SlideShare a Scribd company logo
1 of 37
KULIAH I
MEKANIKA
STRUKTUR
PENDAHULUAN
Silabus
• Keseimbangan partikel
• Keseimbangan benda tegar
• Diagram gaya normal, diagram gaya
geser, dan diagram momen
• Konsep tegangan
• Momen inersia dan momen polar
• Teori kegagalan statis
SISTEM PENILAIAN
No. Jenis Penilaian Bobot (%)
1 Partisipasi kuliah/absensi 20
2 Tugas (Quiz, Presentasi, Diskusi,
Latihan Soal, PR, dsb)
25
3 Ujian Tengah Semester 25
4 Ujian Akhir Semester 30
Jumlah 100%
Nilai (grade)
Quiz
• Quiz dilakukan untuk mengetahui sejauh
mana mahasiswa memahami materi yang
dibahas
• Quiz dilaksanakan sewaktu-waktu
Tugas Harian
• Pengumpulan tugas ditetapkan sesuai
jadwal dan dilakukan sebelum
pembelajaran dimulai
• Jika pada saat pengumpulan tugas kuliah
bertepatan dengan hari libur / besar
nasional, maka tugas kuliah dikumpulkan
pada pertemuan berikutnya
• Tugas yang merupakan plagiat akan
dikenakan pengurangan nilai
Tata Tertib Perkuliahan
• Berpakaian sopan dan rapi (tidak boleh
memakai kaos tanpa krah/ sandal)
• Ketidakhadiran dosen akan diganti pada hari
lain sesuai kesepakatan dengan mahasiswa
• Untuk setiap pertemuan kuliah, mahasiswa
diharapakan untuk selalu membawa (untuk
persiapan latihan dan quiz) :
- Kalkulator
- Alat tulis
- Kertas Quarto ukuran A4
PUSTAKA
• R. C. Hibbeler, Engineering Mechanics, 7th - 10th Edition,
Person Prentice-Hall
• F. P. Beer and E. R. Johnston Jr., Vector Mechanics for
Engineers: Statics, SI Metric Edition, Mcgraw-hill, 3rd
Edition
• R. C. Hibbeler, Mechanics of Material, 3th Edition,
Person Prentice-Hall
• R.C. Hibbeler, Mekanika Teknik Statika, Edisi Bahasa
Indonesia
• dll
Mechanics
Rigid Bodies
(Things that do not change shape)
Deformable Bodies
(Things that do change shape)
Fluids
Statics Dynamics Incompressible Compressible
Apa itu Mekanika?
Cabang ilmu fisika yang berbicara tentang
keadaan diam atau geraknya benda-benda
yang mengalami kerja atau aksi gaya
Apa pentingnya mekanika (statik) /
keseimbangan ?
Apa perbedaan partikel dan benda tegar?
• Particle: A very small amount of matter which
may be assumed to occupy a single point in
space.
• Rigid body: A combination of a large number
of particles occupying fixed position with
respect to each other.
Apa perbedaan Partikel dan Benda Tegar ?
Partikel:
Mempunyai suatu
massa namun
ukurannya dapat
diabaikan, sehingga
geometri benda tidak
akan terlibat dalam
analisis masalah
Benda Tegar:
Kombinasi sejumlah
partikel yang mana
semua partikel
berada pada suatu
jarak tetap terhadap
satu dengan yang lain
Contoh Partikel
Contoh Benda Tegar
Review Sistem Satuan
• Four fundamental physical quantities. Length, Time, Mass, Force.
• We will work with two unit systems in static’s: SI & US Customary.
Bagaimana konversi dari SI ke US atau sebaliknya ?
Apa yang harus dilakukan supaya
Mekanika Teknik menjadi mudah ?
Banyak dan sering menyelesaikan soal-soal
Prosedur mengerjakan soal:
1. Baca soal dengan cermat
2. Buat free body diagram dan tabulasikan data soal
3. Tuliskan prinsip dasar / persamaan yang relevan dengan
soal
4. Selesaikan persamaan sepraktis mungkin sehingga didapat
hasil yang signifikan dan jangan lupa disertai sistem satuan
5. Pelajari jawaban dengan akal sehat, masuk akal atau tidak
6. Jika ada waktu, coba pikirkan cara lain untuk menyelesaikan
soal tersebut.
THE WHAT, WHY AND HOW OF A
FREE BODY DIAGRAM (FBD)
Free Body Diagrams are one of the most important things for
you to know how to draw and use.
What ? - It is a drawing that shows
all external forces acting on the
particle.
Why ? - It helps you write the
equations of equilibrium used to
solve for the unknowns (usually
forces or angles).
How ?
1. Imagine the particle to be isolated or cut free from its
surroundings.
2. Show all the forces that act on the particle.
Active forces: They want to move the particle.
Reactive forces: They tend to resist the motion.
3. Identify each force and show all known magnitudes
and directions. Show all unknown magnitudes and /
or directions as variables .
FBD at A
Note : Engine mass = 250 Kg
A
Fundamental Principles
• The parallelogram law for the addition of forces: Two
forces acting on a particle can be replaced by a single
force, called resultant, obtained by drawing the diagonal
of the parallelogram which has sides equal to the given
forces
f1
f2
f1+f2
• Parallelogram Law
Fundamental Principles (cont’)
• The principle of transmissibility: A force acting at a point
of a rigid body can be replaced by a force of the same
magnitude and same direction, but acting on at a different
point on the line of action
f1
f2
f1 and f2 are equivalent if their
magnitudes are the same and the
object is rigid.
• Principle of Transmissibility
APPLICATION OF VECTOR
ADDITION
There are four
concurrent cable forces
acting on the bracket.
How do you determine
the resultant force acting
on the bracket ?
Addition of Vectors
• Trapezoid rule for vector addition
• Triangle rule for vector addition
B
B
C
C
Q
P
R
B
PQ
Q
P
R







