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Total Surface Area of Cut Cylindrical Shell is the total quantity of plane enclosed on the entire surface of the Cut Cylindrical Shell. Check FAQs
TSA=(π((rOuter(hShort Outer+hLong Outer))+(rInner(hShort Inner+hLong Inner))))+(π(rOuter2-rInner2+(rOuterrOuter2+(hLong Outer-hShort Outer2)2)-(rInnerrInner2+(hLong Inner-hShort Inner2)2)))
TSA - Total Surface Area of Cut Cylindrical Shell?rOuter - Outer Radius of Cut Cylindrical Shell?hShort Outer - Short Outer Height of Cut Cylindrical Shell?hLong Outer - Long Outer Height of Cut Cylindrical Shell?rInner - Inner Radius of Cut Cylindrical Shell?hShort Inner - Short Inner Height of Cut Cylindrical Shell?hLong Inner - Long Inner Height of Cut Cylindrical Shell?π - Archimedes' constant?

Total Surface Area of Cut Cylindrical Shell Example

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Here is how the Total Surface Area of Cut Cylindrical Shell equation looks like with Values.

Here is how the Total Surface Area of Cut Cylindrical Shell equation looks like with Units.

Here is how the Total Surface Area of Cut Cylindrical Shell equation looks like.

2769.277Edit=(3.1416((12Edit(16Edit+20Edit))+(8Edit(17Edit+19Edit))))+(3.1416(12Edit2-8Edit2+(12Edit12Edit2+(20Edit-16Edit2)2)-(8Edit8Edit2+(19Edit-17Edit2)2)))
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Total Surface Area of Cut Cylindrical Shell Solution

Follow our step by step solution on how to calculate Total Surface Area of Cut Cylindrical Shell?

FIRST Step Consider the formula
TSA=(π((rOuter(hShort Outer+hLong Outer))+(rInner(hShort Inner+hLong Inner))))+(π(rOuter2-rInner2+(rOuterrOuter2+(hLong Outer-hShort Outer2)2)-(rInnerrInner2+(hLong Inner-hShort Inner2)2)))
Next Step Substitute values of Variables
TSA=(π((12m(16m+20m))+(8m(17m+19m))))+(π(12m2-8m2+(12m12m2+(20m-16m2)2)-(8m8m2+(19m-17m2)2)))
Next Step Substitute values of Constants
TSA=(3.1416((12m(16m+20m))+(8m(17m+19m))))+(3.1416(12m2-8m2+(12m12m2+(20m-16m2)2)-(8m8m2+(19m-17m2)2)))
Next Step Prepare to Evaluate
TSA=(3.1416((12(16+20))+(8(17+19))))+(3.1416(122-82+(12122+(20-162)2)-(882+(19-172)2)))
Next Step Evaluate
TSA=2769.27697505381
LAST Step Rounding Answer
TSA=2769.277

Total Surface Area of Cut Cylindrical Shell Formula Elements

Variables
Constants
Functions
Total Surface Area of Cut Cylindrical Shell
Total Surface Area of Cut Cylindrical Shell is the total quantity of plane enclosed on the entire surface of the Cut Cylindrical Shell.
Symbol: TSA
Measurement: AreaUnit:
Note: Value should be greater than 0.
Outer Radius of Cut Cylindrical Shell
Outer Radius of Cut Cylindrical Shell is the distance between center and any point on the circumference of the bottom circular face in the outer cut cylinder of the Cut Cylindrical Shell.
Symbol: rOuter
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Short Outer Height of Cut Cylindrical Shell
Short Outer Height of Cut Cylindrical Shell is the shortest vertical distance from the bottom circular face to the top elliptical face of the outer cut cylinder of the Cut Cylindrical Shell.
Symbol: hShort Outer
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Long Outer Height of Cut Cylindrical Shell
Long Outer Height of Cut Cylindrical Shell is the longest vertical distance from the bottom circular face to the top elliptical face of the outer cut cylinder of the Cut Cylindrical Shell.
Symbol: hLong Outer
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Inner Radius of Cut Cylindrical Shell
Inner Radius of Cut Cylindrical Shell is the distance between center and any point on the circumference of the bottom circular face in the inner cut cylinder of the Cut Cylindrical Shell.
Symbol: rInner
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Short Inner Height of Cut Cylindrical Shell
Short Inner Height of Cut Cylindrical Shell is the shortest vertical distance from the bottom circular face to the top elliptical face of the inner cut cylinder of the Cut Cylindrical Shell.
Symbol: hShort Inner
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Long Inner Height of Cut Cylindrical Shell
Long Inner Height of Cut Cylindrical Shell is the longest vertical distance from the bottom circular face to the top elliptical face of the inner cut cylinder of the Cut Cylindrical Shell.
Symbol: hLong Inner
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Archimedes' constant
Archimedes' constant is a mathematical constant that represents the ratio of the circumference of a circle to its diameter.
Symbol: π
Value: 3.14159265358979323846264338327950288
sqrt
A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number.
Syntax: sqrt(Number)

