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PHAR2212 Lab 7 Rheology Data

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  • 8/19/2019 PHAR2212 Lab 7 Rheology Data

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    0.3 6 0.066 0.396 -1.18 -0.402

    0.6 5.1 0.132 0.673 -0.879 -0.172

    1.5 3.68 0.33 1.214 -0.481 0.0844

    3 2.1 0.66 1.386 -0.18 0.142

    6 1.5 1.32 1.98 0.121 0.29712 0.89 2.64 2.35 0.422 0.371

    30 0.42 6.6 2.772 0.82 0.443

    60 0.231 13.2 3.049 1.121 0.484

    30 0.272 6.6 1.795 0.82 0.254

    12 0.375 2.64 0.99 0.422 -0.004

    6 0.54 1.32 0.713 0.121 -0.147

    3 0.64 0.66 0.422 -0.18 -0.374

    1.5 0.96 0.33 0.317 -0.481 -0.499

    0.6 1 0.132 0.132 -0.879 -0.8790.3 1.8 0.066 0.119 -1.18 -0.925

    1

    1.5

    f(x) = 1.585905882x + 0.3848179117

    R² = 0.9916938829

    Log Shear Rate against Log Shear Stres

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    -1 -0.8 -0.6 -0.4 -0.2 0

    -1.5

    -1

    -0.5

    0

    0.5

     

    Lo Shear St

    Log Shear Rate (!)

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    0 2 4 6 8 10

    0.2

    0.4

    0.6

    0.8

    1

    1.2

    1.4

    1.6

    1.8

    2

    Viscocity against shear rate of Be

    Shear Rate (1"s)

    #$s%o%$t& ('o$se)

    10

    12

    14

    Shear

    Rate of Shear (s-1)

    of Bentonite Magma

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    0 0.50

    2

    4

    6

    8

     

    0.2 0.4 0.6

    ress ()

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    0 12 14

    ntonite Magma

      ate (G) against Shear Stress (F) of Bentonite Magm a

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    1 1.5 2 2.5 3 3.5

    Shear Stress (-2)

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    R*+

    0.5 20 0.465 9.3 -0.333 0.968

    1 16.67 0.93 15.503 -0.032 1.19

    2.5 15 2.325 34.875 0.366 1.5435 14.67 4.65 68.216 0.667 1.834

    10 14.5 9.3 134.85 0.968 2.13

    20 14.42 18.6 268.212 1.27 2.428

    50 14.27 46.5 663.555 1.667 2.822

    100 , 93 , 1.968 ,

    50 14.28 46.5 664.02 1.667 2.822

    20 14.38 18.6 267.468 1.27 2.427

    10 14.42 9.3 134.106 0.968 2.127

    5 14.67 4.65 68.216 0.667 1.834

    2.5 15.33 2.325 35.642 0.366 1.552

    1 17.5 0.93 16.275 -0.032 1.212

    0.5 20 0.465 9.3 -0.333 0.968

    #$s%os$t&()

    != /R*+ (3')

    =!(3')

    Log!(3')

    Log(3')

    0.5 1 1.5 2 2.5 3

    -0.5

    0

    0.5

    1

    1.5

    2

    f(x) = 1.073197753x - 1.330903617

    R² = 0.9984312318

    Log Shear Rate (G) against Log Shear Stress (F) of Glyc

    Log Shear Stress ()

    Log Shear Rate (!)

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    0 5 10 15 20 25 30 35 40 45 500

    5

    10

    15

    20

    25 Viscoc ity against Shear Rate (G) of Glycerin

    Shear Rate (s-1)

    #$s%o%$t& ()

    0 100 200 300 400 500 600 7000

    5

    10

    15

    20

    25

    30

    35

    40

    45

    50

    f(x) = 0.0699096381x

    R² = 0.9999481018

    Shear Rate(G) against Shear Stress(F) of Glycerin

    Shear Stress ()

    Shear Rate (!)

    erin

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    R*+

    0.5 2160 0.1045 225.72 -0.981 2.354

    1 1120 0.209 234.08 -0.68 2.369

    2.5 544 0.5225 284.24 -0.282 2.4545 312 1.045 326.04 0.019 2.513

    10 184 2.09 384.56 0.32 2.585

    20 110 4.18 459.8 0.621 2.663

    50 56 10.45 585.2 1.019 2.767

    100 34.8 20.9 727.32 1.32 2.862

    50 56 10.45 585.2 1.019 2.767

    20 108 4.18 451.44 0.621 2.655

    10 180 2.09 376.2 0.32 2.575

    5 296 1.045 309.32 0.019 2.49

    2.5 512 0.5225 267.52 -0.282 2.427

    1 960 0.209 200.64 -0.68 2.302

    0.5 2000 0.1045 209 -0.981 2.32

    #$s%os$t&()

    != /R*+ (3')

    =!(3')

    Log!(3')

    Log(3')

    1

    1

    2

    2

    #$s%o%$

    2.2 2.3 2.4 2.5 2.6 2.7 2.8 2.9

    -1.5

    -1

    -0.5

    0

    0.5

    1

    1.5

    f(x) = 3.9220684922x - 9.8307941379

    R² = 0.9791545522

    Log Shear Rate (G) against Log Shear Stress of Ketchu

    Log Shear Stress ()

    Log Shear Rate (!)

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    0 5 10 15 20 250

    500

    000

    500

    000

    500 Viscocity against Shear Rate (G) of Ketchup

    Shear Rate (s-1)

    t& ()

    10

    15

    20

    25

    Shear Rate (G) against Shear Stress (F)

    Shear Rate (s-1)

    p

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    100 200 300 400 5000

    5

    Shear Stress (-2)

     

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    f Ketc hup

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    600 700 800


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