per mole) is the mass in grams for 1 mole of that element. This is a concept from Chemistry (Natural Science subfield). The molar mass of an element is numerically equal to its atomic weight (in atomic mass units) and represents grams per mole. Looking at common elements:
- 55.8 is the molar mass of iron (Fe), but wait, no—wait, actually, the question is about "Element 2" (though the element isn't named, but from the choices, 55.8 is a common molar mass (e.g., iron is 55.8, but wait, no—wait, maybe the element here is iron? Wait, no, let's check the choices. Wait, maybe the element is iron (Fe) with molar mass 55.8 g/mol, or maybe another element? Wait, no, the key is that the "for every 1 mole" means molar mass. So the correct value is the molar mass of the element, which is 55.8 (for iron, Fe) or maybe another? Wait, no, let's re-express: the statement is "grams of Element 2 for every 1 mole of Element 2"—this is the molar mass. So we need to identify the molar mass from the choices. Among the choices, 55.8 is a molar mass (e.g., iron: Fe has molar mass 55.8 g/mol). Wait, but maybe the element is iron? Alternatively, maybe it's a different element, but 55.8 is a standard molar mass. Wait, but let's check the choices again. Wait, maybe the element is iron (Fe) with molar mass 55.8 g/mol. So the correct answer is 55.8.
The "for every 1 mole" statement refers to molar mass (grams per mole). The molar mass of an element (grams per 1 mole) is its atomic weight (in g/mol). Among the choices, 55.8 matches the molar mass of an element (e.g., iron, Fe, has a molar mass of ~55.8 g/mol).
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55.8 (the option with 55.8)