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Virtual Calculator Excellent use of Virtual calculator for GATE-2016 It is an interactive PDF file just click on the content and you will be directed to the required page
For all Branch of Engineering
For Mechanical Engineering
General Instructions
Production Engineering
Some functions
Theory of Metal Cutting
1. Exp
Shear angle
2. ln 3. log 4. logyx 5. ex 6.
10x
7.
xy
8.
π
π
Shear strain Velocity relations Merchant Circle Force Relations Turning Specific Energy Linear Interpolation Tool life equation
9. π
Linear regression
10. β
Economics
11.1/x
Metrology
12.sin cos tan sinh cosh tanh
Rolling
13. sin-1 cos-1 tan-1 sinh-1 cosh-
Forging
1
tanh-1
14. Factorial n (n!) 15. Linear Interpolation 16. Linear regression
Strength of Materials Elongation Thermal Stress Principal stresses Deflection of Beams Bending stresses Torsion Spring Theories of column Theories of Failure Theory of Machines Frequency Transmissibility ratio Thermodynamics SFEE Entropy Change Available Energy Heat and Mass Transfer Conduction Unsteady Conduction Heat Exchanger Radiation Industrial Engineering Forecasting Regression Analysis Optimum run size
How to use Virtual Calculator
2|Page
General Instructions ο·
Operation procedures and sequence of operations are totally different in Virtual calculator. Hence all students are requested to practice the following procedures.
ο·
It is very weak calculator, canβt handle large equation at a time, we have to calculate part by part.
ο·
Use more and more bracket for calculations
ο·
BODMAS rule should be followed
ο·
B β Bracket O β Order (Power and roots) D β Division M β Multiplication A β Addition S β Subtraction For answer must click on = [= means you have to click on this = button]
ο·
In the starting of any calculation you must click on C [ C means you have to click on this C button]
ο·
For writing sin30 first write 30 and then click on sin (same procedure should be follow for all trigonometric calculations) [ sin means you have to click on this sin button]
ο·
Here mod button is simply a showpiece never press mod button. It is indicating calculator is in deg mode or in rad mode. For changing degree mode to radian mode you have to press radio β button.
Some functions 1. Exp It is actually power of 10 102
Made Easy
1 Exp 2 =
100
By: S K Mondal
How to use Virtual Calculator
3|Page
200 GPa
200 Exp 9 =
2e+11 means 2 x 1011
Note: Instead of Exp we will use 10X button often.
2. ln ln2
2 ln =
0.6931472
Note: you have to first type value then ln button. 2ln2
2 * 2 ln =
1.386294
3ln5
3 * 5 ln =
4.828314
Made Easy
By: S K Mondal
4|Page
How to use Virtual Calculator
3. log log100
100 log =
2
Note: you have to first type value then log button. 5 log50
5 * 50 log =
8.494850
4. logyx log10100
100
logyx
10 =
2
Note: you have to first type value of x then logyx button then value of y. Logically value of x should be given first then value of y.
Made Easy
By: S K Mondal
How to use Virtual Calculator
5|Page
log550
50 logyx 5
7log550
7 * ( 50 logyx 5 ) =
=
2.430677 17.01474
Note: In this case ( ) is must. if you press 7 * 50 logyx it becomes 350 logx Base y and give wrong answer. But see in case of 5 log50 we simply use 5 * 50 log = 8.494850 and no need of ( ).
5. eX e2
2 eX
=
7.389056
Note: you have to first type value of x then eX button. 5 e2
5 * 2 eX
=
36.94528
4 e(5 x 3.4 β 1)
4 * ( 5 x 3.4 β 1 ) eX =
3.554444e+7
6. 10X 102
2 10X
=
100
Note: you have to first type value of x then 10X button.
Made Easy
By: S K Mondal
How to use Virtual Calculator
6|Page
5 x 102
5 * 2 10X
=
105/3
(5/3) 10X
=
10
1.4β1 1.4
(1.4β1) ) 1.4
10(
500
46.41592
((1.4 β 1)/1.4) 10X =
1.930698
Or you may simplify
10
1.4β1 1.4
0.4
10(1.4)
(0.4/1.4)10X =
1.930698
7. Xy 23
2 xy
3 =
8
Note: you have to first type value of x then xy button then value of y. Logically value of x should be given first then value of y.
Made Easy
By: S K Mondal
How to use Virtual Calculator
7|Page
π2 π1
πΎ πΎβ1
πΎ πΎβ1
π2 βΉ π1
1.4 1.4β1
5 βΉ 3
(5/3) xy 1.4/(1.4 β 1) =
8.
π¦
5.111263
π₯ 5
32
32
π¦
π₯ 5 =
2 π¦
Note: you have to first type value of x then π₯ button then value of y. Logically value of x should be given first then value of y.
