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Arosa vs Luxor

Dfc SubarcticBWh Hot desert

Comparing Arosa change · Luxor change

Bottom line

Luxor is the warmer of the two — about 22°C on the annual average; Arosa is the wetter, with 1157 mm more rain a year, and Luxor the sunnier.

Warmer Luxor 22°C on the year
Wetter Arosa 1157 mm more a year
Sunnier Luxor 51 pp less cloud
Colder winters Arosa 14°C colder nights

How the seasons compare

The differences between Arosa and Luxor, in everyday terms.

Summers

Luxor has far hotter summers

Arosa: Cool
Luxor: Extreme heat

Winters

Luxor has far milder winters

Arosa: Very cold
Luxor: Cool

Rain & snow

Arosa is much wetter

Arosa: Wet
Luxor: Very dry

Sky

Luxor is far sunnier

Arosa: Often cloudy
Luxor: Sunny

Month-by-month charts

Temperature

Luxor is the warmer of the two — about 22°C on the annual average.

-20°20°40° JanAprJulOct ArosaLuxor

Precipitation

Arosa is the wetter — about 1157 mm more across the year.

PRECIPITATION (mm) 080160 JanAprJulOct ArosaLuxor

Clear skies

Luxor has the clearer skies — the higher line.

0%25%50%75%100% JanAprJulOct ArosaLuxor

Exact monthly numbers

Tap a metric to open its full table. Desktop shows all twelve months; on a phone each metric splits into Jan–Jun and Jul–Dec.

Avg high (°C) Luxor runs higher most of the year
JanFebMarAprMayJunJulAugSepOctNovDec
Arosa-0-0251014161612930
Luxor232530353941414139352924
Difference+23+26+28+30+29+28+26+26+28+27+26+24
Jan – JunJanFebMarAprMayJun
Arosa-0-0251014
Luxor232530353941
Difference+23+26+28+30+29+28
Jul – DecJulAugSepOctNovDec
Arosa161612930
Luxor414139352924
Difference+26+26+28+27+26+24
Avg low (°C) Luxor runs higher most of the year
JanFebMarAprMayJunJulAugSepOctNovDec
Arosa-7-8-5-2368852-3-6
Luxor791317222526252319138
Difference+14+16+18+19+19+19+18+17+19+18+16+14
Jan – JunJanFebMarAprMayJun
Arosa-7-8-5-236
Luxor7913172225
Difference+14+16+18+19+19+19
Jul – DecJulAugSepOctNovDec
Arosa8852-3-6
Luxor26252319138
Difference+18+17+19+18+16+14
Precipitation (mm) Arosa runs higher most of the year
JanFebMarAprMayJunJulAugSepOctNovDec
Arosa7765737797132136158104909080
Luxor2022120001130
Difference-75-64-72-75-85-132-136-158-103-89-87-80
Jan – JunJanFebMarAprMayJun
Arosa7765737797132
Luxor2022120
Difference-75-64-72-75-85-132
Jul – DecJulAugSepOctNovDec
Arosa136158104909080
Luxor001130
Difference-136-158-103-89-87-80
Cloud cover (%) Arosa runs higher most of the year
JanFebMarAprMayJunJulAugSepOctNovDec
Arosa687072757569626163657070
Luxor242525272410989111522
Difference-43-45-47-48-50-60-53-53-55-54-55-48
Jan – JunJanFebMarAprMayJun
Arosa687072757569
Luxor242525272410
Difference-43-45-47-48-50-60
Jul – DecJulAugSepOctNovDec
Arosa626163657070
Luxor989111522
Difference-53-53-55-54-55-48
Relative humidity (%) Arosa runs higher most of the year
JanFebMarAprMayJunJulAugSepOctNovDec
Arosa888987807979808183848788
Luxor463727201818202125304047
Difference-43-52-60-60-61-61-60-60-58-54-47-41
Jan – JunJanFebMarAprMayJun
Arosa888987807979
Luxor463727201818
Difference-43-52-60-60-61-61
Jul – DecJulAugSepOctNovDec
Arosa808183848788
Luxor202125304047
Difference-60-60-58-54-47-41

How both climates are changing

Both cities are warming. Each city has its own warming trend; see its trends page for the year-by-year detail. Arosa trends → · Luxor trends →

Methodology & sources

Arosa

Temperature & precipitation — the official 1991–2020 climate normals from a national meteorological service, measured at Arosa, about 2 km from the city centre.

Cloud, humidity, wind & sunshine — modelled estimates from NASA POWER, NASA's satellite-and-reanalysis climatology. This is the standard global source for atmospheric variables, which are not measured at most weather stations.

Luxor

Temperature & precipitation — 1991–2020 normals computed from 30 years of daily observations at Luxor Intl, a weather station, about 7 km from the city centre. The underlying daily records come from NOAA's global station network.

Cloud, humidity, wind & sunshine — modelled estimates from NASA POWER, NASA's satellite-and-reanalysis climatology. This is the standard global source for atmospheric variables, which are not measured at most weather stations.

How we build these numbers →