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A bit drier than before.  Mike Daniels helped.  I think we got the whole 3cm in the top sample, though the soil may have been compacted in the process.

Date

Position

Tare (g) (g)

Wet (g) (g)

Dry (g) (g)

rho (g/cm^3)

Moist (%)

Moist (%)
EC-5

6/15

soil.a 0-3cm

7.981

74.357

48.354

0.61

39.2

 

6/15

soil.a 3-6cm

7.940

97.473

72.210

0.97

38.0

30

6/15

soil.b 0-3cm

7.945

90.836

67.464

0.90

35.2

 

6/15

soil.b 3-6cm

7.991

98.365

78.623

1.06

29.7

23

6/21

soil.a 0-3cm

7.972

51.536

29.353

0.48

50.1

 

6/21

soil.a 3-6cm

7.940

102.324

68.270

0.91

51.3

27

6/21

soil.b 0-3cm

7.927

59.973

42.641

0.78

39.1

 

6/21

soil.b 3-6cm

7.987

74.350

55.189

0.71

28.8

25

6/26

soil.a 0-3cm

7.972

116.089

 

 

79.391

1.08

55.2  

 

6/26

soil.a 3-6cm

7.939

120.337

 

 

 

92.536

1.27

41.8

34  

6/26

soil.b 0-3cm

7.926

78.270

 

 

59.924

0.78

27.6  

 

6/26

soil.b 3-6cm

7.984

103.500

 

 

 

84.423

1.15

28.7

21  


#tare = c(7.981,7.940,7.945,7.991)

...

wet = c(74.357,97.473,90.836,98.365,51.536,102.324,59.973,74.350,116.089,120.337,78.270,103.500)-rep(tare,23)

dry = c(48.354,72.210,67.464,78.623,29.353,68.270,42.641,55.189,79.391,92.536,59.924,84.423)-rep(tare,23)

vol = c(2,3)*pi*(5.31/2)^2

Wiki Markup
moist = 100*(wet-dry)/vol\[c(2,2,2,2,1,2,1,2,2,2,2,2)\]

Wiki Markup
rho = dry/vol\[c(2,2,2,2,1,2,1,2,2,2,2,2)\]