What is the acceleration of a car moving along a straight road that increases its speed from 0 to 100 km/h in 10 s? 10 m/s2 100 km/h·s 1 km/h·s 10 km/h·s

Answers

Answer 1
Answer: 100 - 0 km/ 10 seconds. Divide it and then you will get your answer. Answer : 10km/ seconds

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What is BEST to say about a runner who is running at a constant velocity? A. Their acceleration is positive. B. Their acceleration is negative. C. Their acceleration is zero. D. Their acceleration cannot be determined.

Does our atmosphere get bigger?

Answers

Yes it does. I read about it in my school book.

As more lamps are put into a series circuit, the overall current in the circuit a. Increasesb. Decreasesc. Remains the same

Answers

Answer:

b. Decreases

Explanation:

The total resistance of a series circuit is equal to the sum of the individual resistances:

R_T=R_1+R_2+...+R_n (1)

Therefore, as we add more lamps, the total resistance increases (because we add more positive tems in the sum in eq.(1).

The current in a circuit is given by Ohm's law:

I=(V)/(R_T)

where V is the voltage provided by the power source and R_T is the total resistance. We notice that the current, I, is inversely proportional to the total resistance: therefore, when more lamps are added to the series circuit, the total resistance increases, and therefore the current in the circuit decreases.

Question no-2 (10 mark)
find the anguler momentum of a body if K.E = 4 jule and M.I = 2kg m2.

Answers

Answer:

KE = 1/2 I ω^2

Given I = 2 kg m^2 and KE = 4 J

ω = (2 KE / I)^1/2 = (2 * 4 / 2)^1/2 = 2^1/2 sec

P = I ω        definition of angular momentum

P = 2 kg m^2 * (2 KE / I)^1/2 / sec = 2 * 2^1/2 kg m^2 / sec

Which one of the following types of electromagnetic radiation causes certain substances to fluoresce? A. Cosmic rays
B. Ultraviolet rays
(C. X rays)
D. Infrared waves

A virtual image produced by a lens is always

A. located in front of the lens.
(B. located in the back of the lens.)
C. smaller than the object.
D. larger than the object.

Reflecting telescopes are popular because they're

A. more durable than a refracting telescope.
B. more powerful than a refracting telescope.
C. easier to build than a refracting telescope.
(D. smaller than a refracting telescope.)

The unit for measuring the rate at which light energy is radiated from a source is the

A. lux.
B. lumen.
(C. candela.)
D. Angstrom

A magnifying glass is an example of a _______ lens.

A. plano-concave
(B. plano-convex)
C. double-concave
D. converging

my answer is in ( ) and the answers are wrong please tell me the correct answer because i dont have a clue

Answers

1. Answer;

B. ultraviolet rays

Ultraviolet rays are the type of electromagnetic radiation that causes certain substances to fluoresce.

Explanation;

  • UV light is an electromagnetic radiation present in sunlight, that is shorter in wavelength than visible light and longer than X-rays.
  • Ultraviolet radiation is undetectable by the human eye, however, when it falls on certain substances, it may cause them to fluoresce that is emit electromagnetic radiation of lower energy, such as visible light.
  • Fluorescence is a phenomenon that causes a mineral to glow within the visible spectrum when exposed to ultraviolet light.

2. Answer;

B. located in the back of the lens.

Explanation;

  • Virtual images are those images that are locations from where lights appears to have converged. Additionally, virtual images can not be reproduced on a a screen, and occur on the opposite side of the object and are always upright.
  • Virtual images are formed by the diverging or concave lenses or by placing the object inside the focal length of a converging lens. The image is located at the back of the lens.

3. Answer;

C. easier to build than a refracting telescope.

Explanation;

  • Reflecting telescopes are those telescopes that uses mirrors to focus the light while refracting telescopes uses lenses to focus the light.
  • Reflecting telescopes have many advantages over refracting telescopes. These includes, the fact that mirrors don't cause chromatic aberration and they are easier and cheaper to build large.
  • Additionally, they are  easier to mount because the back of the mirror can be used to attach to the mount.

4. Answer

C. Lumen

The unit for measuring the rate at which light energy is radiated from a source is the  Lumen.

Explanation;

  • Luminous flux is the time rate of the flow of light, or the visible energy produced from a certain light source.  It is the quantitative measure of brilliance of a light source. The unit of luminous flux is lumen (lm. 
  • Luminous intensity on the other hand is a measure of the wavelength-weighted power emitted by a light source in a particular direction per unit solid angle. Luminous intensity is measured in Candela.
  • We could say that one lumen is the luminous flux of the uniform point light source that has a luminous intensity of 1 candela.

5. Answer;

B. Plano-convex lens

A magnifying glass is an example of a plano-convex lens.  

Explanation;

  • Convex lenses are types of lenses that are thicker at the center and thinner at the edges. Plano-convex lens is a type of convex lens.
  • Plano-convex lenses are types of lenses that are positive focal length elements with one spherical surface and one flat surface.
  • These types of lenses are designed for parallel light use or simple imaging. therefore they are ideal for all purpose focusing elements.
  • Magnifying glass is a type of convex lenses and an example of plano-convex lens, that is used to produce magnified image of an object.
1) It's B. Ultraviolet rays cause substances to fluoresce.
2) It's D. The lens enlarges the image.
3) It's actually more powerful so it's B. People usually buy products based on quality than portability.
4) CORRECT
5) CORRECT

Device that measures electric current

Answers

This device is called an ammeter.

What is the length of an aluminum rod at 65°C if its length at 15°C is 1.2 meters?

Answers

Answer:

The new length is 1.20138 m

Explanation:

1- We get the increase in length:

The old length = 1.2 m

The coefficient of expansion of of aluminum is 23 * 10⁻⁶ /K.

The old temperature is 15°C.

The new temperature is 65°C

The increase in length= old length * coefficient of expansion *change in temperature

The increase in length = 1.2 * 23 * 10⁻⁶ * (65-15)

The increase in length = 0.00138 m

2- getting the new length:

new length = old length + increase in length

new length = 1.2 + 0.00138

new length = 1.20138 m

Hope this helps :)

1.201386 meters at 65 degrees C.      
 Will be your answer!

Hope I Helped!