How long was a 50 W lightbulb left on for if 500,002 J were burned?

Answers

Answer 1

" 50 W " means " 50 Watts "  or  " 50 Joules per second ".

(500,002 J) / (50 J/sec)  =  10,000.04 seconds

(That's 2 hours 46 minutes 40.04 seconds.)


Related Questions

What phase of the moon comes directly before a full moon?.

Answers

That is the Waxing Gibbous.

Please help!

Which resources are renewable resources?

Select all correct answers.


1. natural gas

2. solar

3. coal

4. hydroelectric

5. biomass

Answers

Answer: The answers are Biomass, Solar, and Hydroelectric! :)

Explanation:

help me with this pls ​

Answers

Answer:

8000J,100J,20

Explanation:

Wi =E×SE =400N × 20cm =8000J

Wo=L×SL=20N×5.0 m=100J

MA =L/E =400N/20N =20

A sound wave has a frequency of 695 Hz in air
and a wavelength of 0.49 m.
What is the temperature of the air?
Relate the speed of sound in air to temperature in units of Kelvin, but answer in units
of Celsius.
Assume the velocity of sound at 0 ◦C is
332 m/s.
Answer in units of degC

Answers

This question involves the concepts of the speed of sound, frequency, and temperature.

The temperature of the air is "14.24 °C".

Temperature of Air

First, we find the speed of sound at the given temperature:

v = fλ

where,

v = speed of sound = ?f = frequency = 695 Hzλ = wavelength = 0.49 m

Therefore,

v = (695 Hz)(0.49 m)

v = 340.55 m/s

Now, the relationship between the speed of sound and temperature can be given by the following formula:

[tex]\frac{v}{v_o} = \sqrt{\frac{T}{273\ k}}\\\\T = (273\ k)(\frac{v}{v_o})^2\\\\[/tex]

where,

T = Temperature = ?v = speed of sound in air at given temperature = 340.55 m/sv₀ = speed of sound in air at 0°C = 332 m/s

Therefore,

[tex]T = (273\ k)(\frac{340.55\ m/s}{332\ m/s})^2[/tex]

T = 287.24 k = (278.24 k -273) °C

T = 14.24 °C

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How does an insulator stop the flow of an electric current? Question 9 options: Electrons in an insulator do not move readily. Insulators convert electric energy to other forms of energy. Insulators have too many electrons. Insulators have a positive charge so they absorb electrons.

Answers

Insulators are often defined as materials that do not allow electricity to flow through them. Option A is correct. Electrons in an insulator do not move readily.

What is an insulator?

Insulators are commonly employed in physics. Insulators are often defined as materials that do not allow electricity to flow through them.

Insulators are also referred to as poor electrical conductors. We may discover various instances of these insulators in our daily lives. Insulators include materials such as paper, glass, rubber, and plastic.

Insulators are often defined as materials that do not allow electricity to flow through them. Electrons in an insulator do not move readily

Hence option A is correct. Electrons in an insulator do not move readily

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9) How much kinetic energy does a person have riding a bike is going 12 m/s? Let's assume that the
bike and person have a mass of 70kg.
A)
B)
C)

Answers

Kinetic Energy = [tex]\frac{1}{2} m*v^2[/tex]

m: mass -->70 kgv: velocity --> 12 m/s

Kinetic energy = [tex]\frac{1}{2}*70*(12^{2} ) = 5040[/tex] Joules

Hope that helps!

differentiate between loadstone and bar magnet​

Answers

Answer:

Explanation:

Permanent (Bar) Magnet. —-) Electromagnet
They are permanently magnetized. —-) These are temporarily magnetized.

A 60w bulb has a higher resistance than a 100w bulb, since the power rating is given assuming that the bulb is connected to a 120v source by itself. If you connect a 60w bulb and a 100w bulb in series to an outlet, which will shine brighter?.

Answers

Voltage drop across any components in series is proportional to its resistance. 60W bulb has higher resistance than 100W bulb if both the bulbs were rated for same voltage. So higher voltage drop will be across a 60W bulb.

In parallel voltage drops will be same across both the bulbs but current through it will be inversely proportional to the resistance. So 100W bulb draws more current than 60W bulbs.

60W dissipates more energy than 100W bulbs when in series and 100W bulbs dissipates more energy when in parallel.

What would happen if everyone on earth screamed at the same time?.

