This market will resolve to the temperature range that contains the highest temperature recorded by NOAA at the Kuala Lumpur Intl Airport Station in degrees Celsius on 6 Sep '26. The resolution source for this market will be information from NOAA, specifically the highest reading under the "Temp" column for all times on this day, available here: https://www.weather.gov/wrh/timeseries?site=wmkk If NOAA data for the observation date is unavailable by 11:59 PM ET on the day following the observation date, the Weather Underground Daily Observations table will be used as the resolution source. In the event that there is no data for the observation date by 11:59 PM ET on the day following the observation date, this market will resolve to the lowest bracket. To toggle between Fahrenheit and Celsius, click the "Switch to Metric Units" button until the relevant table displays °C. This market will resolve once the first data point for the following date has been published on the resolution source, or by 11:59 PM ET on the day following the observation date, whichever comes first. The resolution source for this market measures temperatures to whole degrees Celsius (eg, 9°C). Thus, this is the level of precision that will be used when resolving the market. Revisions to temperatures recorded within this market's timeframe will be considered until the first datapoint for the following date has been published, after which any alterations will not be considered.
Current forecast models from agencies including the Malaysian Meteorological Department and international sources project a daytime high of 33–34°C in Kuala Lumpur on September 6, driven by mostly sunny conditions, light southerly winds, and low precipitation chances that limit evaporative cooling. This aligns with September climatology, where mean maximum temperatures average near 32°C at stations like Sultan Abdul Aziz Shah Airport, though recent haze and reduced cloud cover have supported slightly elevated readings in the prior days. Trader consensus favoring 34°C (55.5% implied probability) over 35°C (31%) reflects model agreement on peak afternoon values without strong intensification signals, with resolution hinging on official 24-hour maximum observations.