An experiment was conducted to find the specific gravity of the soil and the weight of the soil was 100g, which represents Ws. The weight of the water with the beaker is 635.2g, which is W1. The weight of the bowl is 516.4g. And the weight of the water with the beaker with the soil is 699.4g, which represents W2, and the specific weight after drying is 616.5. What is required is to calculate the information shown in the table below

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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An experiment was conducted to
find the specific gravity of the soil
and the weight of the soil was 100g,
which represents Ws. The weight of
the water with the beaker is 635.2g,
which is W1. The weight of the
bowl is 516.4g. And the weight of
the water with the beaker with the
soil is 699.4g, which represents W2,
and the specific weight after drying
is 616.5. What is required is to
calculate the information shown in
the table below
Specimen number
Pycnometer bottle number
Mass of Pycnometer, w, (g)
Mass of Pycnometer and dry specimen, wp+s ()
Mass of Pycnometer, specimen and water, Wp+s+w (9)
Mass of Pycnometer and water,
Wp+w
(g)
Specific gravity, Gs
Average Specific gravity, Gs
Transcribed Image Text:An experiment was conducted to find the specific gravity of the soil and the weight of the soil was 100g, which represents Ws. The weight of the water with the beaker is 635.2g, which is W1. The weight of the bowl is 516.4g. And the weight of the water with the beaker with the soil is 699.4g, which represents W2, and the specific weight after drying is 616.5. What is required is to calculate the information shown in the table below Specimen number Pycnometer bottle number Mass of Pycnometer, w, (g) Mass of Pycnometer and dry specimen, wp+s () Mass of Pycnometer, specimen and water, Wp+s+w (9) Mass of Pycnometer and water, Wp+w (g) Specific gravity, Gs Average Specific gravity, Gs
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