Other Formulas to find Total Surface Area of Cut Cylindrical Shell

​Go Total Surface Area of Cut Cylindrical Shell given Lateral Surface Area
TSA=LSA+(π(rOuter2-rInner2+(rOuterrOuter2+(hLong Outer-hShort Outer2)2)-(rInnerrInner2+(hLong Inner-hShort Inner2)2)))

How to Evaluate Total Surface Area of Cut Cylindrical Shell?

Total Surface Area of Cut Cylindrical Shell evaluator uses Total Surface Area of Cut Cylindrical Shell = (pi*((Outer Radius of Cut Cylindrical Shell*(Short Outer Height of Cut Cylindrical Shell+Long Outer Height of Cut Cylindrical Shell))+(Inner Radius of Cut Cylindrical Shell*(Short Inner Height of Cut Cylindrical Shell+Long Inner Height of Cut Cylindrical Shell))))+(pi*(Outer Radius of Cut Cylindrical Shell^2-Inner Radius of Cut Cylindrical Shell^2+(Outer Radius of Cut Cylindrical Shell*sqrt(Outer Radius of Cut Cylindrical Shell^2+((Long Outer Height of Cut Cylindrical Shell-Short Outer Height of Cut Cylindrical Shell)/2)^2))-(Inner Radius of Cut Cylindrical Shell*sqrt(Inner Radius of Cut Cylindrical Shell^2+((Long Inner Height of Cut Cylindrical Shell-Short Inner Height of Cut Cylindrical Shell)/2)^2)))) to evaluate the Total Surface Area of Cut Cylindrical Shell, Total Surface Area of Cut Cylindrical Shell formula is defined as the total quantity of plane enclosed on the entire surface of the Cut Cylindrical Shell. Total Surface Area of Cut Cylindrical Shell is denoted by TSA symbol.

How to evaluate Total Surface Area of Cut Cylindrical Shell using this online evaluator? To use this online evaluator for Total Surface Area of Cut Cylindrical Shell, enter Outer Radius of Cut Cylindrical Shell (rOuter), Short Outer Height of Cut Cylindrical Shell (hShort Outer), Long Outer Height of Cut Cylindrical Shell (hLong Outer), Inner Radius of Cut Cylindrical Shell (rInner), Short Inner Height of Cut Cylindrical Shell (hShort Inner) & Long Inner Height of Cut Cylindrical Shell (hLong Inner) and hit the calculate button.

