PREDICTING VIRUS SPREAD IN A CITY OF RESIDENTS USING THE LOGISTIC FUNCTION
Abstract & Details
Research Area
Mathematics
Keywords
COVID-19
Growth Rate
Logistic Growth Model and Bernoulli’s Equation
Abstract
The study employs the logistic growth model to predict the spread of viral outbreak, specifically virus, within a city with a population of 1,07,524 residents. Based on medical data documenting the virus’s progression from 3 to 376 infection over a span of 5 days, the growth rate is determined. Using this growth rate, the model extrapolates the expected number of infected residents after 15 days. The findings after valuable insight into the potential trajectory of the outbreak, aiding public health planning and response strategies.
License
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Attribution-ShareAlike 4.0 International License.
Author Information
| # | Name | Institute / Affiliation |
|---|---|---|
| 1 | M.Dhanalakshmi | Sri Durga Malleswara Siddhartha Mahila Kalasala, Vijayawada, A.P, India |
| 2 | K.Bhanu Priya | Sri Durga Malleswara Siddhartha Mahila Kalasala, Vijayawada, A.P, India |
| 3 | G.Jyothi | Sri Durga Malleswara Siddhartha Mahila Kalasala, Vijayawada, A.P, India |
| 4 | D.Anusha | Sri Durga Malleswara Siddhartha Mahila Kalasala, Vijayawada, A.P, India |
| 5 | I.Tejaswini | Sri Durga Malleswara Siddhartha Mahila Kalasala, Vijayawada, A.P, India |
| 6 | B.Nisha | Sri Durga Malleswara Siddhartha Mahila Kalasala, Vijayawada, A.P, India |
| 7 | Ch.Durga Bhavani | Sri Durga Malleswara Siddhartha Mahila Kalasala, Vijayawada, A.P, India |
| 8 | D.Sowmya | Sri Durga Malleswara Siddhartha Mahila Kalasala, Vijayawada, A.P, India |
How to Cite
Use the following formats to cite this article in your research.
APA Style
M.Dhanalakshmi, Priya, K.Bhanu, G.Jyothi, D.Anusha, I.Tejaswini, B.Nisha, Bhavani, Ch.Durga, & D.Sowmya (2023). PREDICTING VIRUS SPREAD IN A CITY OF RESIDENTS USING THE LOGISTIC FUNCTION. International Journal of Advance Research and Innovative Ideas In Education, 9(6), 648-651.
MLA Style
M.Dhanalakshmi, et al. "PREDICTING VIRUS SPREAD IN A CITY OF RESIDENTS USING THE LOGISTIC FUNCTION." International Journal of Advance Research and Innovative Ideas In Education, vol. 9, no. 6, 2023, pp. 648-651.
IEEE Style
M.Dhanalakshmi, K.Bhanu Priya, G.Jyothi, D.Anusha, I.Tejaswini, B.Nisha, Ch.Durga Bhavani, and D.Sowmya, "PREDICTING VIRUS SPREAD IN A CITY OF RESIDENTS USING THE LOGISTIC FUNCTION," International Journal of Advance Research and Innovative Ideas In Education, vol. 9, no. 6, pp. 648-651, 2023.
Vancouver Style
M.Dhanalakshmi, Priya K.Bhanu, G.Jyothi, D.Anusha, I.Tejaswini, B.Nisha, et al. PREDICTING VIRUS SPREAD IN A CITY OF RESIDENTS USING THE LOGISTIC FUNCTION. International Journal of Advance Research and Innovative Ideas In Education. 2023;9(6):648-651.
Harvard Style
M.Dhanalakshmi, Priya, K.Bhanu, G.Jyothi, D.Anusha, I.Tejaswini, B.Nisha, Bhavani, Ch.Durga, & D.Sowmya (2023) 'PREDICTING VIRUS SPREAD IN A CITY OF RESIDENTS USING THE LOGISTIC FUNCTION', International Journal of Advance Research and Innovative Ideas In Education, 9(6), pp. 648-651.
Chicago Style
M.Dhanalakshmi, et al. "PREDICTING VIRUS SPREAD IN A CITY OF RESIDENTS USING THE LOGISTIC FUNCTION." International Journal of Advance Research and Innovative Ideas In Education 9, no. 6 (2023): 648-651.
Turabian Style
M.Dhanalakshmi, et al. "PREDICTING VIRUS SPREAD IN A CITY OF RESIDENTS USING THE LOGISTIC FUNCTION." International Journal of Advance Research and Innovative Ideas In Education 9, no. 6 (2023): 648-651.
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