Compute the molecular mass and its uncertainty for NH3. What is the percent relative uncertainty in molecular mass?

Short Answer

Expert verified

The percent relative uncertainty is100×relativeuncertainty

Step by step solution

01

Step 1:The introduction of interpretation, uncertainty and absolute uncertainty

Interpretation:

For NH3, the molecular mass and its uncertainty, as well as the percent relative uncertainty in molecular mass, must be computed.

Uncertainty:

Uncertainty refers to the inability to predict a value. The last digit in a measured value will have related uncertainty. Absolute and relative uncertainty are two types of uncertainty.

Absolute uncertainty:

The marginal value associated with a measurement is expressed as absolute uncertainty.

02

The value of percent relative uncertainty

The relative uncertainty is:

Compares the extent of absolute uncertainty to the size of the measurement it is connected with.

Relativeuncertainty=absoluteuncertaintymagnitudeofmeasurement

As a example it can be taken that:

Consider the following burette reading: 12.35±0.02mL.

is the absolute uncertainty.

The formula is used to calculate the relative uncertainty is:

Relativeuncertainty=absoluteuncertaintymagnitudeofmeasurement

So,the percent relative uncertainty is:

Percentrelativeuncertainty=100×relativeuncertainty

The percent relative uncertainty is100×relativeuncertainty

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Most popular questions from this chapter

3-1. How many significant figures are there in the following numbers?

(a) 1.903 0

(b)0.0391 0

(c) 1.40×104

State whether the errors in (a)-(d) are random or systematic:

(a) A 25 - mL transfer pipet consistently delivers 25.031±0.009mL.

(b) A 10 - mL buret consistently delivers role="math" localid="1663303542431" 1.98±0.01mLwhen drained from exactly 0 to exactly 2mL and consistently delivers 2.03mL±0.02mL when drained from 2 to 4mL .

(c) A 10 - mL buret delivered 1.9839g of water when drained from exactly 0.00 to 2.00mL . The next time I delivered water from the 0.00 to the 2.00mL mark, the delivered mass was .

(d) Four consecutive 20.0 - μL injections of a solution into a chromatograph were made and the area of a particular peak was 4383 , 4410, 4401 , and 4390 units.

You can calculate the time it will take for an object to fall from the top of a building to the ground if you know the height of the building. If the height has an uncertainty of 1.0% ,what is the uncertainty in time?

Vernier scale. The figure below shows a scale found on instruments such as a micrometer caliper used for accurately measuring dimensions of objects. The lower scale slides along the upper scale and is used to interpolate between the markings on the upper scale. In (a), the reading (at the left-hand 0 of the lower scale) is between 1.4and 1.5on the upper scale. To find the exact reading, observe which mark on the lower scale is aligned with a mark on the upper scale. Because theon the lower scale is aligned with the upper scale, the correct reading is 1.46. Write the correct readings in (b) and (c) and indicate how many significant figures are in each reading.

Write each answer with the correct number of significant figures.

(a)1.0+2.1+3.4+5.8=12.3000

(b) 106.9 - 31.4 = 75.5000

(c)107.868(2.113×102)+(5.623×103)=5519.568

(d)(26.14/37.62)×4.38=3.043413

(e(26.14/37.62×108)×(4.38×10-2)=3.043413×10-10

(f)(26.14/3.38)+4.2=4.5999

(g)log(3.98×104)=4.5999

(h)10-6.31=4.89779×10-7

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