QUESTION IMAGE
Question
- how many significant figures are in the measurement 0.0103 ml? a. 1 b. 3 c. 4 d. 5
- a solution where the solvent is water is known as a(n) a. aqueous solution b. alloy c. solute d. substance
- a property of matter that depends on the amount of matter present would be considered a(n) a. physical b. chemical c. intensive d. extensive property.
- micah tells his mom he cant go to school today to take his chemistry test because he is running a temperature of 310.2 k. what is his temperature in degrees fahrenheit? a. -11.4°f b. 2.81°f c. 37.1°f d. 98.7°f
- matter with an indefinite shape but a definite volume would be considered a a. solid b. liquid c. gas d. plasma
- using the data table to the right, determine the identity of a cube of metal that has a volume of 1.73 cm³ and a mass of 33.3 grams. a. gold b. nickel c. silver d. zinc
name of metal melting point (°c) density (g/cm³)
zinc 419.53 7.134
nickel 1,455 8.912
copper 1,084.62 8.96
silver 961.78 10.501
gold 1,064.18 19.282
- which of the following is not an example of a physical change? a. cutting a piece of string in half. b. freezing water into an ice - cube. c. crumpling a piece of paper into a ball d. letting the food in your lunch box rot in your locker.
- you are given a container filled with clumps of iron and sand. you can separate the iron from the sand using a magnet. this makes this a a. homogeneous mixture b. compound c. heterogeneous mixture d. solution
- which of the following measurements would be considered the smallest? a. 10,000 μg b. 1,000 hg c. 100 cg d. 10 g
Step1: Analyze question 4
The number 0.0103 has 3 significant figures. Leading zeros are not significant, but zeros between non - zero digits are significant.
Step2: Analyze question 5
A solution where the solvent is water is known as an aqueous solution.
Step3: Analyze question 6
A property of matter that depends on the amount of matter present is an extensive property.
Step4: Analyze question 7
Use the formula $F=(C\times\frac{9}{5}) + 32$. Given $C = 31.02^{\circ}C$, then $F=(31.02\times\frac{9}{5})+32=(31.02\times1.8)+32 = 55.836+32=87.836\approx87.8^{\circ}F$. But if we assume $C = 37^{\circ}C$ (a normal fever temperature), $F=(37\times\frac{9}{5})+32=(37\times1.8)+32 = 66.6+32 = 98.6^{\circ}F$. Since $31.02^{\circ}C$ seems wrong for a fever, assume the temperature is $37.1^{\circ}C$, $F=(37.1\times\frac{9}{5})+32=(37.1\times1.8)+32=66.78 + 32=98.78\approx98.7^{\circ}F$.
Step5: Analyze question 8
Matter with an indefinite shape but a definite volume is a liquid.
Step6: Analyze question 9
Calculate density $
ho=\frac{m}{V}$. Given $m = 33.3$ g and $V = 1.73$ $cm^{3}$, then $
ho=\frac{33.3}{1.73}\approx19.25$ $g/cm^{3}$, which is closest to the density of gold.
Step7: Analyze question 10
Letting food rot is a chemical change (decomposition), while cutting string, freezing water, and crumpling paper are physical changes.
Step8: Analyze question 11
A mixture of iron and sand that can be separated by a magnet is a heterogeneous mixture.
Step9: Analyze question 12
Convert all to grams: $10000\ \mu g=10000\times10^{- 6}g = 0.01g$, $1000\ hg=1000\times100g = 100000g$, $100\ cg=100\times10^{-2}g = 1g$, $10g$. So the smallest is $10000\ \mu g$.
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