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Open Access
June 26, 2025
Mathematical modelling of the impact of HIV prevention strategies among female sex workers on public health in Burkina Faso
Serge M. A. SOMDA
,
Bernard E. A. DABONÉ
,
Boureima SANGARÉ
,
Sado TRAORÉ
Journal of Mathematics Letters
2025
,
3(1),
22-40.
DOI:
10.31586/jml.2025.6104
Views
384
Downloads
33
Abstract
This article presents a mathematical model designed to simulate the impact of targeted interventions aimed at preventing HIV transmission among female sex workers (FSWs) and their clients, while also analyzing their effects on the health of the general population. The compartmental model distinguishes between high-risk populations (FSWs and their clients) and low-risk populations (sexually active
[...] Read more.
This article presents a mathematical model designed to simulate the impact of targeted interventions aimed at preventing HIV transmission among female sex workers (FSWs) and their clients, while also analyzing their effects on the health of the general population. The compartmental model distinguishes between high-risk populations (FSWs and their clients) and low-risk populations (sexually active men and women in the general population), and links prevention efforts in high-risk groups to the evolution of the epidemic in the low-risk population. The fundamental properties of the model, such as the positivity of solutions and the boundedness of the system, have been verified, and the basic reproduction number R
0
has been calculated. Finally, the stability of the model was studied using Varga’s theorem and the Lyapunov method. Simulation results show that targeted prevention among FSWs and their clients reduces HIV incidence in the general population. This framework provides a valuable tool for guiding policymakers in the design of effective strategies to combat the epidemic, especially relevant in the context of suspension of USAID funding.
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Open Access
June 02, 2025
Residual Sets and the Density of Binary Goldbach Representations
Daniel Sankei
,
Loyford Njagi
,
Josephine Mutembei
,
Grace Gakii
Journal of Mathematics Letters
2025
,
3(1),
1-21.
DOI:
10.31586/jml.2025.6091
Views
770
Downloads
69
Abstract
A residual-set framework is introduced for analyzing additive prime conjectures, with particular emphasis on the Strong Goldbach Conjecture (SGC). For each even integer
E
n
≥
4
, the residual set
[...] Read more.
A residual-set framework is introduced for analyzing additive prime conjectures, with particular emphasis on the Strong Goldbach Conjecture (SGC). For each even integer
E
n
≥
4
, the residual set
ℛ
(
E
n
)
=
{
E
n
−
p
∣
p
<
E
n
,
p
∈
ℙ
}
is defined, and the universal residual set
ℛ
E
=
∪
E
n
ℛ
(
E
n
)
is constructed. It is shown that
ℛ
E
contains infinitely many primes. A nontrivial constructive lower bound is derived, establishing that the number of Goldbach partitions satisfies
G
(
E
)
≥
2
for all
E
≥
8
, and that the cumulative partition count satisfies
∑
E
≤
N
G
(
E
)
≫
N
2
log
4
N
. An optimized deterministic algorithm is implemented to verify the SGC for even integers up to 16,000 digits. Each computed partition
E
n
=
p
+
q
is validated using elliptic curve primality testing, and no exceptions are observed. Runtime variability observed in the empirical tests corresponds with known fluctuations in prime density and modular residue distribution. A recursive construction is formulated for generating Goldbach partitions, using residual descent and leveraging properties of the residual sets. The method extends naturally to Lemoine's Conjecture, asserting that every odd integer
n
≥
7
can be expressed as
n
=
p
+
2
q
, where
p
,
q
∈
ℙ
. A corresponding residual formulation is developed, and it is proven that at least two valid partitions exist for all
n
≥
9
. Comparative analysis with the Hardy-Littlewood and Chen estimates is provided to contextualize the cumulative growth rate. The residual-set methodology offers a deterministic, scalable, and structurally grounded approach to additive problems in prime number theory, supported by both theoretical results and large-scale computational evidence.
