4.4 Measures

Syllabus
2017
Topic
4.4
Level
Higher

Learning objectives

Interpret scales on measuring instruments

Read the numbered marks first, then count the equal spaces between them. The value of one smallest division is extdifferencebetweenlabels÷extnumberofspacesext{difference between labels}\div ext{number of spaces}.

Step Check
1 identify the unit and whether the scale increases or decreases
2 find two labelled marks
3 count spaces, not grid lines, between them
4 multiply the number of spaces from a label by one-division value

If 300 and 400 are separated by five equal spaces, each space represents 20. A pointer two spaces after 300 reads 300+2(20)=340300+2(20)=340.

Do not divide by the number of drawn marks between two labels. Four internal marks create five spaces.

Calculate 12-hour and 24-hour time intervals

In 24-hour time, use four digits: 3:20 pm is 1520 and 12:00 midnight is 0000. In 12-hour time, state am or pm whenever the context does not already fix it.

Situation Reliable method
same hour subtract minutes
crosses an hour count to the next hour, then onward
crosses noon or midnight split at 1200 or 0000 and add intervals
long interval convert both times to minutes after midnight, adjusting the next day

From 1635 to 2015: 25 minutes to 1700, then 3 hours 15 minutes to 2015, so the interval is 3 hours 40 minutes.

Subtract times only after using a consistent format. Clock notation is base 60, so 2015 minus 1635 is not ordinary decimal subtraction.

Make sensible estimates of measures

A sensible estimate combines a familiar benchmark, the correct unit and an order of magnitude that fits the object or event.

Measure Useful benchmark
length a doorway is about 2extm2 ext{ m} high
mass a bag of sugar is about 1extkg1 ext{ kg}
capacity a drinking glass holds a few hundred millilitres
time a short walk is measured in minutes, not seconds or days

Choose the measure type, select a plausible unit, compare with a known benchmark, then reject values that are ten or a hundred times too large or small.

Precision does not make an implausible value sensible. An estimate such as 201.7extL201.7 ext{ L} for a drinking glass has the wrong scale even though it looks precise.

Read and calculate three-figure bearings

A bearing is an angle measured clockwise from north at the starting point. Write it with three digits from 000000^\circ to 359359^\circ, such as 073073^\circ.

Step Action
1 draw or identify north at the starting point
2 turn clockwise from north to the direction line
3 measure or calculate the angle
4 write leading zeros when needed

Reverse bearings differ by 180180^\circ: add 180180^\circ if the bearing is below 180180^\circ; subtract 180180^\circ if it is at least 180180^\circ. Thus the reverse of 073073^\circ is 253253^\circ.

The north line must be placed at the point the journey starts from. Measuring anticlockwise or from north at the destination gives the wrong bearing.

Measure an angle to the nearest degree

Place the protractor centre exactly on the angle vertex and align its zero line with one arm. Read where the other arm crosses the correct scale.

Check Question to ask
centre is the protractor midpoint on the vertex?
baseline does the zero line lie on one arm?
scale does the chosen scale start at 00^\circ on that arm?
reasonableness should the angle be acute, right, obtuse or reflex?

If the ray falls between degree marks, read the closest mark; for example 109.6109.6^\circ rounds to 110110^\circ.

The two printed protractor scales run in opposite directions. Use the scale whose zero is on the aligned arm, not the first number you see.

Use average speed, distance and time

Average speed is total distance divided by total time: v=d/tv=d/t. Rearranging gives d=vtd=vt and t=d/vt=d/v.

Desired speed Match distance with time
km/h kilometres and hours
m/s metres and seconds
mph miles and hours

For 40 km in 2 hours 15 minutes, convert time to 2.252.25 hours. Then v=40/2.25=17.77v=40/2.25=17.77\ldots, so the average speed is 18extkm/h18 ext{ km/h} to the nearest whole number.

Average speed uses total distance and total elapsed time, including any stops unless the question explicitly excludes them. Do not average separate speed values without weighting by time or distance.

Use speed, density and pressure as compound measures

A compound measure combines two quantities. Use extspeed=extdistance/exttimeext{speed}= ext{distance}/ ext{time}, extdensity=extmass/extvolumeext{density}= ext{mass}/ ext{volume} and, when given, extpressure=extforce/extareaext{pressure}= ext{force}/ ext{area}.

Find Rearrangement
mass m=hoVm= ho V
volume V=m/hoV=m/ ho
force F=pAF=pA
area A=F/pA=F/p

A 12extcmimes8extcmimes5extcm12 ext{ cm} imes8 ext{ cm} imes5 ext{ cm} block has volume 480extcm3480 ext{ cm}^3. At density 0.7extg/cm30.7 ext{ g/cm}^3, its mass is 0.7(480)=336extg0.7(480)=336 ext{ g}.

Convert before substituting: 1extkg=1000extg1 ext{ kg}=1000 ext{ g} and 1extm/s=3.6extkm/h1 ext{ m/s}=3.6 ext{ km/h}. The numerator and denominator units determine the compound unit.

Pressure uses contact area, not total surface area; density uses the object's full volume. A correct formula with inconsistent units still gives a wrong answer.