We may use xy function also
5
32 = 321/5 = 32 xy (1/5) =
2
But in this case (1/5) is must you canβt use 32 xy 1/5 β wrong
9. π₯ β5
Made Easy
5 +/- =
π₯
=
5
By: S K Mondal
How to use Virtual Calculator
8|Page
10. β β5
5 β
=
2.236068
Note: you have to first type value then β button. 32 + 42 =
32 + 42
= ( 3 x2 + 4 x2 ) β
=
5
But ππ = ππ =
1 2 1 2
π1 β π2
2
+ π2 β π3
97.74 β 22.96
2
2
+ π3 β π1
+ 22.96 β 20
2
2
+ 20 β 97.74
2
Using bracket also we canβt calculate it directly, we have to use M+
Made Easy
By: S K Mondal
How to use Virtual Calculator
9|Page
x2 =
97.74 β 22.96
5592.048
M+ then press C button
22.96 β 20
x2 =
8.7616
M+ then press C button
20 β 97.74
x2 =
6043.508
M+ then press C button
Now Press MR button 11644.32 [ It is total value which is under root] Now press β button 107.9089 [ it is =
97.74 β 22.96
2
+ 22.96 β 20
2
+ 20 β 97.74
2
]
Now divide it with β2 107.9089 / 2 β Therefore, ππ =
=
76.30309
1
97.74 β 22.96
2
2
+ 22.96 β 20
2
+ 20 β 97.74
2
= 76.30309
After the calculation you must press MC button.
11. 1/x This is generally used at middle of calculation. 0.45πππ 12 1 β 0.45π ππ12 We first calculate 1 β 0.45sin12 then use 1/x button. 1 β 0.45 * 12 sin
Made Easy
=
0.9064397
By: S K Mondal
How to use Virtual Calculator
10 | P a g e
Then press 1/x button
Then multiply by 0.45 * 12 cos =
12. sin ο· ο·
cos
1.103217
0.4855991
tan
Calculator must be in degree mode. Always value should be given first then the function.
Made Easy
By: S K Mondal
How to use Virtual Calculator
11 | P a g e
ο·
sin30
30 sin
=
0.5
ο·
cos45
45 cos
ο·
tan30
30 tan =
Made Easy
=
0.707
0.577
By: S K Mondal
How to use Virtual Calculator
12 | P a g e
ο·
sin230
(30 sin ) x2
=
0.25
cos245
(45 cos ) x2 =
0.5
tan230
(30 tan ) x2 =
0.3333333
sin (A β B ) = sin (30-10.5) (30 β 10.5 ) sin =
ο·
ο· ο·
ο·
0.3338
cos ( Ο + Ξ² - Ξ± ) = cos (20.15 + 33 -10 ) ( 20.15 + 33 - 10) cos =
0.729565
tan (Ξ¦ - Ξ± ) = tan (17.3 β 10) (17.3 β 10 ) tan =
0.128103
π π ππ 2 π
2.0
= π ππ 2 20 = 2.0/(20 sin ) x2
same procedure for
13. sin-1
cos-1
=
17.09726
sinh cosh tanh
tan-1
ο·
Calculator must be in degree mode. If needed in radians calculate by multiplying ο/180. We may use in rad mode but i will not recommend it because students forget to change the mode to degree and further calculations may go wrong.
ο·
sin-10.5
Made Easy
0.5 sin-1
=
30
degree
By: S K Mondal
How to use Virtual Calculator
13 | P a g e
ο·
cos-10.5
0.5 cos-1
=
60
ο·
tan-10.5
0.5 tan-1
=
26.565 degree
ο·
same procedure for
degree
sinh-1 cosh-1 tanh-1
14. Factorial n (n!) ο·
You have to first input the value the n! button.
ο·
3!
3 n!
=
6
ο·
5!
5 n!
=
120
ο·
25!
25 n!
Made Easy
=
1.551121 e+25 = 1.551121 x 1025
By: S K Mondal
14 | P a g e
How to use Virtual Calculator
15. Linear Interpolation formula You have to first calculate upto last form π¦ β π¦1 π₯ β π₯1 = π¦2 β π¦1 π₯2 β π₯1 1.8 β 0.8 π₯ β 10 = 2.0 β 0.8 60 β 10 π₯ β 10 = 60 β 10 Γ
[Note: extra brackets are used] 2Γ0.25 48β39.68 6
β1
(2 * 4.04 * 150 * 6 / 0.25) * (((2 * 0.25/6) * (48 β 39.68)) ex - 1) = This is very large calculation; this weak calculator canβt handle at once, we have to calculate part by part First calculate (2 * 4.04 * 150 * 6 / 0.25) =
29088
Then calculate (((2 * 0.25/6) * (48 β 39.68)) ex - 1) =
Made Easy
1.000372
By: S K Mondal
How to use Virtual Calculator in Mechanical Engineering
π Γ 82 5 πΉ = 2 Γ 400 Γ ππ 4 4 It is a long calculation, after some part we press multiplication is done . 2 * 400 * (π * 8 x2 / 4) = Now 40212.38 * (5 / 4) ln
=
button then further
it gives 40212.38 =
8973.135 N
Wire Drawing (i)
ππ = ππ
1+π΅ π΅
1β
π π 2π΅ ππ
1 + 1.7145 5 ππ = 400 Γ 1β 1.7145 6.25
2Γ1.7145
It is a long calculation, First calculate, 400 Γ
1+1.7145 1.7145
= 400 * (1 +1.7145) / 1.7145
=
633.3040
Then calculate, 1β
5 6.25
2Γ1.7145
= (1 β(5 / 6.25) xy (2 * 1.7145)) =
Now multiply 0.5347402 * 633.3040
=
0.5347402
338.65 MPa
[At that time in your calculator 0.5347402 is present just multiply it with previous value 633.3040]
Made Easy
By: S K Mondal
How to use Virtual Calculator in Mechanical Engineering
But it is very weak calculator canβt calculate two ln in a operation Calculate (0.025 / 0.01) ln / 19 = 0.04822583 Press M+ then press C button Then (0.055 / 0.025) ln / 0.2 = 3.942287 Press M+ Then press MR it is denominator