C. Elegans 'Omics Jay Yeam Mathematical modeling Organismal Cell Bio linear plasmids Proteostasis hybridization Signaling pathways Heart Development Mycorrhizal Fungi Post- doc Glioblastoma Neuro Mosquitoes cancer bio Arabidopsis Climate change actin E. Coli Eco/Evo Biophysics Cell- cycle Vector- Borne Disease proteomics cell polarity population models Cell Size mouse work Grad Student epigenetics lysosome Molecular cytoskeleton Plant Bio RNA- seq Field Work Lyme Disease Professor Microscopy C. Elegans 'Omics Jay Yeam Mathematical modeling Organismal Cell Bio linear plasmids Proteostasis hybridization Signaling pathways Heart Development Mycorrhizal Fungi Post- doc Glioblastoma Neuro Mosquitoes cancer bio Arabidopsis Climate change actin E. Coli Eco/Evo Biophysics Cell- cycle Vector- Borne Disease proteomics cell polarity population models Cell Size mouse work Grad Student epigenetics lysosome Molecular cytoskeleton Plant Bio RNA- seq Field Work Lyme Disease Professor Microscopy
(Print) Use this randomly generated list as your call list when playing the game. There is no need to say the BINGO column name. Place some kind of mark (like an X, a checkmark, a dot, tally mark, etc) on each cell as you announce it, to keep track. You can also cut out each item, place them in a bag and pull words from the bag.
C. Elegans
'Omics
Jay Yeam
Mathematical modeling
Organismal
Cell Bio
linear plasmids
Proteostasis
hybridization
Signaling pathways
Heart Development
Mycorrhizal Fungi
Post-doc
Glioblastoma
Neuro
Mosquitoes
cancer bio
Arabidopsis
Climate change
actin
E. Coli
Eco/Evo
Biophysics
Cell-cycle
Vector-Borne Disease
proteomics
cell polarity
population models
Cell Size
mouse work
Grad Student
epigenetics
lysosome
Molecular
cytoskeleton
Plant Bio
RNA-seq
Field Work
Lyme Disease
Professor
Microscopy