Answer:
Osmosis and cellular transport
Explanation:
Will mark as brainliest
:D
Answer:
false
true
true
true
false
The Apollo program, which was NASA's space program focused on landing astronauts on the Moon, led to numerous technological advancements and innovations.
Some of the notable technologies developed during the Apollo program include:
1) Spacecraft and Lunar Module: The development of the Apollo Command Module, Lunar Module, and the associated systems revolutionized human spaceflight.
2) Saturn V Rocket: which was capable of launching the Apollo spacecraft into Earth orbit and providing the necessary thrust to reach the Moon.
3) Lunar Roving Vehicle (LRV): The LRV greatly expanded the range of exploration and scientific research.
4) Spacesuit Technology: The Apollo program brought advancements in spacesuit technology to enable astronauts to survive in the harsh conditions of space and the lunar surface.
5) Guidance, Navigation, and Control Systems: To navigate and control the spacecraft during lunar missions, the Apollo program developed advanced guidance, navigation, and control systems.
6) Lunar Sample Analysis: The Apollo program brought back hundreds of kilograms of lunar samples, which led to breakthroughs in understanding the Moon's geology, its formation, and its history.
The program's legacy continues to influence and inspire advancements in space exploration, engineering, and various other fields.
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the computer revolution.
The electric field strength at a distance of 0.020 m from a 12 µC point charge is approximately 2.69 x 10⁸ N/C.
The electric field strength (E) at a point near a point charge is given by the equation:
E = k Q / r²
where:
k is Coulomb's constant, equal to 8.99 x 10⁹ Nm²/C²
Q is the magnitude of the point charge in coulombs
r is the distance from the point charge
Substituting the given values:
Q = 12 x 10⁻⁶ C
r = 0.020 m
E = k Q / r²
E = 8.99 x 10⁹ Nm²/C² x 12 x 10⁻⁶ C / (0.020 m)²
E = 2.69 x 10⁸ N/C
So the electric field strength at a distance of 0.020 m from a 12 µC point charge is approximately 2.69 x 10⁸ N/C.
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The relationship between the stiffness of a medium and the speed of the wave is directly proportional. Because molecules are closer in a stiff medium, an increase of stiffness in a medium would also result to an increase in which a wave travels.