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T51 Group 6 Technical Paper References

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LITERATURE CITED

Botré, C., Crescenzi, V. L., Liquori, A. M., & Mele, A. (1959). Concentration gradient and diffusion potential in colloidal electrolyte solutions - Transactions of the Faraday Society (RSC Publishing). Concentration Gradient and Diffusion Potential in Colloidal Electrolyte Solutions - Transactions of the Faraday Society (RSC Publishing); pubs.rsc. Retrieved June 14, 2022, from pubs.rsc/en/content/articlelanding/1959/tf/tf

Manning., J. R (1961). Diffusion in a Chemical Concentration Gradient. National Bureau of Standards, Washington, D. C. Retrieved from journals.aps/pr/abstract/10.1103/PhysRev.124.

Rusiso., Giovanni. (1990). Deterministic diffusion of particles. Online library. onlinelibrary.wiley/doi/10.1002/cpa.

Falconer et al. (2022). Diffusion I | Chemistry | Visionlearning. Visionlearning; visionlearning. visionlearning/en/library/Chemistry/1/Diffusion-I/

Zaragoza, A., Gonzalez, M. A., Joly, L., López-Montero, I., Canales, M. A., Benavides, A. L., & Valeriani, C. (2019, May 23). Molecular dynamics study of nanoconfined water: how confinement and temperature affect diffusion and viscosity - Physical Chemistry Chemical Physics (RSC Publishing). Retrieved from pubs.rsc/en/content/articlelanding/2019/cp/c9cp02485a/unauth

Biology Libre Texts. (2018, July 10). Passive Transport - Diffusion - Biology LibreTexts. Biology LibreTexts; bio.libretexts. Retrieved from bio.libretexts/Bookshelves/Introductory_and_General_Biology/Book %3A_General_Biology_(Boundless)/05%3A_Structure_and_Function_of_Plasma_Me mbranes/5%3A_Passive_Transport_-_Diffusion

Graham, T. (1829). A short account of experimental researches on the diffusion of gases through each other, and their separation by mechanical means. Quarterly Journal of Science, Literature, and Art, 2, 74–83.

Siskin, T. J. (2022). What Is the Relationship Between the Size of the Molecules & Diffusion Through the Cell Membrane? | Education - Seattle PI. Education - Seattle PI; education.seattlepi. education.seattlepi/relationship-between-size- molecules-diffusion-through-cell-membrane-5017

Vedantu. (2022). Describe any four factors affecting the diffusion class 12 chemistry CBSE. Describe Any Four Factors Affecting the Diffusion Class 12 Chemistry CBSE; vedantu. vedantu/question-answer/describe-any-four- factors-affecting-the-class-12-chemistry-cbse-5f74cb6bfb68fa34b4006d3b

SCIENCING. (2018, August 6). Four Things That Affect Rate of Diffusion. Sciencing; sciencing. sciencing/difference-between-active-passive-transport- processes-10031095

Mathijssen, A. J. (2021, March 26). Active carpets drive non-equilibrium diffusion and enhanced molecular fluxes - PubMed. PubMed; pubmed.ncbi.nlm.nih. pubmed.ncbi.nlm.nih/33771985/

Endow S. A., Russell A. P. (2015). BASICS: Biophysics - A Step-by-step Introduction to Concept for Students. Biophysical Society. Retrieved from biophysics/Portals/0/BPSAssets/Education/Documents/LessonPlanDiff usion_122115sm

Ball, D. W., & Key, J. A. (2016). Molecular Effusion and Diffusion – Introductory Chemistry – 1st Canadian Edition. Molecular Effusion and Diffusion – Introductory Chemistry – 1st Canadian Edition; opentextbc. opentextbc/introductorychemistry/chapter/molecular-effusion-and-diffusion/

Pineda, B. (2015). Using computer simulations as a pre-training activity in a hands-on lab to help community college students improve their understanding of physics. Doctoral Dissertations, 292. repository.usfca/diss/292/

Potane, J., & Bayeta, R. J. (2018). Virtual learning through PhET interactive simulation: a proactive approach for improving student's academic achievement in science. SSRN Electronic Journal. doi/10.2139/ssrn.

Nkemakolam, O. E., Chinelo, O. F., & Jane, M. C. (2018). Effect of computer simulations on secondary school students' academic achievement in chemistry in Anambra state. Asian Journal of Education and Training, 4(4), 284–289. doi/10.20448/journal.522.2018.44.284.

Mrani, C. A., Hajjami, A. E., & Khattabi, K. E. (2020). Effects of the integration of PhET simulation in the teaching and learning of the physical sciences of common core (Morocco). Universal Journal of Educational Research, 8(7), 3014–3025. doi/10.13189/ujer.2020.

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T51 Group 6 Technical Paper References

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LITERATURE CITED
Botré, C., Crescenzi, V. L., Liquori, A. M., & Mele, A. (1959). Concentration gradient and
diffusion potential in colloidal electrolyte solutions - Transactions of the Faraday
Society (RSC Publishing). Concentration Gradient and Diffusion Potential in Colloidal
Electrolyte Solutions - Transactions of the Faraday Society (RSC Publishing);
pubs.rsc.org. Retrieved June 14, 2022, from
https://pubs.rsc.org/en/content/articlelanding/1959/tf/tf9595501975
Manning., J. R (1961). Diffusion in a Chemical Concentration Gradient. National Bureau of
Standards, Washington, D. C. Retrieved from
https://journals.aps.org/pr/abstract/10.1103/PhysRev.124.470
Rusiso., Giovanni. (1990). Deterministic diffusion of particles. Online library.wiley.
https://onlinelibrary.wiley.com/doi/10.1002/cpa.3160430602
Falconer et al. (2022). Diffusion I | Chemistry | Visionlearning. Visionlearning;
www.visionlearning.com.
https://www.visionlearning.com/en/library/Chemistry/1/Diffusion-I/216
Zaragoza, A., Gonzalez, M. A., Joly, L., López-Montero, I., Canales, M. A., Benavides, A. L.,
& Valeriani, C. (2019, May 23). Molecular dynamics study of nanoconfined water: how
confinement and temperature affect diffusion and viscosity - Physical Chemistry
Chemical Physics (RSC Publishing). Retrieved from
https://pubs.rsc.org/en/content/articlelanding/2019/cp/c9cp02485a/unauth
Biology Libre Texts. (2018, July 10). Passive Transport - Diffusion - Biology LibreTexts.
Biology LibreTexts; bio.libretexts.org. Retrieved from
https://bio.libretexts.org/Bookshelves/Introductory_and_General_Biology/Book
%3A_General_Biology_(Boundless)/05%3A_Structure_and_Function_of_Plasma_Me
mbranes/5.06%3A_Passive_Transport_-_Diffusion