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 Page 1


Mechanics
Dynamics
Kinetics Kinematics
Statics
Page 2


Mechanics
Dynamics
Kinetics Kinematics
Statics
• The branch of scientific analysis that deals
with motions, time and forces is called
mechanics.
• It is divided in to two parts statics and
dynamics.
Page 3


Mechanics
Dynamics
Kinetics Kinematics
Statics
• The branch of scientific analysis that deals
with motions, time and forces is called
mechanics.
• It is divided in to two parts statics and
dynamics.
STATICS
• It deals with the analysis of stationary systems. 
But time is not considered.
DYNAMICS
• It deals with the systems that change with 
time.
Page 4


Mechanics
Dynamics
Kinetics Kinematics
Statics
• The branch of scientific analysis that deals
with motions, time and forces is called
mechanics.
• It is divided in to two parts statics and
dynamics.
STATICS
• It deals with the analysis of stationary systems. 
But time is not considered.
DYNAMICS
• It deals with the systems that change with 
time.
KINEMATICS
• It is the study of motion, quite apart from the
forces which produce that motion.
• It is the study of position, displacement,
rotation, speed, velocity and acceleration.
KINETICS
• It is the study of motion and its causes
Page 5


Mechanics
Dynamics
Kinetics Kinematics
Statics
• The branch of scientific analysis that deals
with motions, time and forces is called
mechanics.
• It is divided in to two parts statics and
dynamics.
STATICS
• It deals with the analysis of stationary systems. 
But time is not considered.
DYNAMICS
• It deals with the systems that change with 
time.
KINEMATICS
• It is the study of motion, quite apart from the
forces which produce that motion.
• It is the study of position, displacement,
rotation, speed, velocity and acceleration.
KINETICS
• It is the study of motion and its causes
?The subject matter which deals with this
geometric constant of relative motion, without
any reference to the cause of the motion that is
the force is called kinematics.
?For the study of kinematics, a machine may be
referred to as a mechanism, which is a
combination of inter connected rigid bodies
capable of relative motion.
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FAQs on PPT: Mechanisms & Machines - Theory of Machines (TOM) - Mechanical Engineering

1. What is mechanical engineering?
Ans. Mechanical engineering is a branch of engineering that deals with the design, analysis, manufacturing, and maintenance of mechanical systems. It involves the application of principles of physics, mathematics, and materials science to create various machines and devices.
2. What are the main areas of focus in mechanical engineering?
Ans. Mechanical engineering covers a wide range of disciplines, including thermodynamics, mechanics, materials science, and manufacturing processes. Some of the main areas of focus in mechanical engineering include design and analysis of machines, robotics, fluid mechanics, heat transfer, and control systems.
3. How do mechanisms and machines differ in mechanical engineering?
Ans. Mechanisms are devices that consist of a combination of rigid bodies, joints, and links that enable the transmission of motion or force. Machines, on the other hand, are complex systems that are composed of multiple mechanisms working together to perform a specific function. In mechanical engineering, mechanisms are the building blocks of machines.
4. What are some common examples of mechanisms and machines in mechanical engineering?
Ans. Some common examples of mechanisms in mechanical engineering include gears, pulleys, levers, and linkages. Machines can vary widely and include devices such as engines, turbines, pumps, compressors, and robots. These machines often consist of multiple mechanisms working together to perform a specific task.
5. What are the career prospects for mechanical engineers in the field of mechanisms and machines?
Ans. Mechanical engineers specializing in mechanisms and machines have a wide range of career prospects. They can work in industries such as automotive, aerospace, manufacturing, energy, and robotics. Job roles may include design engineer, research and development engineer, project manager, or consultant. Mechanical engineers in this field are in high demand due to the constant need for innovation and improvement in the design and efficiency of machines and mechanisms.
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