 cos
2
2
2
2
• Law of cosines,
• Law of sines,
P
C
R
B
Q
A sin
sin
sin


• Vector addition is commutative,
P
Q
Q
P







• Vector subtraction
Sample Problem
The two forces act on a bolt at
A. Determine their resultant.
SOLUTION:
• Trigonometric solution - use the triangle
rule for vector addition in conjunction
with the law of cosines and law of sines
to find the resultant.
Sample Problem (cont’)
• Trigonometric solution - Apply the triangle rule.
From the Law of Cosines,
       






155
cos
N
60
N
40
2
N
60
N
40
cos
2
2
2
2
2
2
B
PQ
Q
P
R
A
A
R
Q
B
A
R
B
Q
A









20
04
.
15
N
73
.
97
N
60
155
sin
sin
sin
sin
sin

N
73
.
97

R
From the Law of Sines,

 04
.
35

ADDITION OF SEVERAL VECTORS
• Step 3 is to find the magnitude
and angle of the resultant vector.
• Step 1 is to resolve each force
into its components
• Step 2 is to add all the x
components together and add all
the y components together. These
two totals become the resultant
vector.
Example of this
process,
You can also represent a 2-D vector with a
magnitude and angle.
EXAMPLE
Given: Three concurrent forces
acting on a bracket.
Find: The magnitude and
angle of the resultant
force.
Plan:
a) Resolve the forces in their x-y components.
b) Add the respective components to get the resultant vector.
c) Find magnitude and angle from the resultant components.
EXAMPLE (continued)
F1 = { 15 sin 40° i + 15 cos 40° j } kN
= { 9.642 i + 11.49 j } kN
F2 = { -(12/13)26 i + (5/13)26 j } kN
= { -24 i + 10 j } kN
F3 = { 36 cos 30° i – 36 sin 30° j } kN
= { 31.18 i – 18 j } kN
EXAMPLE (continued)
Summing up all the i and j components respectively, we get,
FR = { (9.642 – 24 + 31.18) i + (11.49 + 10 – 18) j } kN
= { 16.82 i + 3.49 j } kN
x
y

FR
FR = ((16.82)2 + (3.49)2)1/2 = 17.2 kN
 = tan-1(3.49/16.82) = 11.7°
Sample Problem
Four forces act on bolt A as shown.
Determine the resultant of the force
on the bolt.
SOLUTION:
• Resolve each force into rectangular
components.
• Calculate the magnitude and direction
of the resultant.
• Determine the components of the
resultant by adding the corresponding
force components.
Sample Problem (cont’)
SOLUTION:
• Resolve each force into rectangular components.