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Open Access
February 04, 2025
The Use of Differentiated Instruction to Achieve Culturally Responsive Teaching
Monica Gakii Ituma
Open Journal of Educational Research
2025
,
5(1),
13-30.
DOI:
10.31586/ojer.2025.1234
Views
12441
Downloads
481
Abstract
With an increasing diversity of learners in today’s educational set-ups, there is an insurmountable need to cater for individual differences including the cultural variations among learners. It is therefore necessary for educators to develop culturally responsive teaching that enhances intercultural competencies of learners. As educators strive to provide inclusive learning environments in which
[...] Read more.
With an increasing diversity of learners in today’s educational set-ups, there is an insurmountable need to cater for individual differences including the cultural variations among learners. It is therefore necessary for educators to develop culturally responsive teaching that enhances intercultural competencies of learners. As educators strive to provide inclusive learning environments in which learners from diverse cultural backgrounds learn equitably, differentiated instruction becomes a practical tool. This paper explores how differentiated instruction can support and enhance culturally responsive teaching by examining how tailored instructional approaches can bridge cultural gaps and enhance educational outcomes. The aim is to provide a comprehensive understanding of how educators can effectively integrate differentiated instructional methodologies to achieve the goals of Culturally Responsive Teaching. The study used a descriptive survey design to determine the use of differentiated instruction by junior school teachers in Kenya and a systematic review of literature, practical examples, and studies on teachers’ practices in culturally responsive teaching. The study outcomes indicated that teachers used various differentiated instructional strategies with flexible grouping being the most commonly used strategy. However, there arises a concern, that teachers were not very familiar with cultural variations of learners in their classrooms even as they developed their differentiated instructional strategies. Literature provided the principles and practices of culturally responsive teaching. The combination of these results were used to formulate a conceptual framework for Culturally Responsive Differentiated Instruction (CRDI) that provides insights for practitioners to develop and implement culturally responsive differentiated instructional strategies. The study recommends that a framework to support teachers in the implementation of inclusive and equitable curriculum through CRDI be developed, CRDI be integrated into the teaching processes and the teachers be trained on providing for learner differences through CRDI.
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Open Access
January 10, 2025
Artificial Immune Systems: A Bio-Inspired Paradigm for Computational Intelligence
Praveen Kumar Myakala
,
Chiranjeevi Bura
,
Anil Kumar Jonnalagadda
Journal of Artificial Intelligence and Big Data
2025
,
5(1),
1-13.
DOI:
10.31586/jaibd.2025.1233
Views
4949
Downloads
127
Abstract
Artificial Immune Systems (AIS) are bio-inspired computational frameworks that emulate the adaptive mechanisms of the human immune system, such as self/non-self discrimination, clonal selection, and immune memory. These systems have demonstrated significant potential in addressing complex challenges across optimization, anomaly detection, and adaptive system control. This paper provides a
[...] Read more.
Artificial Immune Systems (AIS) are bio-inspired computational frameworks that emulate the adaptive mechanisms of the human immune system, such as self/non-self discrimination, clonal selection, and immune memory. These systems have demonstrated significant potential in addressing complex challenges across optimization, anomaly detection, and adaptive system control. This paper provides a comprehensive exploration of AIS applications in domains such as cybersecurity, resource allocation, and autonomous systems, highlighting the growing importance of hybrid AIS models. Recent advancements, including integrations with machine learning, quantum computing, and bioinformatics, are discussed as solutions to scalability, high-dimensional data processing, and efficiency challenges. Core algorithms, such as the Negative Selection Algorithm (NSA) and Clonal Selection Algorithm (CSA), are examined, along with limitations in interpretability and compatibility with emerging AI paradigms. The paper concludes by proposing future research directions, emphasizing scalable hybrid frameworks, quantum-inspired approaches, and real-time adaptive systems, underscoring AIS's transformative potential across diverse computational fields.
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