Answers

Answer:

There would be a huge sound like an applause. At 200 decibels (the loudest possible sound ever created on Earth), it could shatter ear drums.

Explanation:

Hope this helps

If everyone on the planet screamed at the same moment, it would be a tremendously loud and chaotic event.

The particular impacts and repercussions, however, would be dependent on a variety of parameters such as the strength of the screams, the length, and the location of persons.

The cumulative cries of billions of individuals would produce a deafening loudness, perhaps reaching levels far beyond what the human ear can handle.

Thus, those in close proximity to people yelling may experience discomfort, confusion, and even bodily pain as a result of the loudness.

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what is the name of Li1S

Answers

lithium sulfide

hope it helps

Which of the following is not an example of an electromagnetic wave.
A. microwaves
B. sonar
C. visible light
D. ultraviolet

Answers

Answer:

microwaves

Explanation:

Among the following, the wave which is not an example of the electromagnetic wave is water wave. Thus, the correct option is B. Explanation: Electromagnetic waves are produced as a result of the vibrations between the electric and magnetic fields. Examples of electromagnetic waves are X-ray, lightwave, radio wave, microwave, etc.

Explain that sound is a longitudinal wave that has a frequency, wavelength, and speed.

Answers

Longitudinal means that motion of particles are parallel to the direction of energy transport. Instead of peaks and troughs, longitudinal waves have compressions and rarefactions. The usual speed they travel is 5 miles per second, The frequency of the longitudinal wave is the number of wavelengths per second.
Hope it helps x

what is the difference between serious and parallel circuit​

Answers

In the simplest words conceivable, a series circuit provides the current of electricity with a single optimal path through the maze of resistance. Parallel circuits, on the other hand, are constructed in such a way that the current can travel down two or more routes through the circuit. Parallel circuits are distinguished from series circuits by the fact that the branching path of the current travels alongside itself as it passes through both loops at the same time.

In parallel circuits, the behavior of the current as it flows through the circuit is largely dictated by the fact that an electric current will seek out the lowest-voltage portions in a system and occupy these areas in whatever manner it is able to do.

It's not quite that straightforward, but you'll be relieved to know that there are only a handful of extra rules to consider in this situation. What exactly determines the path of least resistance for a current is a mystery.

I hope this helps you
:)

can someone please answer this ill give you brainliest and your getting 100 points.

Answers

Answer: i think its b

Explanation:

Answer:

All of the above

Explanation:

Extraction of fuel will affect fuel price so there will be social and economic costs. Extraction from the environment will have environment cost. It is also a political decision with political cost.

So the answer is all of the above.

How is an image created by an X-ray machine? A. High-energy electromagnetic waves are either absorbed by or reflected by body tissue. B. Low-energy electromagnetic waves are either reflected by or transmitted through body tissue. C. Low-energy electromagnetic waves are either absorbed by or transmitted through body tissue. D. High-energy electromagnetic waves are either absorbed by or transmitted through body tissue.​

Answers

Answer: C Low energy electromagnetic waves are either reflecting by or transmitted through body tissue.

Explanation:

shape of houses built in areas with hot climate and materials used

Answers

Answer:

Cement and sand will do

Explanation:

because without it you can't build

Answer:

Shape of houses built in areas with hot climate

Compact house forms, rather than sprawling, multi-wing designs work best in hot locales. Home designs with shaded porches, wrap around porches or plans with courtyards that create a shaded open area within the building are ideal.

How do you build a house in hot climates?

Place courtyards centrally to enhance cooling and ventilation. ...

Choose the right materials. ...

Use waterbodies and landscaping effectively. ...

Shade terraces and outdoor spaces. ...

Create sheltered, barrier-free spaces for air circulation. ...

Extend roofs to protect the walls and windows from direct heat.

Materials used building in areas with hot climate

The most common materials used for building walls in the warm-humid regions are stones, and earth-based bricks.

Concrete, bricks, and tile have a high thermal mass due to the large amount of heat energy needed to change their temperatures. This makes concrete an ideal building material for climates that are hot during the day but cooler at night.

At 40 degrees is 25g of NaNO3 saturated or unsaturated?

Answers

I think unsaturated

because -

At 55°C, a saturated solution would contain 120 g of solute, NaNO3. (Notice, this point is exactly on the solute's curve). If, for example we mixed in 140 g of NaNO3 instead of 110 g of solute at 55°C, we would create a SUPER saturated solution, because we would be at a point ABOVE the solute's solubility curve.