 1
.
4
N
1
199
N
3
14
tan 

.
.
R
R
x
y
• Calculate the magnitude and direction.
6
.
199
(4.1)
sin
N
3
.
14


R

 1
.
4

• Determine the components of the resultant by
adding the corresponding force components.
1
.
199


x
R 3
.
14


y
R
9
.
25
6
.
96
100
0
.
110
0
110
2
.
75
4
.
27
80
0
.
75
9
.
129
150
4
3
2
1









F
F
F
F
comp
y
comp
x
mag
force




READING QUIZ
1. The subject of mechanics deals with what happens to a body
when ______ is / are applied to it.
A) magnetic field B) heat C) forces
D) neutrons E) lasers
2. ________________ still remains the basis of most of today’s
engineering sciences.
A) Newtonian Mechanics B) Relativistic Mechanics
C) Euclidean Mechanics C) Greek Mechanics
READING QUIZ
3. Which one of the following is a scalar quantity?
A) Force B) Position C) Mass D) Velocity
4. For vector addition you have to use ______ law.
A) Newton’s Second
B) the arithmetic
C) Pascal’s
D) the parallelogram
CONCEPT QUIZ
5. Can you resolve a 2-D vector along two directions, which
are not at 90° to each other?
A) Yes, but not uniquely.
B) No.
C) Yes, uniquely.
6. Can you resolve a 2-D vector along three directions (say
at 0, 60, and 120°)?
A) Yes, but not uniquely.
B) No.
C) Yes, uniquely.
ATTENTION QUIZ
7. Resolve F along x and y axes and write it in
vector form. F = { ___________ } N
A) 80 cos (30°) i - 80 sin (30°) j
B) 80 sin (30°) i + 80 cos (30°) j
C) 80 sin (30°) i - 80 cos (30°) j
D) 80 cos (30°) i + 80 sin (30°) j
8. Determine the magnitude of the resultant (F1 + F2)
force in N when F1 = { 10 i + 20 j } N and F2 =
{ 20 i + 20 j } N .
A) 30 N B) 40 N C) 50 N
D) 60 N E) 70 N
30°
x
y
F = 80 N
Mekanika Teknik Kuliah perdana nomor 1.ppt

More Related Content

Similar to Mekanika Teknik Kuliah perdana nomor 1.ppt

Cape physics unit 1st edition
Cape physics  unit 1st editionCape physics  unit 1st edition
Cape physics unit 1st editionRasheda Pickett
 
Chapter 12 kinematics of a particle part-i
Chapter 12 kinematics of a particle   part-iChapter 12 kinematics of a particle   part-i
Chapter 12 kinematics of a particle part-iSajid Yasin
 
Introduction_to_exament_Methods.pdf
Introduction_to_exament_Methods.pdfIntroduction_to_exament_Methods.pdf
Introduction_to_exament_Methods.pdfMustafaELALAMI
 
EM Forces in Space.ppt
EM Forces in Space.pptEM Forces in Space.ppt
EM Forces in Space.pptdharma raja`
 
presentation at E-Learn 2008
presentation at E-Learn 2008presentation at E-Learn 2008
presentation at E-Learn 2008Dr. Popat Tambade
 
Engg-Mechanics-ppt-by-ujjval.pptx
Engg-Mechanics-ppt-by-ujjval.pptxEngg-Mechanics-ppt-by-ujjval.pptx
Engg-Mechanics-ppt-by-ujjval.pptxPallaviDeotale2
 
engineering mechanics
engineering mechanicsengineering mechanics
engineering mechanicsWaqasAnwar51
 
16201806 bahan-ajar-ptm117-mekanika-teknik
16201806 bahan-ajar-ptm117-mekanika-teknik16201806 bahan-ajar-ptm117-mekanika-teknik
16201806 bahan-ajar-ptm117-mekanika-teknikDedy Wonkso
 
Analyticalmechan00seelrich bw
Analyticalmechan00seelrich bwAnalyticalmechan00seelrich bw
Analyticalmechan00seelrich bwYassin Balja
 
KTU BE 100 Engineering Mechanics
KTU BE 100 Engineering MechanicsKTU BE 100 Engineering Mechanics
KTU BE 100 Engineering MechanicsJinshad Uppukoden
 
SPHA021 Notes-Classical Mechanics-2020.docx
SPHA021 Notes-Classical Mechanics-2020.docxSPHA021 Notes-Classical Mechanics-2020.docx
SPHA021 Notes-Classical Mechanics-2020.docxlekago
 
