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The image displays nitrogen oxide emissions (g/km) data by speed (kph) for four vehicles: Buses, Lorries, Petrol cars, Diesel cars. Buses: 10kph: 40g/km, 20kph: 36g/km, 30kph: 33g/km, 40kph: 30g/km, 50kph: 28g/km, 60kph: 27g/km, 70kph: 27g/km, 80kph: 29g/km, 90kph: 31g/km, 100kph: 34g/km, 110kph: 37g/km, 120kph: 40g/km, 130kph: 43g/km. Lorries: 10kph: 33g/km, 20kph: 30g/km, 30kph: 27g/km, 40kph: 25g/km, 50kph: 22g/km, 60kph: 18g/km, 70kph: 16g/km, 80kph: 18g/km, 90kph: 20g/km, 100kph: 22g/km, 110kph: 24g/km, 120kph: 26g/km, 130kph: 28g/km. Petrol cars: Between 10-130kph: consistently 10g/km. Diesel cars: 10kph: 7g/km, 20kph: 6g/km, 30kph: 5g/km, 40kph: 5g/km, 50kph: 5g/km, 60kph: 5g/km, 70kph: 5g/km, 80kph: 5g/km, 90kph: 6g/km, 100kph: 6g/km, 110kph: 7g/km, 120kph: 7g/km, 130kph: 8g/km.
Given the complexity of the image, the above description may not be entirely accurate.
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The line graph illustrates production of the nitrogen oxide emissions along with speed from four different vehicles.
In general, it is evident that buses are chiefs in this tendency. Whilst buses are increasing in production of emissions, larries are falling steadily.
Through the graph, buses are always leader starting with 40 km of oxide in 10 kph. Although, there was a huge to nearly 25 km with the spped of 60 kph. However, it increased rapidly to more than 40 km, overtaking its own goal. Meanwhile, larries started with 33 km in 10 kph, before it fell significantly to 17 km in 90 kph. After that larries experienced small changes.
Petrol car and diesel car remained stable, with 10 km and 5 km in 130 kph, respectively.
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