1. Agrawal, Y.C., Pottsmith, H.C., Dana, D., and Mikkelsen, O.A., 2019, Super-turbidity meter—LISST-AOBS combines optical turbidity with acoustics, in Proceedings of the 38th IAHR World Congress, Panama City, Panama, September 1–6, 2019: Bellevue, Wash., Sequoia Scientific, Inc., 6 p., accessed August 2022 at https://www.sequoiasci.com/wp-content/uploads/2019/06/Agrawal_Panama_AOBS_full_Paper.pdf.
2. Dean, D.J., Topping, D.J., Buscombe, D.D., Groten, J.T., Ziegeweid, J.R., Fitzpatrick, F.A., Lund, J.W., and Coenen, E.N., 2022, The use of continuous sediment‐transport measurements to improve sand‐load estimates in a large sand‐bedded river—The lower Chippewa River, Wisconsin: Earth Surface Processes and Landforms, v. 47, no. 8, p. 2006–2023. [Also available at http://doi.org/10.1002/esp.5360.]
3. Dietrich, W.E., 1982, Settling velocity of natural particles: Water Resources Research, v. 18, no. 6, p. 1615–1626. [Also available at https://doi.org/10.1029/WR018i006p01615.]
4. Giesen, E., 2015, Quality management for robust and reliable research: International Journal of Metrology and Quality Engineering, v. 6, no. 4, art. 407, 10 p., accessed October 2022 at https://doi.org/10.1051/ijmqe/2015029.
5. Landers, M.N., Straub, T.D., Wood, M.S., and Domanski, M.M., 2016, Sediment acoustic index method for computing continuous suspended-sediment concentrations: U.S. Geological Survey Techniques and Methods, book 3, chap. C5, 63 p. [Also available at https://doi.org/10.3133/tm3C5.]