Advanced Structural Analysis.ppt
Advanced Structural Analysis.pptAdvanced Structural Analysis.ppt
Advanced Structural Analysis.pptSudiptaKolay2
 
Ch-02 Statics of Particles.ppt
Ch-02 Statics of Particles.pptCh-02 Statics of Particles.ppt
Ch-02 Statics of Particles.pptSamirsinh Parmar
 

Similar to Mekanika Teknik Kuliah perdana nomor 1.ppt (20)

Cape physics unit 1st edition
Cape physics  unit 1st editionCape physics  unit 1st edition
Cape physics unit 1st edition
 
dynamic.pdf
dynamic.pdfdynamic.pdf
dynamic.pdf
 
2. statics.pdf
2. statics.pdf2. statics.pdf
2. statics.pdf
 
Chapter 12 kinematics of a particle part-i
Chapter 12 kinematics of a particle   part-iChapter 12 kinematics of a particle   part-i
Chapter 12 kinematics of a particle part-i
 
Introduction_to_exament_Methods.pdf
Introduction_to_exament_Methods.pdfIntroduction_to_exament_Methods.pdf
Introduction_to_exament_Methods.pdf
 
Engineering Mechanics I (Statics) (Part 1/2)
Engineering Mechanics I (Statics) (Part 1/2)Engineering Mechanics I (Statics) (Part 1/2)
Engineering Mechanics I (Statics) (Part 1/2)
 
Capitulo1
Capitulo1Capitulo1
Capitulo1
 
EM Forces in Space.ppt
EM Forces in Space.pptEM Forces in Space.ppt
EM Forces in Space.ppt
 
presentation at E-Learn 2008
presentation at E-Learn 2008presentation at E-Learn 2008
presentation at E-Learn 2008
 
Engg-Mechanics-ppt-by-ujjval.pptx
Engg-Mechanics-ppt-by-ujjval.pptxEngg-Mechanics-ppt-by-ujjval.pptx
Engg-Mechanics-ppt-by-ujjval.pptx
 
engineering mechanics
engineering mechanicsengineering mechanics
engineering mechanics
 
16201806 bahan-ajar-ptm117-mekanika-teknik
16201806 bahan-ajar-ptm117-mekanika-teknik16201806 bahan-ajar-ptm117-mekanika-teknik
16201806 bahan-ajar-ptm117-mekanika-teknik
 
Analyticalmechan00seelrich bw
Analyticalmechan00seelrich bwAnalyticalmechan00seelrich bw
Analyticalmechan00seelrich bw
 
Applications of Computational Quantum Chemistry
Applications of Computational Quantum ChemistryApplications of Computational Quantum Chemistry
Applications of Computational Quantum Chemistry
 
Finite element method
Finite element methodFinite element method
Finite element method
 
Weighted residual.pdf
Weighted residual.pdfWeighted residual.pdf
Weighted residual.pdf
 
KTU BE 100 Engineering Mechanics
KTU BE 100 Engineering MechanicsKTU BE 100 Engineering Mechanics
KTU BE 100 Engineering Mechanics
 
SPHA021 Notes-Classical Mechanics-2020.docx
SPHA021 Notes-Classical Mechanics-2020.docxSPHA021 Notes-Classical Mechanics-2020.docx
SPHA021 Notes-Classical Mechanics-2020.docx
 
Advanced Structural Analysis.ppt
Advanced Structural Analysis.pptAdvanced Structural Analysis.ppt
Advanced Structural Analysis.ppt
 
Ch-02 Statics of Particles.ppt
Ch-02 Statics of Particles.pptCh-02 Statics of Particles.ppt
Ch-02 Statics of Particles.ppt
 

Recently uploaded

Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort servicejennyeacort
 
Oxy acetylene welding presentation note.
Oxy acetylene welding presentation note.Oxy acetylene welding presentation note.
Oxy acetylene welding presentation note.eptoze12
 
Artificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptxArtificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptxbritheesh05
 
What are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptxWhat are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptxwendy cai
 
Effects of rheological properties on mixing
Effects of rheological properties on mixingEffects of rheological properties on mixing
Effects of rheological properties on mixingviprabot1
 
