Cuba vs Ecuador: Closed shrubland — Emissions (N2O), annual growth rate
Cuba
-100 % change on previous year
in 2021
Ecuador
-100 % change on previous year
in 2018
Cuba rank
29th
Ecuador rank
29th
Closed shrubland — Emissions (N2O), annual growth rate over time
- Cuba
- Ecuador
How they compare
Cuba currently reports -100 % change on previous year against -100 % change on previous year in Ecuador, a difference of 0 % change on previous year.
The two have swapped places 5 times across 12 shared years of data; in 1991 it was Ecuador ahead.
Cuba ranks 29th and Ecuador ranks 29th of 135 countries.
Across the 2 decades both report, Cuba averaged higher in 1 and Ecuador in 1.
Head to head by decade
| Decade | Cuba | Ecuador | Difference | Ahead |
|---|---|---|---|---|
| 1990s | 104.81 % change on previous year | 25.74 % change on previous year | 79.07 % change on previous year | Cuba |
| 2000s | 1.18 % change on previous year | 22.73 % change on previous year | 21.55 % change on previous year | Ecuador |
Averages of every year both report within each decade.
Frequently asked questions
- Which has higher closed shrubland — emissions (n2o), annual growth rate, Cuba or Ecuador?
- Cuba, at -100 % change on previous year against -100 % change on previous year in Ecuador as of 2021.
- What is the difference in closed shrubland — emissions (n2o), annual growth rate between Cuba and Ecuador?
- 0 % change on previous year, with Cuba ahead.
- How many years of comparable data are there for Cuba and Ecuador?
- 12 years are reported by both, from 1991 to 2002.
- How do Cuba and Ecuador rank globally for closed shrubland — emissions (n2o), annual growth rate?
- Cuba ranks 29th and Ecuador ranks 29th of 135 countries.
- Where does this data come from?
- Statizoid (derived), published as Closed shrubland — Emissions (N2O), annual growth rate. Statizoid refreshes it automatically from the source and publishes the full history for both places.
Individual pages
About this data
The year-on-year percentage change in Closed shrubland — Emissions (N2O). Computed from consecutive annual observations; years either side of a gap are skipped rather than bridged.