What would a wave with a low amplitude sound like? Question 3 options: It would sound quiet. It would sound loud. It would sound squeaky. It would sound deep

Answers

Answer:

it would be loud

Explanation:

it would be loud

Water flowing from a waterfall before it hits the pond below?

Answers

Answer:

Kinetic Energy

Explanation:

Ang prinsipyo ay nagsasaad na ang enerhiya ay hindi maaaring malikha o masira, ngunit maaari lamang ma-convert mula sa isang anyo patungo sa isa pa. Ang tubig sa tuktok ng napakataas na talon ay nagtataglay ng gravitational potential energy. Habang bumabagsak ang tubig, ang enerhiya na ito ay na-convert sa kinetic energy, na nagreresulta sa isang daloy sa isang mataas na bilis.


During a race, a horse's speed increases from 65 m/s to 73 m/s during the last 5.0 seconds of that race What was the rate of acceleration during this time?

Answers

Answer:

1.6m/s²

Explanation:

It was difficult to type the answer here

During a race, a horse's speed increases from 65 m/s to 73 m/s during the last 5.0 seconds of that race, 1.60 m/s² was the rate of acceleration during this time.

What do you mean by an acceleration ?

The rate of change of velocity is defined as acceleration. Acceleration usually indicates that the speed is changing, but this is not always the case. When an object moves in a circular path at a constant speed, it is still accelerating because its velocity direction changes.

Acceleration occurs when the speed of an object increases or decreases, or when it changes direction. Acceleration, like velocity, has two types: average and instantaneous.

a = v - v₀ / t

Then, a = 73 × 65 / 5

a = 1.60 m/s²

Thus, 1.60 m/s² was the rate of acceleration during this time.

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A baseball player uses a bat to hit a 0.145-kilogram stationary baseball with a force of 18,436 newtons. What is the force, in newtons, on the player's bat?

Answers

Answer:

18,436 newtons

Explanation:

hope it helps you

Suppose you had an electrical circuit and decided to change it into a new circuit. does the equivalent resistance of the new circuit compare to the old one ? If you were to insert additional resistors in series, how 。
a. No effect on the equivalent resistance
b. The equivalent resistance decreases
c. The equivalent resistance increases

Answers

Answer:

Yes becuase the circuit is fryed like sum french fries so yes yes is the yes option yes okay, yes but no

Explanation:

If you were to insert additional resistors in series, the equivalent resistance increases. The correct option is c.

What is equivalent resistance?

The resistances when connected in series has the equivalent resistance equal to the sum of all the individual resistances.

In the series circuit, the equivalent resistance is

Req= R₁ + R₂ + R₃

Suppose you had an electrical circuit and decided to change it into a new circuit.

The current through the circuit is the same for each resistor in a series circuit and is equal to the applied voltage divided by the equivalent resistance.

Yes, the equivalent resistance of the new circuit compare to the old one.

If you were to insert additional resistors in series, the equivalent resistance increases.

Thus, the correct option is c.

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Consider a resistor (R=1000 kΩ) and a capacitor (C=1μF) connected in series. This configuration is connected in series to a battery with an emf of 10 V.

After the capacitor is charged to its maximum value, the capacitor and resistor are disconnected from the battery and from each other. Then they are connected in parallel, so that the capacitor discharges through the resistor. How long will it take for the voltage across the capacitor to drop to 2.50 V?

Answers

Answer:

The maximum pressure is 10 V from across condenser.The highest charge mostly on condenser. 
Vc  = 10 x 1mf

= 10 ^ - 5C

The time it takes for the condenser to be 5 V different.        
Thus we have, 0.69 x 10 ^ - 3 seconds.

Why does an iron nail sinks in water but a wooder cork floats on water?

Answers

Answer:

Because nail is made of metal

Four objects are being tested to see how they are affected by fluid friction. Object W has a surface area of 4. 5 cm2, Object X has a surface area of 2. 5 cm2, Object Y has a surface area of 6. 2 cm2, and Object Z has a surface area of 3 cm2. Which object would experience the most fluid friction? W X Y Z.

