5.6 cm/sec2
The acceleration produced can be calculated using Newton's second law: Force = mass x acceleration. Rearranging the formula to find acceleration, acceleration = Force / mass. Plugging in the values, acceleration = 2000 N / 1000 kg = 2 m/s^2.
The acceleration of the car can be calculated using the formula: acceleration = force / mass. Plugging in the given values: acceleration = 4000 N / 1000 kg = 4 m/s^2. Therefore, the car's acceleration when braking is 4 m/s^2.
The acceleration of the hot air balloon can be calculated using Newton's second law, which states that acceleration is equal to the net force divided by the mass. Given that the lift force is 1000 N and the mass is 50 kg, the acceleration would be 20 m/s^2.
Just use Newton's formula: force = mass x acceleration. Solving for acceleration: acceleration = force / mass.
To find the acceleration, use Newton's second law: F = ma, where F is the net force, m is the mass, and a is the acceleration. Rearranging the formula to solve for acceleration gives a = F/m. Plugging in the values F = 4000 N and m = 1000 kg, the acceleration of the car is 4 m/s^2.
The acceleration produced can be calculated using Newton's second law: Force = mass x acceleration. Rearranging the formula to find acceleration, acceleration = Force / mass. Plugging in the values, acceleration = 2000 N / 1000 kg = 2 m/s^2.
Generally, Acceleration is Force divided by Mass. Therefore, acc. = 1000/65 = 15.38 m/sec squared = 15.36 m/s2.
The acceleration of the car can be calculated using the formula: acceleration = force / mass. Plugging in the given values: acceleration = 4000 N / 1000 kg = 4 m/s^2. Therefore, the car's acceleration when braking is 4 m/s^2.
The acceleration of the hot air balloon can be calculated using Newton's second law, which states that acceleration is equal to the net force divided by the mass. Given that the lift force is 1000 N and the mass is 50 kg, the acceleration would be 20 m/s^2.
Force = mass * acceleration Since the only force acting on the elevator is gravity, the force is 1000*9.81 = 981N Towards the ground Note that it is essential to put the direction that the force is acting as it is a vector quantity.
The force required can be calculated using Newton's second law, F = ma. Given mass (m) = 50 kg and acceleration (a) = 20 m/s^2, the force (F) would be 1000 N. Hence, a force of 1000 N must act on the body to produce the given acceleration.
There is no net force in free fall so force is zero
The boat's acceleration is 3.33 meters per second squared.
To get acceleration when force is in Newtons and mass is in grams, you need to convert the mass from grams to kilograms (1 gram = 0.001 kg) to be consistent with the unit of force (Newton). Then you can use the formula: acceleration = force / mass.
Acceleration should be in meters per second squared.To calculate the force, simply use Newton's second law (multiply the mass times the acceleration). Since all the units are the standard SI units, the answer will be in newtons.
Assuming you mean acceleration is 1.5 meters per second per second then F = ma = 1000(1.5) 1500 Newtons
Just use Newton's formula: force = mass x acceleration. Solving for acceleration: acceleration = force / mass.