To convert mass to weight, you need to multiply the mass by the acceleration due to gravity. The formula is weight = mass x gravity. Gravity is typically 9.81 m/s^2 on Earth.
100 times Earth's gravity would be 9,800 m/s² (98 G). This is equivalent to about 1,000 times the force of gravity felt on Earth's surface. At this level of gravity, an object would weigh 100 times more than it does on Earth.
"at an altitude of 400 kilometres (250 miles), equivalent to a typical orbit of the Space Shuttle, gravity is still nearly 90% as strong as at the Earth's surface" -- Wikipedia: Earth's gravity # Altitude
The weight of a space probe on the surface of Mars would be less than on Earth due to Mars having lower gravity. Mars has about 38% of Earth's gravity, so a space probe that weighs 1000 lbs on Earth would only weigh about 380 lbs on the surface of Mars.
Well the larger the mass of the object greater is the gravitational force. Since the sun is a million times more than mass the gravitational pull of the sun will be a million times more than mars. Again gravitational force depends on the distance as well. It decreases with the increase in distance and increases with the decrease in distance. So if you go a 1000 km away from the sun the force of gravity would be the same as that of mars.
The specific gravity of pure water is 1.0000 at 4 °C and 1 bar. Deviations from this will change the specific gravity. At 0°C and 1 bar, liquid water has a specific gravity of 0.9999 (one of the only substances to EXPAND as it approaches its freezing point). At 100 °C and 1 bar, the specific gravity of liquid water is 0.9584. At 0 °C and 150 bar, liquid water has a specific gravity of about 1.007.
The normal finding would be a lack of finding. So - no blood, no protein, no glucose, no ketones, no nitrites or nitritrates, no albumin, no bilirubin. The urine should be clear, not cloudy or flocculent, have a characteristic but not offensive odour and have a Specific Gravity between 1000 and 1020.
Specific gravity affects head pressure in a pump system by changing the weight of the fluid being pumped. A higher specific gravity means the fluid is denser and heavier, resulting in higher head pressure needed to overcome the increased resistance of the fluid. Conversely, a lower specific gravity would require less head pressure.
To find the volume of a substance when given its mass and specific gravity, divide the mass by the product of the specific gravity and the density of water (1000 kg/m^3). The formula is: Volume = Mass / (Specific Gravity * Density of Water).
Specific gravity. Density is a physical property that relates mass to volume, while specific gravity is the ratio of the density of a substance to the density of a reference substance (usually water for solids and liquids).
1000cc's of urine or 1000 cubic centiliters is equal to just under 10 cups of urine NOW THATS ALOT OF URINE!
The specific gravity of a metal is determined by comparing its density to the density of water. To find the specific gravity of a metal, divide its density by the density of water (1000 kg/m^3 at 4°C). The specific gravity is a unitless value that indicates how many times denser the metal is compared to water.
The specific gravity of standard air is approximately 1.29 kg/m³ at sea level and at 20°C. Specific gravity is a dimensionless quantity, often expressed relative to the density of water, which has a density of about 1000 kg/m³. Therefore, the specific gravity of air can be calculated as approximately 0.00129 when compared to water. This indicates that air is much less dense than water.
relative density compared to water, water density = 1000 kg/m^3 , sg = 1 say density of oil = 850 kg/m^3 , then sg = 850/1000 = 0.85 say density of steel = 7850kg/m^3 then sg = 7850/1000 = 7.85
The same way you convert any density to specific gravity. Just divide the density of the substance (crude oil in this case) by the density of the reference substance (usually water, for liquids).
Density is defined as the mass per unit volume. Hence its unit is SI system is kg/m3 But specific gravity other wise known as relative density is defined as the ratio of the density of the substance to that of water. So no unit for specific gravity. Density of water is 1000 kg/ m3 Density of mercury is 13,600 kg /m3 Hence specific gravity or relative density of mercury is 13.6
Specific gravity is often defined relative to water, in which case the specific gravity of air is 0.001225. Specific gravity can also be defined relative to the density of air, in which case the specific gravity of air is exactly 1. Specific gravity is often defined relative to water, in which case the specific gravity of air is 0.001225. Specific gravity can also be defined relative to the density of air, in which case the specific gravity of air is exactly 1.