Georgia vs Hungary: Cumulative CO₂ emissions from land-use change, annual growth rate
Georgia
-1.79 % change on previous year
in 2024
Hungary
-1.78 % change on previous year
in 2024
Georgia rank
174th
Hungary rank
173rd
Cumulative CO₂ emissions from land-use change, annual growth rate over time
- Georgia
- Hungary
How they compare
Hungary currently reports -1.78 % change on previous year against -1.79 % change on previous year in Georgia, a difference of 0.01 % change on previous year.
The two have swapped places 9 times across 174 shared years of data; in 1851 it was Georgia ahead.
Georgia ranks 174th and Hungary ranks 173rd of 188 countries.
Across the 18 decades both report, Georgia averaged higher in 5 and Hungary in 13.
Head to head by decade
| Decade | Georgia | Hungary | Difference | Ahead |
|---|---|---|---|---|
| 1850s | 31.21 % change on previous year | 29.43 % change on previous year | 1.79 % change on previous year | Georgia |
| 1860s | 7.08 % change on previous year | 5.84 % change on previous year | 1.25 % change on previous year | Georgia |
| 1870s | 4 % change on previous year | 3.9 % change on previous year | 0.1043 % change on previous year | Georgia |
| 1880s | 2.75 % change on previous year | 2.73 % change on previous year | 0.0202 % change on previous year | Georgia |
| 1890s | 1.93 % change on previous year | 2.37 % change on previous year | 0.4352 % change on previous year | Hungary |
| 1900s | 1.46 % change on previous year | 1.73 % change on previous year | 0.2722 % change on previous year | Hungary |
| 1910s | 0.8001 % change on previous year | 1.02 % change on previous year | 0.2149 % change on previous year | Hungary |
| 1920s | 0.3333 % change on previous year | 1.06 % change on previous year | 0.7222 % change on previous year | Hungary |
| 1930s | 1.8 % change on previous year | 0.8782 % change on previous year | 0.9242 % change on previous year | Georgia |
| 1940s | -0.7682 % change on previous year | 0.3894 % change on previous year | 1.16 % change on previous year | Hungary |
| 1950s | -4.17 % change on previous year | -0.036 % change on previous year | 4.13 % change on previous year | Hungary |
| 1960s | -8.97 % change on previous year | -0.214 % change on previous year | 8.75 % change on previous year | Hungary |
| 1970s | -28 % change on previous year | -0.3854 % change on previous year | 27.61 % change on previous year | Hungary |
| 1980s | -72.93 % change on previous year | -0.411 % change on previous year | 72.51 % change on previous year | Hungary |
| 1990s | -6.35 % change on previous year | -0.6821 % change on previous year | 5.67 % change on previous year | Hungary |
| 2000s | -4.22 % change on previous year | -0.9344 % change on previous year | 3.28 % change on previous year | Hungary |
| 2010s | -3.38 % change on previous year | -1.39 % change on previous year | 2 % change on previous year | Hungary |
| 2020s | -2.07 % change on previous year | -1.38 % change on previous year | 0.6899 % change on previous year | Hungary |
Averages of every year both report within each decade.
Frequently asked questions
- Which has higher cumulative co₂ emissions from land-use change, annual growth rate, Georgia or Hungary?
- Hungary, at -1.78 % change on previous year against -1.79 % change on previous year in Georgia as of 2024.
- What is the difference in cumulative co₂ emissions from land-use change, annual growth rate between Georgia and Hungary?
- 0.01 % change on previous year, with Hungary ahead.
- How many years of comparable data are there for Georgia and Hungary?
- 174 years are reported by both, from 1851 to 2024.
- How do Georgia and Hungary rank globally for cumulative co₂ emissions from land-use change, annual growth rate?
- Georgia ranks 174th and Hungary ranks 173rd of 188 countries.
- Where does this data come from?
- Statizoid (derived), published as Cumulative CO₂ emissions from land-use change, 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 Cumulative CO₂ emissions from land-use change. Computed from consecutive annual observations; years either side of a gap are skipped rather than bridged.