Physical Quantities and Units
168 questions· page 1 of 17
Table 1.1 lists some SI quantities. Complete the table by indicating with a tick (✓) which rows are SI base quantities.
Table 1.1
| quantity | base quantity |
|---|---|
| current | |
| energy | |
| force | |
| mass |
A light meter is used to measure the intensity of light in a classroom. Daylight is incident normally on the sensor of the meter. The sensor has an area of . The reading on the meter is .
Calculate the power of the daylight incident on the sensor.
power = ______
the percentage uncertainty in the radius of the sphere.
percentage uncertainty = ______
Table 1.1 lists some physical quantities. Complete the table by placing a tick (✓) next to the scalar quantities.
Table 1.1
| acceleration | |
| charge | |
| momentum | |
| power | |
| upthrust |
Calculate the density of the cylinder. Give your answer to three significant figures.
density = ______
Calculate the percentage uncertainty in the density.
percentage uncertainty = ______
In the following list, underline all units that are SI base units.
ampere degree Celsius kilogram newton
Calculate the percentage uncertainty in the value of .
percentage uncertainty = ______
Use your answer in (b)(i) to determine the value of , with its absolute uncertainty, to an appropriate number of significant figures.
= ( ______ ______ )
The boxes in Fig. 1.1 contain terms on the left-hand side and examples of these terms on the right-hand side.
Draw a line between each term on the left and the correct example on the right.
The value of is .
Calculate the absolute uncertainty in .
absolute uncertainty = ______
Calculate with its absolute uncertainty. Give your answer to an appropriate number of significant figures.
= ( ______ ______ )
State two other scalar quantities and two other vector quantities.
scalar quantities: ______ and ______
vector quantities: ______ and ______
State two properties that are possessed by both scalar and vector physical quantities.
- ______
- ______
Determine the magnitudes of the components of the velocity of the ship in the north and the east directions.
north component of velocity = ______
east component of velocity = ______
The ship now experiences a tidal current. The water in the sea moves with a velocity of to the west.
Calculate the resultant velocity component of the ship in the east direction.
resultant east component of velocity = ______
Use your answers in (b)(i) and (b)(ii) to determine the magnitude of the resultant velocity of the ship.
magnitude of resultant velocity = ______
Use your answers in (b)(i) and (b)(ii) to determine the angle between north and the resultant velocity of the ship.
angle = ______
A unit may be stated with a prefix that represents a power-of-ten multiple or submultiple.
Complete Table 1.1 to show the name and symbol of each prefix and the corresponding power-of-ten multiple or submultiple.
Table 1.1
| prefix | power-of-ten multiple or submultiple |
|---|---|
| kilo (k) | |
| tera (T) | |
| ( ) |
In the following list, underline all the units that are SI base units.
ampere coulomb metre newton