Risk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdfRisk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdfROCENODodongVILLACER
 
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdfCCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdfAsst.prof M.Gokilavani
 
INFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETE
INFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETEINFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETE
INFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETEroselinkalist12
 
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdfCCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdfAsst.prof M.Gokilavani
 
Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...VICTOR MAESTRE RAMIREZ
 
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerStudy on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerAnamika Sarkar
 
VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...
VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...
VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...VICTOR MAESTRE RAMIREZ
 
Biology for Computer Engineers Course Handout.pptx
Biology for Computer Engineers Course Handout.pptxBiology for Computer Engineers Course Handout.pptx
Biology for Computer Engineers Course Handout.pptxDeepakSakkari2
 
DATA ANALYTICS PPT definition usage example
DATA ANALYTICS PPT definition usage exampleDATA ANALYTICS PPT definition usage example
DATA ANALYTICS PPT definition usage examplePragyanshuParadkar1
 
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVHARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVRajaP95
 
pipeline in computer architecture design
pipeline in computer architecture  designpipeline in computer architecture  design
pipeline in computer architecture designssuser87fa0c1
 
Electronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdfElectronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdfme23b1001
 
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptxDecoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptxJoão Esperancinha
 
Introduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECHIntroduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECHC Sai Kiran
 

Recently uploaded (20)

Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
 
Oxy acetylene welding presentation note.
Oxy acetylene welding presentation note.Oxy acetylene welding presentation note.
Oxy acetylene welding presentation note.
 
Artificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptxArtificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptx
 
What are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptxWhat are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptx
 
Effects of rheological properties on mixing
Effects of rheological properties on mixingEffects of rheological properties on mixing
Effects of rheological properties on mixing
 
Risk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdfRisk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdf
 
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdfCCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
 
INFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETE
INFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETEINFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETE
INFLUENCE OF NANOSILICA ON THE PROPERTIES OF CONCRETE
 
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdfCCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
 
Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...
 
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerStudy on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
 
VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...
VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...
VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...
 
Biology for Computer Engineers Course Handout.pptx
Biology for Computer Engineers Course Handout.pptxBiology for Computer Engineers Course Handout.pptx
Biology for Computer Engineers Course Handout.pptx
 
DATA ANALYTICS PPT definition usage example
DATA ANALYTICS PPT definition usage exampleDATA ANALYTICS PPT definition usage example
DATA ANALYTICS PPT definition usage example
 
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVHARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
 
pipeline in computer architecture design
pipeline in computer architecture  designpipeline in computer architecture  design
pipeline in computer architecture design
 
Electronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdfElectronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdf
 
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptxDecoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
 
🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...
🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...
🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...
 
Introduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECHIntroduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECH
 