FAQs on Total Surface Area of Cut Cylindrical Shell

What is the formula to find Total Surface Area of Cut Cylindrical Shell?
The formula of Total Surface Area of Cut Cylindrical Shell is expressed as Total Surface Area of Cut Cylindrical Shell = (pi*((Outer Radius of Cut Cylindrical Shell*(Short Outer Height of Cut Cylindrical Shell+Long Outer Height of Cut Cylindrical Shell))+(Inner Radius of Cut Cylindrical Shell*(Short Inner Height of Cut Cylindrical Shell+Long Inner Height of Cut Cylindrical Shell))))+(pi*(Outer Radius of Cut Cylindrical Shell^2-Inner Radius of Cut Cylindrical Shell^2+(Outer Radius of Cut Cylindrical Shell*sqrt(Outer Radius of Cut Cylindrical Shell^2+((Long Outer Height of Cut Cylindrical Shell-Short Outer Height of Cut Cylindrical Shell)/2)^2))-(Inner Radius of Cut Cylindrical Shell*sqrt(Inner Radius of Cut Cylindrical Shell^2+((Long Inner Height of Cut Cylindrical Shell-Short Inner Height of Cut Cylindrical Shell)/2)^2)))). Here is an example- 2769.277 = (pi*((12*(16+20))+(8*(17+19))))+(pi*(12^2-8^2+(12*sqrt(12^2+((20-16)/2)^2))-(8*sqrt(8^2+((19-17)/2)^2)))).
How to calculate Total Surface Area of Cut Cylindrical Shell?
With Outer Radius of Cut Cylindrical Shell (rOuter), Short Outer Height of Cut Cylindrical Shell (hShort Outer), Long Outer Height of Cut Cylindrical Shell (hLong Outer), Inner Radius of Cut Cylindrical Shell (rInner), Short Inner Height of Cut Cylindrical Shell (hShort Inner) & Long Inner Height of Cut Cylindrical Shell (hLong Inner) we can find Total Surface Area of Cut Cylindrical Shell using the formula - Total Surface Area of Cut Cylindrical Shell = (pi*((Outer Radius of Cut Cylindrical Shell*(Short Outer Height of Cut Cylindrical Shell+Long Outer Height of Cut Cylindrical Shell))+(Inner Radius of Cut Cylindrical Shell*(Short Inner Height of Cut Cylindrical Shell+Long Inner Height of Cut Cylindrical Shell))))+(pi*(Outer Radius of Cut Cylindrical Shell^2-Inner Radius of Cut Cylindrical Shell^2+(Outer Radius of Cut Cylindrical Shell*sqrt(Outer Radius of Cut Cylindrical Shell^2+((Long Outer Height of Cut Cylindrical Shell-Short Outer Height of Cut Cylindrical Shell)/2)^2))-(Inner Radius of Cut Cylindrical Shell*sqrt(Inner Radius of Cut Cylindrical Shell^2+((Long Inner Height of Cut Cylindrical Shell-Short Inner Height of Cut Cylindrical Shell)/2)^2)))). This formula also uses Archimedes' constant and Square Root (sqrt) function(s).
What are the other ways to Calculate Total Surface Area of Cut Cylindrical Shell?
Here are the different ways to Calculate Total Surface Area of Cut Cylindrical Shell-
  • Total Surface Area of Cut Cylindrical Shell=Lateral Surface Area of Cut Cylindrical Shell+(pi*(Outer Radius of Cut Cylindrical Shell^2-Inner Radius of Cut Cylindrical Shell^2+(Outer Radius of Cut Cylindrical Shell*sqrt(Outer Radius of Cut Cylindrical Shell^2+((Long Outer Height of Cut Cylindrical Shell-Short Outer Height of Cut Cylindrical Shell)/2)^2))-(Inner Radius of Cut Cylindrical Shell*sqrt(Inner Radius of Cut Cylindrical Shell^2+((Long Inner Height of Cut Cylindrical Shell-Short Inner Height of Cut Cylindrical Shell)/2)^2))))OpenImg
Can the Total Surface Area of Cut Cylindrical Shell be negative?
No, the Total Surface Area of Cut Cylindrical Shell, measured in Area cannot be negative.
Which unit is used to measure Total Surface Area of Cut Cylindrical Shell?
Total Surface Area of Cut Cylindrical Shell is usually measured using the Square Meter[m²] for Area. Square Kilometer[m²], Square Centimeter[m²], Square Millimeter[m²] are the few other units in which Total Surface Area of Cut Cylindrical Shell can be measured.
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