Physics introduction
Systems & Importance of Units
Conversion Between Systems
Scientific Notation & Magnitude
Branches of Physics & TechnologyEnter Category Name
100

What does physics study? A) Only motion B) Matter, energy, motion, forces, and their interactions C) Only living organisms D) Only chemicals

B

100

Which instrument would be most appropriate for measuring the mass of a small object? A) Stopwatch B) Thermometer C) Balance D) Ruler

C — Balance

100

Approximately how many centimeters are in 1 inch?

2.54 cm

100

Write 5,000 in scientific notation.

5 × 10³

100

Name three branches of physics.

Possible answers: mechanics, thermodynamics, optics, electromagnetism, acoustics, quantum physics, nuclear physics, etc.

200

Which situation is an example of physics in everyday life? A) A plant growing B) A ball falling from a table C) Memorizing a poem D) Learning a language

B

200

What is the most widely used measurement system in science?

The International System of Units (SI).

200

Convert 10 inches to centimeters. Use 1 in = 2.54 cm.

25.4 cm

200

Write 0.00032 in scientific notation.

3.2 × 10⁻⁴

200

Which branch of physics studies motion, forces, and the behavior of objects?

Mechanics.

300

“Physics only studies things we can see.” Is this statement correct? Explain.

No. Physics also studies phenomena we cannot directly see, such as electric fields, magnetic fields, atoms, and waves.

300

Which SI unit is used to measure length? A) kilogram B) meter C) second D) kelvin

kilogram B) meter C) second D) kelvin

B — meter (m)

300

A person is 5 feet 6 inches tall. Convert their height to centimeters. Use 1 ft = 12 in and 1 in = 2.54 cm.

5 ft = 60 in; + 6 = 66 in → 167.64 cm

300

Write 6.7 × 10⁸ in ordinary decimal notation.

670,000,000

300

Which branch of physics is most directly involved in studying light, lenses, mirrors, and cameras?


Optics.

400

Why is measurement important in physics instead of simply describing something as “very fast,” “very heavy,” or “very far”?

Measurements provide quantitative, objective, and comparable information that can be tested and communicated.

400

Why would it be a problem if every country used completely different units for scientific measurements?

It would make measurements difficult to compare, communicate, reproduce, and convert, increasing the possibility of errors.

400

A car is traveling at 60 miles per hour. Using 1 mile ≈ 1.609 km, approximately how fast is it traveling in km/h?

60 × 1.609 = 96.54 km/h

400

Which number is greater: 4.5 × 10⁶ or 8.2 × 10⁵? How do you know?

4.5 × 10⁶. Its exponent is larger, so its order of magnitude is greater.

400

A company is designing a smartphone camera. Name at least two branches of physics that could be involved and explain how.

Optics → lenses and light; electromagnetism/electronics → sensors, electrical signals, and circuits.

500

Why is saying “the table is 2 long” incomplete when describing its length?

Because a numerical value needs a unit. We should say 2 meters, 2 feet, 2 centimeters, etc.

500

A NASA engineer in the United States gives a spacecraft measurement in feet, while another team uses meters. Why could this create a serious problem?

If the measurements are interpreted incorrectly or not converted properly, the teams could use incorrect values, potentially causing major engineering or mission errors.

500

A package has a mass of 10 lb. Using 1 lb ≈ 0.4536 kg, what is its mass in kilograms? If a machine can carry a maximum of 4.5 kg, can it safely carry the package?

10 × 0.4536 = 4.536 kg. No, it slightly exceeds the 4.5 kg limit.

500

A scientist measures the diameter of a cell as 0.000008 m. Express this measurement in scientific notation.

8 × 10⁻⁶ m

500

Engineers are designing an electric car. Name at least three branches of physics that could be applied during its design and explain what each contributes.

Mechanics → motion, forces, braking, suspension; electromagnetism → electric motor and circuits; thermodynamics → heat, battery temperature, and energy efficiency. Other valid answers could include materials/solid-state or fluid dynamics depending on the design aspect.