Mass movements of land due to gravity, such as landslides, occur when the force of gravity exceeds the strength of the material holding the land in place. This can be triggered by factors such as heavy rainfall, earthquakes, or human activities. The movement of the land mass can range from slow creeping to rapid, destructive slides.
A mass movement of land due to gravity is called a landslide. It occurs when materials like rocks, debris, and soil move downslope under the force of gravity, often triggered by factors like heavy rain, earthquakes, or human activities.
No - the gravity of Earth is due to its mass.No - the gravity of Earth is due to its mass.No - the gravity of Earth is due to its mass.No - the gravity of Earth is due to its mass.
When gravity transports material downslope, it is called mass wasting or movement. This natural process involves the downslope movement of rock, soil, and other debris due to the force of gravity. Mass wasting can range from slow and imperceptible movements to rapid events like landslides and rockfalls.
A steep slope with loose, unconsolidated material is more likely to produce mass movements due to the force of gravity. Higher precipitation levels and seismic activity can also increase the likelihood of mass movements on slopes.
Gravity is the force behind mass movements like landslides and rockfalls. Other factors that can trigger mass movements include heavy rainfall, earthquakes, volcanic activity, human activities like construction or deforestation, and changes in slope stability due to erosion or weathering.
A mass movement of land due to gravity is called a landslide. It occurs when materials like rocks, debris, and soil move downslope under the force of gravity, often triggered by factors like heavy rain, earthquakes, or human activities.
The product of (mass) x (force) has no physical significance.The product of (mass) x (acceleration due to gravity) is the force due to gravity,which we usually call "weight".
No - the gravity of Earth is due to its mass.No - the gravity of Earth is due to its mass.No - the gravity of Earth is due to its mass.No - the gravity of Earth is due to its mass.
No. Earth's gravity is due to Earth's own mass. The moon has its own gravity due to its mass, but that gravity is much weaker than Earth's.
The force of gravity pulling on a mass depends on the mass of the object and the acceleration due to gravity. The force can be calculated using the formula: force = mass x gravity. On Earth, the acceleration due to gravity is approximately 9.81 m/s^2.
Mass and gravity
Mass is a measure of the amount of matter in an object, while weight is the force exerted on that object due to gravity. The weight of an object is directly proportional to its mass and the acceleration due to gravity, as given by the formula: weight = mass x acceleration due to gravity.
To calculate weight, you multiply mass by the acceleration due to gravity. The formula is weight = mass x acceleration due to gravity. The acceleration due to gravity is typically around 9.81 m/s^2 on Earth.
B. Mass divided by the net force acting on you
Gravity is a universal force that attracts all objects with mass towards each other. Due to this force, mass movement occurs when objects are pulled or fall towards the Earth's surface. The strength of gravity depends on the mass of the objects and the distance between them.
The correct question if Force due to Gravity varies directly with mass. As mass increase the Force due to gravity increases linearly.
Mass is a measure of the amount of matter in an object, while weight is the force exerted on an object due to gravity. Weight depends on both the object's mass and the acceleration due to gravity at its location. The relationship between mass and weight is given by the equation weight = mass x acceleration due to gravity.