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When the length of a pendulum increases what will it effect on the time period?

The period is proportional to the square root of the length so if you quadruple the length, the period will double.


Length of production period that allows all inputs to vary?

long run production period


How does length effect the period of a pendulum?

A longer pendulum has a longer period.


What is a worker's level of output in goods and services over a period of time?

production or productivity


What is a workers level of output in goods and services over a period of time?

production or productivity


What is a worker level of output in goods and services over a period of time?

production or productivity


What is the effect of changig length or mass of pendulum on value of g?

Changing the length will increase its period. Changing the mass will have no effect.


In simple pendulum if string is flexible then what is effect on time period?

multiply the length of the pendulum by 4, the period doubles. the period is proportional to the square of the pendulum length.


Does extra exercise effect the flow and length of your period?

yes it can actually


What is national income accounting in economics?

is the measurement of the flows of output (goods and services) of an output (factors of production) that pass through the market in an economy during a specific period


What effect does the mass has on the period of oscillation of the pendulum?

The mass of a pendulum does not affect its period of oscillation. The period of a pendulum is determined by its length and the acceleration due to gravity. This means that pendulums with different masses but the same length will have the same period of oscillation.


How does the length of string effect the time of its pendulm?

The length of a pendulum affects its period of oscillation. The longer the pendulum, the slower it swings and the longer its period. This relationship is described by the equation T = 2π√(L/g), where T is the period, L is the length, and g is the acceleration due to gravity.