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Branching and oscillations in the epigenetic landscape of cell-fate  determination | bioRxiv
Branching and oscillations in the epigenetic landscape of cell-fate determination | bioRxiv

Transmission of Respiratory Infectious Diseases between Neighboring Cities  using Agent-based Model and Compartmental Model | medRxiv
Transmission of Respiratory Infectious Diseases between Neighboring Cities using Agent-based Model and Compartmental Model | medRxiv

Branching and oscillations in the epigenetic landscape of cell-fate  determination | bioRxiv
Branching and oscillations in the epigenetic landscape of cell-fate determination | bioRxiv

A mathematical model of COVID-19 transmission between frontliners and the  general public | SpringerLink
A mathematical model of COVID-19 transmission between frontliners and the general public | SpringerLink

Transmission of Respiratory Infectious Diseases between Neighboring Cities  using Agent-based Model and Compartmental Model | medRxiv
Transmission of Respiratory Infectious Diseases between Neighboring Cities using Agent-based Model and Compartmental Model | medRxiv

A mathematical model of COVID-19 transmission between frontliners and the  general public | SpringerLink
A mathematical model of COVID-19 transmission between frontliners and the general public | SpringerLink

A mathematical model of COVID-19 transmission between frontliners and the  general public | medRxiv
A mathematical model of COVID-19 transmission between frontliners and the general public | medRxiv

A COVID-19 Infection Risk Model for Frontline Health Care Workers | medRxiv
A COVID-19 Infection Risk Model for Frontline Health Care Workers | medRxiv

A mathematical model of COVID-19 transmission between frontliners and the  general public | SpringerLink
A mathematical model of COVID-19 transmission between frontliners and the general public | SpringerLink

A mathematical model of COVID-19 transmission between frontliners and the  general public | SpringerLink
A mathematical model of COVID-19 transmission between frontliners and the general public | SpringerLink

Exaggerated evolution of male armaments via male–male competition -  Areja‐Gavina - - Ecology and Evolution - Wiley Online Library
Exaggerated evolution of male armaments via male–male competition - Areja‐Gavina - - Ecology and Evolution - Wiley Online Library

Antibiotic-driven escape of host in a parasite-induced Red Queen dynamics |  Royal Society Open Science
Antibiotic-driven escape of host in a parasite-induced Red Queen dynamics | Royal Society Open Science

A numerical model of Philippine population growth: child policy,  quantitative insights and challenges
A numerical model of Philippine population growth: child policy, quantitative insights and challenges

Antibiotic-driven escape of host in a parasite-induced Red Queen dynamics |  Royal Society Open Science
Antibiotic-driven escape of host in a parasite-induced Red Queen dynamics | Royal Society Open Science

Branching and oscillations in the epigenetic landscape of cell-fate  determination | bioRxiv
Branching and oscillations in the epigenetic landscape of cell-fate determination | bioRxiv

A mathematical model of COVID-19 transmission between frontliners and the  general public | medRxiv
A mathematical model of COVID-19 transmission between frontliners and the general public | medRxiv

A mathematical model of COVID-19 transmission between frontliners and the  general public | medRxiv
A mathematical model of COVID-19 transmission between frontliners and the general public | medRxiv

Branching and oscillations in the epigenetic landscape of cell-fate  determination | bioRxiv
Branching and oscillations in the epigenetic landscape of cell-fate determination | bioRxiv

A numerical model of Philippine population growth: child policy,  quantitative insights and challenges
A numerical model of Philippine population growth: child policy, quantitative insights and challenges