Depends
period
increase
if by arc you mean the "Period" of the pendulum then yes, it does: with each revolution the period of the pendulum (the time taken to swing back and forth once) does decrease.
Increase decrease. The frequency MUST decrease.
The general trend in densities for period 2 elements of the periodic table is that densities increase from left to right. This is because elements in period 2 have increasing atomic numbers, leading to an increase in atomic mass and a decrease in atomic volume, resulting in higher densities.
When you decrease the wave period, the waves will be closer together and have a higher frequency. This can create choppier and rougher conditions on the water. When you increase the wave period, the waves will be farther apart and have a lower frequency, resulting in smoother sailing conditions with longer intervals between waves.
An increase in atomic number within a specific period corresponds to an increase in the number of protons in the nucleus of the atom. This leads to a higher positive charge, causing the outer electrons to be more strongly attracted to the nucleus. As a result, the atomic size tends to decrease across a period as atomic number increases.
the period of vibrating swing neither increase nor decrease by addition of more weight . it remains constant because it does not depends upon weight.
To increase the value of period oscillation, you can either increase the mass of the object or decrease the spring constant of the spring. Both of these changes will affect the period of oscillation according to the equation T = 2π√(m/k), where T is the period, m is the mass, and k is the spring constant.
no. :)
The midpoint between decrease and increase is stability or equilibrium, where there is neither a decrease nor an increase occurring.
you increase or decrease mass by taking the mass out