eaming Goal: o convert between metric units expressing length, area, and volume. Converting squared units When converting areas, you must be careful to properly square the units to produce the correct ratio. Think of mm? as (mm) = (mm) - (mm). That is to say, think of this as a pair of millimeter units, each of which must be converted separately. To convert 130 mm² to square meters, you would use the following calculation: he ability to convert from one system of units to another is important in hemistry. It is often impractical to measure quantities in the standard reters, kilograms, and seconds, but the laws of science that you learn will volve constants that are defined in these units. Therefore, you may often ave to convert your measured quantities into different metric units. he following table lists metric prefixes that come up frequently in hemistry. Learning these prefixes will help you in the various exercises. 2 to: 130 mm2. (Im . (Im 1000 mm/ 1m 1000 mm) = 130 mm² . 10 m Notice that the exponent distributes to both the numbers and the units: mega- (M) x10° 1 m 130 mm?. 130 mm? . kilo- (k) x10 10 m 10 mm? centi- (c) x 10-2 Now the mm will cancel properly: milli- (m) x 10 3 130 am I m? 1.30 x 10 4m? micro- (A) x10- 10 utt nano- (n) x10 Part B Suppose that, from measurements in a microscope, you determine that a certain bacterium covers an area of 1.50 pm?. Convert this to square meters. Express your answer in square meters. • View Available Hint(s) Templates Symtols undo' redo feset keyboard shortcuts Help
eaming Goal: o convert between metric units expressing length, area, and volume. Converting squared units When converting areas, you must be careful to properly square the units to produce the correct ratio. Think of mm? as (mm) = (mm) - (mm). That is to say, think of this as a pair of millimeter units, each of which must be converted separately. To convert 130 mm² to square meters, you would use the following calculation: he ability to convert from one system of units to another is important in hemistry. It is often impractical to measure quantities in the standard reters, kilograms, and seconds, but the laws of science that you learn will volve constants that are defined in these units. Therefore, you may often ave to convert your measured quantities into different metric units. he following table lists metric prefixes that come up frequently in hemistry. Learning these prefixes will help you in the various exercises. 2 to: 130 mm2. (Im . (Im 1000 mm/ 1m 1000 mm) = 130 mm² . 10 m Notice that the exponent distributes to both the numbers and the units: mega- (M) x10° 1 m 130 mm?. 130 mm? . kilo- (k) x10 10 m 10 mm? centi- (c) x 10-2 Now the mm will cancel properly: milli- (m) x 10 3 130 am I m? 1.30 x 10 4m? micro- (A) x10- 10 utt nano- (n) x10 Part B Suppose that, from measurements in a microscope, you determine that a certain bacterium covers an area of 1.50 pm?. Convert this to square meters. Express your answer in square meters. • View Available Hint(s) Templates Symtols undo' redo feset keyboard shortcuts Help
Chemistry for Today: General, Organic, and Biochemistry
9th Edition
ISBN:9781305960060
Author:Spencer L. Seager, Michael R. Slabaugh, Maren S. Hansen
Publisher:Spencer L. Seager, Michael R. Slabaugh, Maren S. Hansen
Chapter1: Matter, Measurements, And Calculations
Section: Chapter Questions
Problem 1.41E
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