Answer:
B. The drafts at each window may be different because the windows aren’t near each other.
Explanation:
The measurement is imprecise since the temperature will be lower in the window that receives the draft directly. that is, if the draft comes from the north, the north window will perceive lower temperatures than the south window.
Answer: B
Explanation: PLATO
B. when it is at the equilibrium position
C. when it is fully stretched
D. when it is at near rest
Answer:
option (c)
Explanation:
The velocity of the oscillating body is zero when it is at its maximum displacement position from its mean position.
So, when the spring is fully stretched, means at maximum displacement the velocity is zero.
C. when it is fully stretched
B. virtual, Inverted, and small
C. real, Inverted, and small
D. virtual, upright, and enlarged
Answer:
real,inverted,and small
B.mechanical waves
C.electromagnetic waves
D.gamma rays
Answer: The correct option is B.
Explanation:
Acoustic deals with the study of mechanical waves and the mediums through which they travel. It includes sound, infra sound, ultrasound and vibrations.
The mechanical wave is a wave which can travel through a material medium. It can travel through solid, liquid and gases. Sound is the mechanical vibrations of the particles of a gaseous medium.
Therefore, acoustic involves the study of mechanical waves and the mediums through which they travel.
Answer:
g = 4.7 × m/
Explanation:
Given that the mass of the satellite = 700 kg, and 10,000 m above the earth;s surface.
From Newton's second law,
F = mg ............... 1
From Newton's gravitation law,
F = .................. 2
Where: F is the force, G is the gravitational constant, M is the mass of the first body, m is the mass of the second body, g is the gravitational force and r is the distance between the centers of the two bodies.
Equate 1 and 2 to have,
mg =
⇒ g =
But; G = 6.67 × N , M = 700 Kg, r = 10000 m
Thus,
g =
=
= 4.669 × m/
The force of gravity on the satellite is 4.7 × m/.
The force of gravity on a 700kg satellite 10km above the Earth's surface can be calculated using the equation F = mg.
The force of gravity on an object is given by the equation F = mg, where F is the force of gravity, m is the mass of the object, and g is the acceleration due to gravity.
On Earth's surface, the acceleration due to gravity is approximately 9.8 m/s^2. However, as the satellite is 10 km above the Earth's surface, the force of gravity will be slightly less than that.
To calculate the force of gravity on the satellite, we can use the equation F = mg. Substituting the mass of the satellite (700 kg) and the acceleration due to gravity (9.8 m/s^2 - (9.8 m/s^2 * (10 km/ 6371 km))), we can find the force of gravity.
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