Mekanika Teknik Kuliah perdana nomor 1.ppt

  • 2. Silabus • Keseimbangan partikel • Keseimbangan benda tegar • Diagram gaya normal, diagram gaya geser, dan diagram momen • Konsep tegangan • Momen inersia dan momen polar • Teori kegagalan statis
  • 3. SISTEM PENILAIAN No. Jenis Penilaian Bobot (%) 1 Partisipasi kuliah/absensi 20 2 Tugas (Quiz, Presentasi, Diskusi, Latihan Soal, PR, dsb) 25 3 Ujian Tengah Semester 25 4 Ujian Akhir Semester 30 Jumlah 100%
  • 5. Quiz • Quiz dilakukan untuk mengetahui sejauh mana mahasiswa memahami materi yang dibahas • Quiz dilaksanakan sewaktu-waktu
  • 6. Tugas Harian • Pengumpulan tugas ditetapkan sesuai jadwal dan dilakukan sebelum pembelajaran dimulai • Jika pada saat pengumpulan tugas kuliah bertepatan dengan hari libur / besar nasional, maka tugas kuliah dikumpulkan pada pertemuan berikutnya • Tugas yang merupakan plagiat akan dikenakan pengurangan nilai
  • 7. Tata Tertib Perkuliahan • Berpakaian sopan dan rapi (tidak boleh memakai kaos tanpa krah/ sandal) • Ketidakhadiran dosen akan diganti pada hari lain sesuai kesepakatan dengan mahasiswa • Untuk setiap pertemuan kuliah, mahasiswa diharapakan untuk selalu membawa (untuk persiapan latihan dan quiz) : - Kalkulator - Alat tulis - Kertas Quarto ukuran A4
  • 8. PUSTAKA • R. C. Hibbeler, Engineering Mechanics, 7th - 10th Edition, Person Prentice-Hall • F. P. Beer and E. R. Johnston Jr., Vector Mechanics for Engineers: Statics, SI Metric Edition, Mcgraw-hill, 3rd Edition • R. C. Hibbeler, Mechanics of Material, 3th Edition, Person Prentice-Hall • R.C. Hibbeler, Mekanika Teknik Statika, Edisi Bahasa Indonesia • dll
  • 9. Mechanics Rigid Bodies (Things that do not change shape) Deformable Bodies (Things that do change shape) Fluids Statics Dynamics Incompressible Compressible Apa itu Mekanika? Cabang ilmu fisika yang berbicara tentang keadaan diam atau geraknya benda-benda yang mengalami kerja atau aksi gaya
  • 10. Apa pentingnya mekanika (statik) / keseimbangan ?
  • 11. Apa perbedaan partikel dan benda tegar? • Particle: A very small amount of matter which may be assumed to occupy a single point in space. • Rigid body: A combination of a large number of particles occupying fixed position with respect to each other.
  • 12. Apa perbedaan Partikel dan Benda Tegar ? Partikel: Mempunyai suatu massa namun ukurannya dapat diabaikan, sehingga geometri benda tidak akan terlibat dalam analisis masalah Benda Tegar: Kombinasi sejumlah partikel yang mana semua partikel berada pada suatu jarak tetap terhadap satu dengan yang lain
  • 15. Review Sistem Satuan • Four fundamental physical quantities. Length, Time, Mass, Force. • We will work with two unit systems in static’s: SI & US Customary. Bagaimana konversi dari SI ke US atau sebaliknya ?
  • 16. Apa yang harus dilakukan supaya Mekanika Teknik menjadi mudah ? Banyak dan sering menyelesaikan soal-soal Prosedur mengerjakan soal: 1. Baca soal dengan cermat 2. Buat free body diagram dan tabulasikan data soal 3. Tuliskan prinsip dasar / persamaan yang relevan dengan soal 4. Selesaikan persamaan sepraktis mungkin sehingga didapat hasil yang signifikan dan jangan lupa disertai sistem satuan 5. Pelajari jawaban dengan akal sehat, masuk akal atau tidak 6. Jika ada waktu, coba pikirkan cara lain untuk menyelesaikan soal tersebut.
  • 17. THE WHAT, WHY AND HOW OF A FREE BODY DIAGRAM (FBD) Free Body Diagrams are one of the most important things for you to know how to draw and use. What ? - It is a drawing that shows all external forces acting on the particle. Why ? - It helps you write the equations of equilibrium used to solve for the unknowns (usually forces or angles).
  • 18. How ? 1. Imagine the particle to be isolated or cut free from its surroundings. 2. Show all the forces that act on the particle. Active forces: They want to move the particle. Reactive forces: They tend to resist the motion. 3. Identify each force and show all known magnitudes and directions. Show all unknown magnitudes and / or directions as variables . FBD at A Note : Engine mass = 250 Kg A
  • 19. Fundamental Principles • The parallelogram law for the addition of forces: Two forces acting on a particle can be replaced by a single force, called resultant, obtained by drawing the diagonal of the parallelogram which has sides equal to the given forces f1 f2 f1+f2 • Parallelogram Law
