Q.Give the magnitude and direction of the net force acting on
Newton’s First Law tells us that whenever an object moves with constant velocity (including being at rest), the net force on it must be zero. For each case here, that means the vector sum of all forces is zero — no acceleration, no net force.
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Drop of rain falling at constant speed
The raindrop is moving downward at a steady speed — that means its velocity is constant. By Newton’s First Law, if velocity is constant, acceleration is zero, so the net force must be zero.
Two forces act on it: gravity (downward) and air resistance (upward). Since the speed is constant, these two exactly balance.
Net force = 0 N
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Cork of mass 10 g floating on water
The cork is stationary on the water surface — velocity is zero and stays zero. Again, no acceleration means net force is zero.
The forces are its weight (downward) and the buoyant force from water (upward). For the cork to float without sinking or rising, these must be equal and opposite.
Net force = 0 N
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Kite skillfully held stationary in the sky
“Stationary” means velocity is zero and remains zero — so net force is zero.
The kite experiences its weight (down), tension from the string (at an angle), and the lift from wind (at another angle). The person holding the string adjusts it so that all three forces cancel out exactly.
Net force = 0 N
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Car moving with constant velocity of 30 km/h on a rough road
Constant velocity (even on a rough road) means zero acceleration, hence zero net force.
The engine provides a forward driving force, while friction and air resistance act backward. On a rough road, friction is larger, but the driver adjusts the throttle so that the forward force exactly equals the total opposing force.
Net force = 0 N
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High-speed electron in space far from all material objects, free of electric and magnetic fields
“Far from all material objects” means no gravitational pull from planets or stars. “Free of electric and magnetic fields” means no electromagnetic forces. So no forces at all act on the electron.
Even though it’s moving at high speed, its velocity is constant (no forces to change it), so net force is zero.
Net force = 0 N
A common mistake is to think that because something is moving, there must be a net force in the direction of motion. That’s only true if it’s accelerating. Constant velocity (including zero) always means net force is zero — even if the road is rough or the object is heavy.
In all these cases, the answer is the same: zero net force. The only difference is which forces are cancelling each other out. Once you spot “constant speed” or “stationary”, you know the answer immediately — no calculations needed.
In every case — (a) through (e) — the net force is zero.
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