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section of this report, and Photo 1-1 and Photo 1-2 show highwall conditions as of <br /> December 2019. <br /> 1.3 Scope of Work <br /> The following scope of work (SOW) was included by GEI as part of the South and West <br /> Quarry highwall evaluation: <br /> • Establish site topography; <br /> • Perform onsite geological mapping and develop an updated three-dimensional (313) <br /> geological model of the South, Central, and West Quarries, specifically highlighting <br /> the extents of sillimanitic gneiss and mafic dikes; <br /> • Evaluate subsurface information obtained by GEI and others, and perform laboratory <br /> testing to evaluate engineering characteristics of bedrock material from rock cores <br /> and grab samples; <br /> • Conduct stability analyses for global and local conditions with various highwall <br /> configurations for the South and West Quarries; and <br /> • Provide recommendations for the maximum highwall to bench ratio that can be mined <br /> within the mining cells. <br /> A series of kinematic, limit equilibrium, and finite difference stability analyses were <br /> performed to evaluate the proposed revised highwall configuration for the South Quarry and <br /> the proposed new highwall configuration for the West Quarry. The kinematic analyses were <br /> performed to evaluate toppling, wedge, and planar failure for rock bench exposures, and the <br /> limit equilibrium and finite element methods were used to evaluate local and global slope <br /> stability. The typical sections considered in these analyses are based on recent photos <br /> obtained from Unmanned Aerial Vehicle surveys (drones), topographic data, reconnaissance <br /> geologic mapping, borehole data, and GEI's experience within the quarry. Results of the <br /> stability analyses were used to evaluate the proposed highwall configuration, including <br /> increased highwall height and the resultant overall highwall (pit) slope angle. <br /> 2 <br /> Aggregate Industries—Morrison Quarry GEI Consultants, Inc. <br /> AM-07 Geotechnical Stability Exhibit November 2020 <br />