Answers

Answer:  the  most affected object by friction is the Y

Explanation:

The fluid friction consists of 2 parts.

viscous resistance and friction with air.

assuming that the objects are in contact with the air, the situation is described by the following equation.

with: C= numerical drag coefficient

p= density

A= Area of the object

v= velocity

so assuming the other variables are constants the area of the object is directly proportional to the fluid friction

A steel wire 0.72 m long has a mass of 5 x 10⁻³ kg. If the wire is under a tension of 60N, what is the speed of the transverse waves on the wire?

Answers

Answer:

93m/s

Explanation:

Solution,

Here,

Length(l)=0.72m

Mass(m)=5x 10⁻³

T=60N

As we have

v=√T/μ

And

μ=m/l

μ=5 x 10⁻³ /0.72

Now

v=√60×0.72/5 x 10⁻³

v=√8640

v=92.95m/s=93m/s

What is the kinetic energy of a 1.000 g bullet traveling at 1,000 m/s?

Answers

Answer: B

Explanation:

The conventional units for Joules is defined with kilograms. We are given the mass of the bullet in grams. Using the conversion factor of 1kg = 1000g, we get that:

[tex]1g*\frac{1kg}{1000g} =1*10^-^3kg[/tex]

Kinetic energy is defined to be:

[tex]KE=\frac{1}{2} mv^2[/tex]

[tex]KE=\frac{1}{2} (10^-^3kg)(1000m/s)^2[/tex]

[tex]KE=500J=5*10^2J[/tex]

Based on fossil evidence, about how long ago did the
first single-celled life form appear on Earth?O 130 million years ago
O 1.5 billion years ago
O
2.5 billion years ago
O
4.1 billion years ago

Answers

Answer:

4.1 billion

Explanation:

The right back player hits the ball over the net to start play. EIVERCS
___ ___ ___ ___ ___ ___ ___
2. The score is 15-15. EDECU
___ ___ ___ ___ ___
3. Stopping the game for a rest period. MIET TOU
___ ___ ___ ___ ___ ___ ___
4. The serving team fails to score. ODISTEU
___ ___ ___ ___ ___ ___ ___
5. Two out of three games. TCAMH
___ ___ ___ ___ ___
6. A high pass near the net for a player to spike it. ETS
___ ___ ___
7. A hard driven ball from above the net. PKEIS
___ ___ ___ ___ ___
8. Service lands in the opponent’s court without being touched. CAE
___ ___ ___
9. Clockwise movement of players following a side-out. OINTOTAR
___ ___ ___ ___ ___ ___ ___ ___
10. Scoring when a point is awarded on every serve regardless of which team is serving. ALYRL

Answers

The right back player hits the ball over the net to start play. EIVERCS

(((service)))

2. The score is 15-15. EDECU

(((deuce)))

3. Stopping the game for a rest period. MIET TOU

(((time out)))

4. The serving team fails to score. ODISTEU

(((outside)))

5. Two out of three games. TCAMH

(((match)))

6. A high pass near the net for a player to spike it. ETS

(((set)))

7. A hard driven ball from above the net. PKEIS

(((spike)))

8. Service lands in the opponent’s court without being touched. CAE

(((ace)))

9. Clockwise movement of players following a side-out. OINTOTAR

(((rotation)))

10. Scoring when a point is awarded on every serve regardless of which team is serving. ALYRL

(((rally)))

The right back player hits the ball over the net to start play. - SERVE

S E R V E _ _ _

The score is 15-15. - DEUCE

D E U C E _

Stopping the game for a rest period. - TIME OUT

T I M E _ O U T

The serving team fails to score. - SIDEOUT

S I D E O U T _

Two out of three games. - MATCH

M A T C H _

A high pass near the net for a player to spike it. - SET

S E T _

A hard driven ball from above the net. - SPIKE

S P I K E _ _

Service lands in the opponent’s court without being touched. - ACE

A C E _

Clockwise movement of players following a side-out. - ROTATION

R O T A T I O N _

Scoring when a point is awarded on every serve regardless of which team is serving. - RALLY

What is game ?

A game is a systematic kind of play that is often done for enjoyment or amusement, however it may also be used as a teaching tool. A lot of games are also regarded as works of art. Sometimes people play games only for fun, while other times they play for recognition or reward.

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Caleb does the following:

i. walks 4 m, south

ii. walks 8 m, east

iii. walks 4 m, north

iv. walks 8 m, west.

Her overall displacement is .....?

Answers

i think it’s 0 since all the directions cancel each other out?
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