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Engineering Formula Sheet

Engineering Formulas. Engineering Formula Sheet. Probability. Pk = n!(pk)(qn-k) k!(n-k)! AMA = Actual Mechanical Advantage. DE = Effort Distance.



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[PDF] Engineering Formula Sheet

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  • What formulas do mechanical engineers use?

    There are thousands of Mechanical Engineering formulas. These formulas are used in the design of various Mechanical equipment.22 jan. 2023
  • How many formulas are there in mechanical engineering?

    The distance formula is used for finding the distance between two points. In two dimensions it is simply an application of the Pythagorean theorem. Given two points (x1,y1) and (x2,y2) the distance between them is: d=?(x2?x1)2+(y2?y1)2.
  • What is distance formula in mechanical engineering?

    The unit of stress is N/mm2 or N/m2 When an external force acts on a body, the body tends to undergo deformation. Due to cohesion between molecules the body resist the force. This resistance offered by the body is known as strength of material. 1 N/mm2 =106N/m2 1 bar = 1x105N/m2 2.

PLTW, Inc. Engineering Formulas

Engineering Formula Sheet

Probability

Binomial Probability (o)

Pk = binomial probability of k successes in n trials p = probability of a success q = 1 p = probability of failure k = number of successes n = number of trials

Independent Events

P (A and B and C) = PAPBPC

P (A and B and C) = probability of independent

events A and B and C occurring in sequence

PA = probability of event A

Mutually Exclusive Events

P (A or B) = PA + PB

P (A or B) = probability of either mutually exclusive event A or B occurring in a trial

PA = probability of event A

Ȉi = sum of all data values (x1, x2, x3,

n = number of data values

Frequency

fx = relative frequency of outcome x nx = number of events with outcome x n = total number of events

Px = probability of outcome x

fa = frequency of all events

Conditional Probability

P (A|D) = probability of event A given event D

P(A) = probability of event A occurring

P(~A) = probability of event A not occurring

Mode

Place data in ascending order.

Mode = most frequently occurring value

If two values occur at the maximum frequency the

data set is bimodal.

If three or more values occur at the maximum

frequency the data set is multi-modal. Mean

µ = mean value

Ȉxi = sum of all data values (x1, x2, x3

n = number of data values

Standard Deviation

ı= standard deviation

xi = individual data value ( x1, x2, x3 n = number of data values Range

Range = xmax - xmin

xmax = maximum data value xmin = minimum data value

Median

Place data in ascending order.

If n is odd, median = central value

If n is even, median = mean of two central values

n = number of data values

Statistics

1 EDD BE CIM IED POE DE CEA AE

PLTW, Inc. Engineering Formulas

Plane Geometry

Triangle

Area = ½ bh

a2 = b2 + c2 2bc·cosס b2 = a2 + c2 2ac·cosס c2 = a2 + b2 2ab·cosס h b a c A B C

Ellipse

2b 2a

Regular Polygons

n = number of sides f s

Rectangle

Perimeter = 2a + 2b

Area = ab

Circle

Parallelogram

Area = bh h

b

Pyramid

A = area of base

h

Solid Geometry

Sphere

Volume ସ

ଷ ʌ r3

Surface Area = 4 ʌ r2

r h d w

Rectangular Prism

Volume = wdh

Surface Area = 2(wd + wh + dh)

h r

Cylinder

Volume = ʌ r2 h

Surface Area = 2 ʌ r h+2 ʌ r2

Cube

Volume = s3

Surface Area = 6s2

s s s

Right Circular Cone

r h

Trapezoid

Area = ½(a + b)h

b h h h a h

Constants

g = 9.8 m/s2 = 32.27 ft/s2

G = 6.67 x 10-11 m3/kg·s2

ʌ= 3.14159

h

Irregular Prism

Volume = Ah

A = area of base

a

Right Triangle

c2 = a2 + b2 b c

2 EDD BE CIM IED POE DE CEA AE

PLTW, Inc. Engineering Formulas

Numbers Less Than One Numbers Greater Than One

Power of 10 Prefix Abbreviation Power of 10 Prefix Abbreviation

10-1 deci- d 101 deca- da

10-2 centi- c 102 hecto- h

10-3 milli- m 103 kilo- k

10-6 micro- µ 106 Mega- M

10-9 nano- n 109 Giga- G

10-12 pico- p 1012 Tera- T

10-15 femto- f 1015 Peta- P

10-18 atto- a 1018 Exa- E

10-21 zepto- z 1021 Zetta- Z

10-24 yocto- y 1024 Yotta- Y

SI Prefixes

Conversions

Mass

1 kg = 2.205 lbm

1 slug = 32.2 lbm

1 ton = 2000 lbm

Force

1 N = 0.225 lbf

1 kip = 1,000 lbf

Length

1 m = 3.28 ft

1 km = 0.621 mi

1 in. = 2.54 cm

1 mi = 5280 ft

1 yd = 3 ft

Area

1 acre = 4047 m2

= 43,560 ft2 = 0.00156 mi2

Volume

1L = 0.264 gal

= 0.0353 ft3 = 33.8 fl oz

1mL = 1 cm3 = 1 cc

Pressure

1 atm = 1.01325 bar

= 33.9 ft H2O = 29.92 in. Hg = 760 mm Hg = 101,325 Pa = 14.7 psi

1psi = 2.31 ft of H2O

Power

1 W = 3.412 Btu/h

= 0.00134 hp = 14.34 cal/min = 0.7376 ft·lbf/s

Energy

1 J = 0.239 cal

= 9.48 x 10-4 Btu = 0.7376 ft·lbf

1kW h = 3,6000,000 J

Temperature Change

1 K = 1 ºC

= 1.8 ºF = 1.8 ºR Time

1 d = 24 h

1 h = 60 min

1 min = 60 s

1 yr = 365 d

Equations Force

F = ma

F = force

m = mass a = acceleration

Mass and Weight

M = VDm

W = mg

W = VDw

V = volume

Dm = mass density

m = mass

Dw = weight density

g = acceleration due to gravity

Defined Units

1 J = 1 N·m

1 N = 1 kg·m / s2

1 Pa = 1 N / m2

1 V = 1 W / A

1 W = 1 J / s

1 W = 1 V / A

1 Hz = 1 s-1

1 F = 1 A·s / V

1 H = 1 V·s / V

Equations of Static Equilibrium

ȈFx = 0 ȈFy = 0 ȈMP = 0

Fx = force in the x-direction

Fy = force in the y-direction

MP = moment about point P

Temperature

TK = TC + 273

TR = TF + 460

TK = temperature in Kelvin

TC = temperature in Celsius

TR = temperature in Rankin

TF = temperature in Fahrenheit

3 EDD BE CIM IED POE DE CEA AE

PLTW, Inc. Engineering Formulas

Energy: Work

W = work

F = force

d = distance

Fluid Mechanics

(Guy-

P1V1 = P2V2

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