A Child In A Merry-Go-Round Press Presses The Side Of His Seat Radially Outward. Why?
Answer
585k+ views
Hint: In order to solve this question, we are going to first tell what all forces are acting on the child in the Merry-Go-Round. The forces acting predict what reaction forces the child needs to exert in order to stay in equilibrium. Then, we will give the formula of the force responsible for pressing the seat.
Formula used:
The centrifugal force formula is given by the equation
\[{F_C} = - \dfrac{{m{v^2}}}{r}\]
Where, \[m\]is the mass of the child, \[v\] is the velocity and\[r\]is the radial distance of the child from the center of circular motion.
Complete step-by-step solution:
When a child is in Merry-Go- Round press, it experiences a centrifugal force which is directed radially outwards from the center of the circular motion of the child. A centrifugal force is in fact a fictitious force which is equal and opposite to the centripetal force that keeps an object rotating in the circular path. It depends on the mass of the object, its speed of rotation and the distance from the center. The more massive the object, more is the centrifugal force acting on the object.
The centrifugal force formula is given by the equation
\[{F_C} = - \dfrac{{m{v^2}}}{r}\]
Where, \[m\]is the mass of the child, \[v\] is the velocity and\[r\]is the radial distance of the child from the center of circular motion.
Note: It is important to note that the child presses the seat in the Merry-Go-Round press, he presses the seat outwards due to this outward directed centrifugal false force. The child is not experiencing any real force outward, but he must exert a force to keep from flying off the merry-go-round.
Formula used:
The centrifugal force formula is given by the equation
\[{F_C} = - \dfrac{{m{v^2}}}{r}\]
Where, \[m\]is the mass of the child, \[v\] is the velocity and\[r\]is the radial distance of the child from the center of circular motion.
Complete step-by-step solution:
When a child is in Merry-Go- Round press, it experiences a centrifugal force which is directed radially outwards from the center of the circular motion of the child. A centrifugal force is in fact a fictitious force which is equal and opposite to the centripetal force that keeps an object rotating in the circular path. It depends on the mass of the object, its speed of rotation and the distance from the center. The more massive the object, more is the centrifugal force acting on the object.
The centrifugal force formula is given by the equation
\[{F_C} = - \dfrac{{m{v^2}}}{r}\]
Where, \[m\]is the mass of the child, \[v\] is the velocity and\[r\]is the radial distance of the child from the center of circular motion.
Note: It is important to note that the child presses the seat in the Merry-Go-Round press, he presses the seat outwards due to this outward directed centrifugal false force. The child is not experiencing any real force outward, but he must exert a force to keep from flying off the merry-go-round.
Recently Updated Pages
Difference Between Prokaryotic Cells and Eukaryotic Cells

If x a + bt + ct2 where x is in meters and t is in class 11 physics CBSE

A car covers the first half distance between two places class 11 physics CBSE

The resultant of two vectors overrightarrow P and overrightarrow class 11 physics CBSE

Find the value of cos 135 class 11 maths CBSE

A mass M is held in place by an applied force F and class 11 physics CBSE

Trending doubts
One Metric ton is equal to kg A 10000 B 1000 C 100 class 11 physics CBSE

Find the value of the expression given below sin 30circ class 11 maths CBSE

Draw a diagram of nephron and explain its structur class 11 biology CBSE

10 examples of friction in our daily life

Proton was discovered by A Thomson B Rutherford C Chadwick class 11 chemistry CBSE

Bond order ofO2 O2+ O2 and O22 is in order A O2 langle class 11 chemistry CBSE

