6.78 x 10^8 MHz
5.36 x 10^6 kV
1500mA
Calculate the following numbers into scientific notation (include units)
7800nm + 95pm =
2500nm - 7pm =
(65x10^4m) x (4.5x10^-6s-1)=
(24x10^5m) / (2x10^-8s) =
convert the following to the prefix commonly used (use units)
55 000 000 Hz
4.8x10^4V
0.0068s
0.00000000234m
Answer:
The solubility of most solids decrease as temperatures decreases.
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5INGH
Explanation:
Answer:
False
Explanation:
Inattentionla blindness is a condition that happens when you overview or do not notice an object that is not supposed to be in a certain place and that is strange for its context because you are paying attention to something else, this means that if you do a task that needs a great deal of attention you will actually increase the inattentional blindness.
The correct answer is F
reflection
refraction
interference
Answer: reflection
Explanation:
SONAR - Sound Navigation and Ranging
It works on the principle of Echo i.e. the reflection of sound. Sound waves are sent out which get bounced off a nearby object. The reflected sound waves is detected and distance to the object is estimated. Sonar is used to detect, navigate or communicate objects underwater. Thus, a fishing boat uses sonar to locate the fish. It is employing reflection.
The angle at which the light got refracted is known as the angle of refraction. The angle of refraction of red light is 48.3°. While the angle of refraction of Violet light is 47.8°.
"The ratio of the sine of the angle of incidence to the sine of the angle of refraction is a constant, for the light of a given color and for a given set of media,
According to Snell's law. The formula for Snell's law is
i is the incidence angle
r is the refractionangle.
n is the refractive index of the medium
For red light,
Hence the angle of refraction of red light is 48.3
For violet light,
Hence the angle of refraction of Violet light is 47.8°.
To learn more about snell's law refer to the link;
Answer:
Red light has an angle of refraction of 48.3°.
Violet light has an angle of refraction of 47.8°.
Explanation:
From Snell's law of refraction, the refractive index is the ratio of the sine of the angle of incidence to the sine of the angle of refraction.
For red light in water,
For violet light in water,