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International Journal of Trend in Scientific Research and Development (IJTSRD) @ www.ijtsrd.com eISSN: 2456-6470
Dependent Variables
1. Customer Adoption: Measured by the number of customers using on-demand fuel delivery services.
2. Customer Retention: Measured by customer loyalty and repeat business.
3. Environmental Impact: Measured by the reduction in carbon emissions and improvement in air quality.
Moderating Variables
1. Technological Advancements: Measured by the use of mobile apps, GPS tracking, and data analytics.
2. Government Regulations: Measured by policies and laws supporting or hindering the adoption of on-demand fuel delivery
services.
3. Market Competition: Measured by the number of competitors in the market and their market share.
Research Methodology References:
1. Survey Research: A survey of customers who use on- [1] Lee, J., Kim, S., & Choi, Y. (2020). On-demand fuel
demand fuel delivery services to gather data on their delivery systems: A comprehensive guide. Springer.
experiences, satisfaction, and perceptions of the service.
[2] Singh, R., Kumar, A., & Singh, S. (2019). Fuel delivery
2. Case Study: An in-depth case study of an on-demand fuel systems: A study on on-demand fuel delivery services.
delivery company to gather data on their operations, CRC Press.
logistics, and sustainability practices.
[3] "On-demand fuel delivery market size, share & trends
3. Data Analytics: Analysis of data from the survey and case analysis report by type (gasoline, diesel), by
study to identify trends, patterns, and correlations. application (passenger vehicles, commercial vehicles),
by region, and segment forecasts, 2020 - 2027." Grand
Conclusion
View Research.
On-Demand Fuel Delivery Systems represent a innovative
solution for the fuel retail industry. Our research [4] "On-demand fuel delivery services: A review of the
demonstrates the benefits of convenience, efficiency, and current state and future directions." ResearchGate.
sustainability offered by these systems. As the industry [5]
continues to evolve, it is essential to address the challenges Lee, J., Kim, S., & Choi, Y. (2020). On-demand fuel
delivery system and method. US Patent 10,533,311.
and limitations associated with On-Demand Fuel Delivery
Systems, ensuring a sustainable and customer-centric future [6] Singh, R., Kumar, A., & Singh, S. (2019). Fuel delivery
for the fuel retail industry. system and method. US Patent 10,245,311.
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