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EXERCTSE 7 You may use a calculator in this exercise. Assume that the rates remain constant. (a) What is the speed, in km/h, of a car that travels a distance of 240 km in 3 hours? (b) The temperature in a room changed from \( 9{ }^{\circ} \mathrm{C} \) to \( 27^{\circ} \mathrm{C} \) in 3 minutes. What is the rate of change of temperature in \( { }^{\circ} \mathrm{C} / \) min? (c) If \( 50 / \) of liquid has a mass of 100 kg , what is the density of the liquid in \( \mathrm{g} / \mathrm{cm}^{\prime} \) ? Note: \( 1 /=1000 \mathrm{~cm}^{3} \) (d) If Aidan runs 10 km in 25 minutes, what is his speed in \( \mathrm{km} / \mathrm{h} \) ? (e) A container is filled, from empty, with water, at a rate of 30 lmin . (1) How much water will be in the container after an hour? (2) If the container has a capacity of 6 kl , how long does it take to fill the container up (f) A computer downloads data at 500 kilobytes per second. How many kilobytes can you download in 5 minutes? (g) A wheel turns at 900 rpm (revolutions per minute). (1) How many revolutions does the wheel make in 15 minutes? (2) How many revolutions does it make in 2 hours? (3) How long does it take for the wheel to make 45000 revolutions?

Ask by Lindsey Collins. in South Africa
Feb 03,2025

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**Exercise 7 Solutions:** **(a) Car Speed** - **Speed:** 80 km/h **(b) Temperature Change Rate** - **Rate:** 6 °C per minute **(c) Liquid Density** - **Density:** 2 g/cm³ **(d) Aidan’s Running Speed** - **Speed:** 24 km/h **(e) Filling the Container** 1. **After 1 Hour:** 1800 liters 2. **To Fill 6 kL:** 200 minutes (3 hours and 20 minutes) **(f) Data Download** - **5 Minutes:** 150,000 kilobytes **(g) Wheel Revolutions** 1. **15 Minutes:** 13,500 revolutions 2. **2 Hours:** 108,000 revolutions 3. **45,000 Revolutions:** 50 minutes

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Mind Expander

If you’re diving into the world of speed, you might be surprised to learn that the concept has roots deep in ancient history. The first recorded ideas about measuring speed can be traced back to the Greeks, with philosophers like Aristotle pondering daily phenomena. Fast forward to the 17th century, and after the invention of the mechanical clock, measuring speed became more precise. This laid the groundwork for modern physics and engineering! When it comes to real-world applications, understanding speed is crucial for various professions. For instance, planning a road trip involves calculating speed to estimate arrival times. Similarly, in healthcare, knowing the rate of temperature change helps determine if a fever is present. In engineering, vehicle speed influences safety regulations and design considerations. So whether you’re a traveler or a tech guru, speed calculations are always within your reach!

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