Complete the table below. Determine the relationship between Ở and Oo of a block of chocolate given the change/s in the dimensions I, P, t, and w. Express your answers in the second column as whole numbers or fractions. Show your complete solutions. Assumption: All variables in the formula for flexural stress remains the same except for the variables indicated in column 1 DIMENSION CHANGE W = 3Wo T = 2T, 3 1 and W = 0.25W. T = 2.5To , L = 6Lo 25 and W = 3W. Variables: Flexural Stress, a. | previous length of the bar Previous load Previous width of the bar Previous thickness of the bar New Flexural Stress, a UNIT | new length of the bar new load new width of the bar new thickness of the bar Po W. w to EZ E E

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Chapter1: Chemical Foundations
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An example is provided below.
DIMENSION CHANGE
0 =_0.
e.g. I = 21,
HOW TO SOLVE THE EXAMPLE: Compare the increase/decrease of the original flexural stress value ( a.)
with the resulting flexural stress ( o) after applying the changes in the variable/s of the formula.
1.5Po•lo
(0.)
wo•to?
1.5P+l
(0)
%3D
w+t2
e.g. I = 2lo
Substitute the value of l in the eq'n:
1.5P+2lo
(0)
w•t2
Note: (length, I) lang ang nabago sa equation, ibig sabihin, P, t, and w are equivalent to P., t, and w,
respectively.
In this case,
O= Oo
1.5P * 2lo
1.5Po * lo
w * t?
wo * to?
Therefore,
o = 00
The new flexural stress is equivalent to ½ of the previous flexural stress value when I= 2lo.
*You can also try assigning values for P, L, W, and T in the eq'ns for checking.
Transcribed Image Text:An example is provided below. DIMENSION CHANGE 0 =_0. e.g. I = 21, HOW TO SOLVE THE EXAMPLE: Compare the increase/decrease of the original flexural stress value ( a.) with the resulting flexural stress ( o) after applying the changes in the variable/s of the formula. 1.5Po•lo (0.) wo•to? 1.5P+l (0) %3D w+t2 e.g. I = 2lo Substitute the value of l in the eq'n: 1.5P+2lo (0) w•t2 Note: (length, I) lang ang nabago sa equation, ibig sabihin, P, t, and w are equivalent to P., t, and w, respectively. In this case, O= Oo 1.5P * 2lo 1.5Po * lo w * t? wo * to? Therefore, o = 00 The new flexural stress is equivalent to ½ of the previous flexural stress value when I= 2lo. *You can also try assigning values for P, L, W, and T in the eq'ns for checking.
Complete the table below. Determine the relationship between Ở and Oo of a block of chocolate given
the change/s in the dimensions I, P, t, and w.
Express your answers in the second column as whole numbers or fractions. Show your complete
solutions.
Assumption: All variables in the formula for flexural stress remains the same except for the variables
indicated in column 1
DIMENSION CHANGE
O =
W = 3W.
T = 2T0
and
W = 0.25W.
T= 2,5To,
25
L= 6Lo
and
W = 3W.
Variables:
Flexural Stress, o
New Flexural Stress, a
UNIT
previous length of the bar
new length of the bar
Po
Previous load
P
new load
W.
Previous width of the bar
new width of the bar
w
to
Previous thickness of the bar
t
new thickness of the ban
m
Transcribed Image Text:Complete the table below. Determine the relationship between Ở and Oo of a block of chocolate given the change/s in the dimensions I, P, t, and w. Express your answers in the second column as whole numbers or fractions. Show your complete solutions. Assumption: All variables in the formula for flexural stress remains the same except for the variables indicated in column 1 DIMENSION CHANGE O = W = 3W. T = 2T0 and W = 0.25W. T= 2,5To, 25 L= 6Lo and W = 3W. Variables: Flexural Stress, o New Flexural Stress, a UNIT previous length of the bar new length of the bar Po Previous load P new load W. Previous width of the bar new width of the bar w to Previous thickness of the bar t new thickness of the ban m
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