It means that your mass is either more or less than the average, for your age, sex, and height.
No, the mass of a body is not affected by charging it. Charging a body simply redistributes the charges on its surface and does not change its mass.
The mass of a body is constant, meaning it remains the same regardless of its location or environment. Mass is a measure of the amount of matter in an object and does not change unless matter is added to or removed from the body.
Charging is due to transfer of electrons from one body to another body. Electrons have mass, therefore, mass increases in the case of negatively charged body and decreases in the case of positively charged body.
The mass of a body is not affected by charging. Charging a body involves adding or removing electrons, which are very light particles compared to the mass of the body itself. Therefore, the mass of the body remains essentially unchanged during the charging process.
The mass of a body remains constant regardless of its location because mass is an intrinsic property of the body. It is a measure of the amount of matter in the body, which does not change based on its position in space. The gravitational force acting on the body may vary with location, but this does not affect the body's mass.
You cannot calculate standard deviation for objects such as concrete cubes - you can only calculate standard deviation for some measure - such as side length, surface area, volume, mass, alkalinity or some other measure.
E=mc^2 states that mass and energy are interchangeable, and that a little bit of mass creates a lot of energy.
Zero deviation means that there is no difference or variation from a set standard or expected value. In statistical terms, it indicates that all data points are identical and perfectly aligned with the mean. This can imply consistency and reliability in a dataset, but it may also suggest a lack of variability or diversity in the measurements.
this help the force to imply the effort
this help the force to imply the effort
What is mean deviation and why is quartile deviation better than mean deviation?
mass in the body is just protons
The vast majority of mass in an element is located in the nucleus, comprised of protons and neutrons. Electrons are considered to have almost no mass, although that they exist at all would imply that they must in fact have some mass.
Information is not sufficient to find mean deviation and standard deviation.
No. It is proven that masses cause slight deviation in the path of light. The larger the mass, the more obvious the deviation.
mean deviation =(4/5)quartile deviation
Body fluid Ph is between 7.35 and 7.45 any other deviation from this range is life threatening