A compaction test was conducted in a soils laboratory using the Standard Proctor Method B test procedure. The weight of the compact soil specimen plus mold and baseplate was determined to be 3889 g. The volume and mass of the mold were 943.8 cm³ and 2067.0 g, respectively. A moisture content test was carried out on a representative portion of the sample and the results were 10.4%. Required Determine the (wet) unit weight in metric units, to the nearest 100th. Your Answer:
A compaction test was conducted in a soils laboratory using the Standard Proctor Method B test procedure. The weight of the compact soil specimen plus mold and baseplate was determined to be 3889 g. The volume and mass of the mold were 943.8 cm³ and 2067.0 g, respectively. A moisture content test was carried out on a representative portion of the sample and the results were 10.4%. Required Determine the (wet) unit weight in metric units, to the nearest 100th. Your Answer:
Chapter2: Loads On Structures
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
Transcribed Image Text:A compaction test was conducted in a soils laboratory using the Standard Proctor
Method B test procedure. The weight of the compact soil specimen plus mold and
baseplate was determined to be 3889 g. The volume and mass of the mold were
943.8 cm³ and 2067.0 g, respectively. A moisture content test was carried out on a
representative portion of the sample and the results were 10.4%.
Required
Determine the (wet) unit weight in metric units, to the nearest 100th.
Your Answer:
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