  • 20. Fundamental Principles (cont’) • The principle of transmissibility: A force acting at a point of a rigid body can be replaced by a force of the same magnitude and same direction, but acting on at a different point on the line of action f1 f2 f1 and f2 are equivalent if their magnitudes are the same and the object is rigid. • Principle of Transmissibility
  • 21. APPLICATION OF VECTOR ADDITION There are four concurrent cable forces acting on the bracket. How do you determine the resultant force acting on the bracket ?
  • 22. Addition of Vectors • Trapezoid rule for vector addition • Triangle rule for vector addition B B C C Q P R B PQ Q P R         cos 2 2 2 2 • Law of cosines, • Law of sines, P C R B Q A sin sin sin   • Vector addition is commutative, P Q Q P        • Vector subtraction
  • 23. Sample Problem The two forces act on a bolt at A. Determine their resultant. SOLUTION: • Trigonometric solution - use the triangle rule for vector addition in conjunction with the law of cosines and law of sines to find the resultant.
  • 24. Sample Problem (cont’) • Trigonometric solution - Apply the triangle rule. From the Law of Cosines,               155 cos N 60 N 40 2 N 60 N 40 cos 2 2 2 2 2 2 B PQ Q P R A A R Q B A R B Q A          20 04 . 15 N 73 . 97 N 60 155 sin sin sin sin sin  N 73 . 97  R From the Law of Sines,   04 . 35 
  • 25. ADDITION OF SEVERAL VECTORS • Step 3 is to find the magnitude and angle of the resultant vector. • Step 1 is to resolve each force into its components • Step 2 is to add all the x components together and add all the y components together. These two totals become the resultant vector.
  • 27. You can also represent a 2-D vector with a magnitude and angle.
  • 28. EXAMPLE Given: Three concurrent forces acting on a bracket. Find: The magnitude and angle of the resultant force. Plan: a) Resolve the forces in their x-y components. b) Add the respective components to get the resultant vector. c) Find magnitude and angle from the resultant components.
  • 29. EXAMPLE (continued) F1 = { 15 sin 40° i + 15 cos 40° j } kN = { 9.642 i + 11.49 j } kN F2 = { -(12/13)26 i + (5/13)26 j } kN = { -24 i + 10 j } kN F3 = { 36 cos 30° i – 36 sin 30° j } kN = { 31.18 i – 18 j } kN
  • 30. EXAMPLE (continued) Summing up all the i and j components respectively, we get, FR = { (9.642 – 24 + 31.18) i + (11.49 + 10 – 18) j } kN = { 16.82 i + 3.49 j } kN x y  FR FR = ((16.82)2 + (3.49)2)1/2 = 17.2 kN  = tan-1(3.49/16.82) = 11.7°
  • 31. Sample Problem Four forces act on bolt A as shown. Determine the resultant of the force on the bolt. SOLUTION: • Resolve each force into rectangular components. • Calculate the magnitude and direction of the resultant. • Determine the components of the resultant by adding the corresponding force components.
  • 32. Sample Problem (cont’) SOLUTION: • Resolve each force into rectangular components.     1 . 4 N 1 199 N 3 14 tan   . . R R x y • Calculate the magnitude and direction. 6 . 199 (4.1) sin N 3 . 14   R   1 . 4  • Determine the components of the resultant by adding the corresponding force components. 1 . 199   x R 3 . 14   y R 9 . 25 6 . 96 100 0 . 110 0 110 2 . 75 4 . 27 80 0 . 75 9 . 129 150 4 3 2 1          F F F F comp y comp x mag force    
  • 33. READING QUIZ 1. The subject of mechanics deals with what happens to a body when ______ is / are applied to it. A) magnetic field B) heat C) forces D) neutrons E) lasers 2. ________________ still remains the basis of most of today’s engineering sciences. A) Newtonian Mechanics B) Relativistic Mechanics C) Euclidean Mechanics C) Greek Mechanics
  • 34. READING QUIZ 3. Which one of the following is a scalar quantity? A) Force B) Position C) Mass D) Velocity 4. For vector addition you have to use ______ law. A) Newton’s Second B) the arithmetic C) Pascal’s D) the parallelogram
  • 35. CONCEPT QUIZ 5. Can you resolve a 2-D vector along two directions, which are not at 90° to each other? A) Yes, but not uniquely. B) No. C) Yes, uniquely. 6. Can you resolve a 2-D vector along three directions (say at 0, 60, and 120°)? A) Yes, but not uniquely. B) No. C) Yes, uniquely.
  • 36. ATTENTION QUIZ 7. Resolve F along x and y axes and write it in vector form. F = { ___________ } N A) 80 cos (30°) i - 80 sin (30°) j B) 80 sin (30°) i + 80 cos (30°) j C) 80 sin (30°) i - 80 cos (30°) j D) 80 cos (30°) i + 80 sin (30°) j 8. Determine the magnitude of the resultant (F1 + F2) force in N when F1 = { 10 i + 20 j } N and F2 = { 20 i + 20 j } N . A) 30 N B) 40 N C) 50 N D) 60 N E) 70 N 30° x y F = 80 N