To what depth must a rubber ball be taken in deep sea, so that its volume is decreased by 0.1%. (The bulk modulus of rubber is 9.8 x108 Nm-2 and the density of sea water is 103 kgm-3)

Asked by Last Modified  

2 Answers

Learn Physics

Follow 1
Answer

Please enter your answer

Tutor

k=dP/(dV/V) So dV/V=.1/100 P=K* (.1/100) again P=Density* g*h) So we can find out depth(h)
Comments

Comments

Related Questions

What is Viscosity????
It is the resistance of a fluid to a change in shape or movement of neighboring portions relative to one another
Rakesh Chandra
Fixity is always needed for rotational motion?
Yes for pure rotation, the distance between two particles will always remain constant.
Rahul Srivastava
Does fire's flame have any weight?
Yes, Flame consists of gases and gasses have mass.
Rakesh
will gravity will be quantized or not ? if not then universe will be still probablistic ifquantum mechanics already introduces randomness ? so if gravity wont quantized still universe will be probabilisitc ?
Gravity is the force with which all objects attracted to the Earth. This force is expressed in terms of G that is universal gravitational constant This conveys that Earth's force of gravity can be quantized....
Darshan
Can you add three unit vectors to get a unit vector? Does the answer change if two unit vectors are along coordinate axis? Please give example.
If two unit vector in same direction (along),third unit vector in opposite direction situated after applying law's of vector addition along coordinate we will gate unit vector..which is result of three...
Deepika T.
0 0
6

Now ask question in any of the 1000+ Categories, and get Answers from Tutors and Trainers on UrbanPro.com

Ask a Question

Related Lessons

NEET : a possible dream
When I was in class Xi , I wonder seeing a doctor.It seems almost impossible.Its been five years from then ,I'm a final year MBBS student at CMC ,oldest medical College in whole Asia . It took me 2 years...

Calculate the radii of (i) the third orbit of He+ ion and (ii) the second orbit of Li2+ ion.
QUESTION The radius of first Bohr orbit of hydrogen atom is 0.529 A. Calculate the radii of (i) the third orbit of He+ ion and (ii) the second orbit of Li2+ ion. ANSWER


Acceleration due to gravity and its variation with altitude, depth and rotation of earth
Acceleration due to gravity and its variation with altitude, depth and rotation of earth   I. Expression for acceleration due to gravity: Consider earth to be a sphere of radius 'R' and mass 'Me'....
R

Ratan Deshpande

0 0
0

Recommended Articles

Once over with the tenth board exams, a heavy percentage of students remain confused between the three academic streams they have to choose from - science, arts or commerce. Some are confident enough to take a call on this much in advance. But there is no worry if as a student you take time to make choice between - science,...

Read full article >

With the current trend of the world going digital, electronic renaissance is a new movement that is welcomed by the new generation as it helps makes the lives of millions of people easier and convenient. Along with this rapidly changing movement and gaining popularity of Internet, e-Learning is a new tool that emerging...

Read full article >

Learning for every child starts from a very young age. While the formal methods include school curriculums and private lessons, the informal methods include dancing, music, drawing, and various fun-filling activities. Playing games and practising these types of activities helps the children get out of boredom and...

Read full article >

While schools provide formal education to the children, the home is where they start learning about things informally. Parents think that schools will take the initiative to educate their children. Well, this is partially true, as parents also play an essential role in bringing up their child. For the development of particular...

Read full article >

Looking for Class 11 Tuition ?

Learn from the Best Tutors on UrbanPro

Are you a Tutor or Training Institute?

Join UrbanPro Today to find students near you