In Kocani, North Macedonia, walking is the predominant mode of transportation, with 100% of commuters choosing this method. The city's traffic indexes reflect minimal CO2 emissions and inefficiencies, making it an environmentally friendly place to navigate.
Traffic patterns in Kocani remain consistent throughout the year due to the dominance of walking. Seasonal weather changes have minimal impact on commuting times.
Limited public transportation options may inconvenience those unable to walk long distances. Adverse weather conditions could pose challenges for pedestrians.
Any time of day is suitable for travel in Kocani, given the reliance on walking. Avoiding peak sun hours in summer can enhance comfort for pedestrians.
Public events in Kocani may lead to temporary increases in foot traffic. Local festivals can attract more visitors, slightly extending walking times.
Kocani's focus on pedestrian pathways supports its low carbon footprint. The city encourages walking through well-maintained sidewalks and pedestrian zones.
Ride-sharing services have a minimal presence in Kocani due to the city's walkability. The demand for ride-sharing is low, aligning with the city's sustainable transport goals.
The Traffic Index for North Macedonia combines user-contributed data on commute times, traffic dissatisfaction, CO2 emissions, and traffic system inefficiencies in North Macedonia, to provide insights into overall traffic conditions.
Promoting walking as a primary mode of transport can significantly reduce CO2 emissions.
Kocani serves as a model for cities aiming to enhance sustainability through pedestrian-friendly infrastructure.
Kocani boasts a CO2 emission index of 0, indicating a highly sustainable environment.
The city's reliance on walking contributes to its low environmental impact.
TimeThe time index for Kocani is 20, reflecting efficient travel times within the city.
Commuters experience minimal delays, primarily due to the simplicity of walking.
InefficiencyWith an inefficiency index of 0, Kocani's transportation system is highly effective.
The absence of vehicular traffic reduces potential inefficiencies.