The gravity of earth is not uniform throughout the entire surface of earth. Gravitational force changes with altitude and is different at poles and at the equator. As spring balance relies on the gravitational pull of earth, it can not weigh accurately at all locations.
A spring balance has a linear scale because the extension of the spring is directly proportional to the force applied to it, as described by Hooke's Law. This linear relationship allows for a linear scale to be marked on the balance to accurately measure weights based on the extension of the spring.
The spring balance was invented by Richard Salter, a British balance maker, in the 18th century. He patented the design in 1770, revolutionizing the way weights were measured and making it easier for people to weigh items accurately.
The spring balance scales were invented by Richard Salter, a British balance maker, in the late 18th century. He developed these scales to provide a portable solution for measuring weights accurately.
to measure the weight of an object, hang the object on the hook of the balance, lift up the balance and take the reading. OR to measure the force needed to pull an object, attach an object to the hook of the balance, pull the balance and take the reading when the object moves.
The least count of a spring balance is the smallest measurement that can be accurately read and recorded. It is typically determined by the smallest division on the scale of the spring balance, which represents the smallest change in weight that can be detected.
A spring balance has a linear scale because the extension of the spring is directly proportional to the force applied to it, as described by Hooke's Law. This linear relationship allows for a linear scale to be marked on the balance to accurately measure weights based on the extension of the spring.
The spring balance was invented by Richard Salter, a British balance maker, in the 18th century. He patented the design in 1770, revolutionizing the way weights were measured and making it easier for people to weigh items accurately.
The spring balance scales were invented by Richard Salter, a British balance maker, in the late 18th century. He developed these scales to provide a portable solution for measuring weights accurately.
to measure the weight of an object, hang the object on the hook of the balance, lift up the balance and take the reading. OR to measure the force needed to pull an object, attach an object to the hook of the balance, pull the balance and take the reading when the object moves.
The least count of a spring balance is the smallest measurement that can be accurately read and recorded. It is typically determined by the smallest division on the scale of the spring balance, which represents the smallest change in weight that can be detected.
Gold is not weighed using a spring balance because spring balances measure weight based on the force of gravity acting on an object. However, the weight of an object can vary depending on the gravitational pull of the location. To accurately measure gold, it is weighed using a balance scale that compares the mass of the gold to a known reference mass, providing a more precise measurement unaffected by changes in gravitational force.
The spring balance with 0-10 newton has a soft spring that would extend lightly but the spring balance that measures forces up to 500 newton has a hard spring that would extend slowly.
because
check zero error of spring balance note the readings of spring balance at eye level
zerro error in a spring balance affects the accuracy in the weight. To find zero error in spring balance, you have to first find the least count of the spring balance and then suspend it freely, if the outcome is +1, the zero error is +1 and if it is -1 ,the zero error is -1.
The force indicated on the spring balance will be equal to the sum of the two equal forces applied on both ends of the spring balance. This is because the spring balance measures the total force acting on it, regardless of the number of individual forces.
There are several methods to accurately measure mass, including using a balance scale, a spring scale, or a digital scale. These tools can provide precise measurements by comparing the mass of an object to a known standard.