the Industrial Revolution
If the length of a simple pendulum increases constantly during oscillation, the time period of the pendulum will also increase. This is because the time period of a simple pendulum is directly proportional to the square root of its length. Therefore, as the length increases, the time period will also increase.
During a period of fasting, the body first uses stored glycogen from the liver and muscles as a source of energy. Once the glycogen stores are depleted, the body starts breaking down fat reserves to produce energy through a process called lipolysis.
If the energy supplied is extended five minutes longer, the line graph would likely show a further increase in the energy supplied over time, indicating a positive trend or upward slope. This extension would result in more energy being delivered or consumed during that additional time period.
increase. The frequency of a wave is inversely proportional to its period, meaning that as the period decreases, the frequency increases. The relationship between frequency and period is given by the formula: frequency = 1 / period.
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.
The answer will depend on decreases by 42 FROM WHAT and OVER WHAT PERIOD.
Right
Right
not at all it wont increase period
Moving from left to right across a period, the first ionization energy increases because it becomes increasingly difficult to remove an electron.
Ionization energy tends to increase as you move across a period because the effective nuclear charge, or the attraction between the positively charged nucleus and the negatively charged electrons, increases. This stronger attraction requires more energy to remove an electron from an atom, resulting in higher ionization energy.
The first ionization energy generally increases across a period for main group elements because as you move from left to right across a period, the effective nuclear charge increases, making it harder to remove an electron from the outer shell. This results in a higher energy requirement to remove an electron, leading to an increase in ionization energy.
the ratio of amount of energy generated during specified period to the energy could have been generated during that period by any palnt is the capacity utilisation factor.
evsa
If total assets decreased by $88,000 during a period of time and owner's equity increased by $65,000 during the same period, then the amount and direction (increase or decrease) of the period's change in total liabilities is d. $153,000 decrease
Because as you go down a group, with each additional period, an additional energy level is added. Each additional energy level is farther from the nucleus than the previous energy level.
the period number tells which is the highest energy level occupied by the electrons