an object is hung on a spring scale and is measured to have a force of the Earth of 7.45 N. What is the mass if the object

Answers

Answer 1

The mass of the object hung on the spring is 0.76 kg.

The given parameters;

weight of the object, F = 7.45 N

The mass of the object is determined by applying Newton's second law of motion as shown below;

F = mg

where;

g is acceleration due to gravity on Earth = 9.8 m/s²

The mass of the object is calculated as;

[tex]m = \frac{F}{g} \\\\m = \frac{7.45}{9.8} \\\\m = 0.76 \ kg[/tex]

Thus, the mass of the object hung on the spring is 0.76 kg.

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Related Questions

Can anyone help with this?

Answers

Answer:

Answer:

1. Object

2. Sink

Explanation:

Step-by-step explanation:

1.5 < 1, the object is denser than the fluid

When an object is denser than a fluid it is submerged in, the object will sink.


please answer quick, i’ll give brainliest!

Answers

Answer:

3 seconds

Explanation:

30/10=3

What is the period of an object that makes 20 revolutions a minute?
Is it 4 seconds or is it 5 seconds or is it 2seconds or is it 3 seconds?

Answers

Answer: 3 seconds

Explanation: I hope this helps!

Around age 60, Alex's lens entirely lost its capacity to adjust to objects at varying distances. Alex has a condition called

Answers

There are various conditions usually associated with the eyes. Most are eye defects and this include, glaucoma, presbyopia, myopia, hypermetropia and the likes.

Around age 60, Alex's lens entirely lost its capacity to adjust to objects at varying distances developing the presbyopia condition.

Presbyopia is a genetic condition that affects the eye. It is also an age-related condition. In this case, the eye lens cannot change its shape easily as compared to when young. It occurs when the eye lose its ability to focus on objects at various distance producing blurry images.

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An object has a mass of m and a weight of w moon whole it is on the moon where the acceleration due to gravity is 1.6mls 2 what will be the weight of the object when it is brought to the earth

Answers

Answer:

calculate with yhis formula "w=m×g

where is an electron located within an atom

Answers

Answer: in the cloud around the nucleus.

Explanation:

got it right

what color of light does a low-pressure sodium street lamp give off?

Answers

Answer:

Yellow Light

Explanation:

Low-pressure sodium  lamps gives of a yellow/orange light/glow. Which can also be said as monochromatic yellow light. Because they only produce a single wavelength of yellow light, which results in a less intense light output.

Hopefully this is right! :D good luck

Umm please help?? Please right it on your own words so I don’t get in trouble.

Answers

I’m not really good with short summary’s but here are some example u can maybe use in a part of ur summary : the mitochondria is a good example for helping the cell function because it provides energy so it can push the nucleus to move. The nucleus acts as the brain of the cell and provides it with unique characteristics. And finally the cell membrane that acts as a protective barrier to the uncontrolled flow of water. (Use this for bullet point number two)

Shortlest wavelength?​

Answers

gamma rays, but if you’re looking for a certain color wavelength then blue. (or possibly purple)

the heat of combustion of ethane, c2h6, is 1560 kj/mol. what is the heat of combustion of ethane, in kj per gram?

Answers

Answer: 52 kj/gm

Explanation:

the heat of combustion of ethane, c2h6, is 1560 kj/mol. what is the heat of combustion of ethane, in kj per gram?

ethane is C2H6 and has a molecular mass of (2X12) + (6X1) = 30m

1 mole of ethane = 30 gmsso

1560 kj/moe = 1560 kj/30gm =

52 kj/gm

what is the dissolving substance in a solution? A.)particles B.)solute C.)solvent D.)water​

Answers

Answer:

b.Solute

Explanation:

The substance being dissolved is called the solute and the liquid doing the dissolving is called the solvent. In order for a substance to dissolve, the molecules of the solute need to interact with the molecules of the solvent.

The photo shows a skateboarder pushing her foot against the ground as she rides down a hill. How does this action cause the skateboarder's speed to change?

OFFERING BRAINLIEST PLS RESPOND ASAP


science

Answers

she is pushing her foot into the ground to cause momentum and have a higher velocity

Answer:

it increases the net force pointing down the hill, so she speeds up

Explanation:

Science 6.4.2


1. The longest banana split ever made was 8.04 km long (needless to say, more than one banana
was used). If an archer were to shoot an arrow horizontally from the top of Mount Everest, which
is located 8848 m above sea level, would the arrow's horizontal displacement be larger than 8.04
km? Assume that the arrow cannot be shot faster than 100.0 m/s, that there is no air resistance,
and that the arrow lands at sea level.

Answers

Answer: If an archer were to shoot an arrow horizontally from the top of Mount Everest, which is located 8848 m above sea level, would the arrow's horizontal

Explanation:

Given the mass of the yo-yo is m and the length of the string (radius of the circle traced by the yo-yo) is L, you find the moment of inertia to be I. If you double the length of the string, what is the new moment of inertia

Answers

At condition 1:
I = mL^2
At condition 2:
I’ = m(2L)^2 = 4mL^2 = 4I

What is the average speed of an object that travels 6 meters in 2 seconds and then travels 3 meters in 1 second?

Answers

Answer:

3 m/s

Explanation:

Average Speed = [tex]\frac{Total Distance}{Total time}[/tex]

Plug in the numbers, it will be (6m + 3m) divided by (2s + 1s), which is 9m/3s, which equals to 3m/s.

A roller coaster is at the top of a 102 m hill and a mass of 120 kg. The coaster (at this
moment) has
energy.

Answers

Height=h=102mMass=m=120gAcceleration due to gravity=g=10m/s^2

[tex]\\ \sf\longmapsto P.E=mgh[/tex]

P E means potential energy

[tex]\\ \sf\longmapsto P.E=102(120)(10)[/tex]

[tex]\\ \sf\longmapsto P.E=122400J[/tex]

PLEASE HELP ASAP! WILL GIVE BRANLIEST! Pay attention to what happens to the things around you as you go about your day. Describe three examples of Newton’s third law in action. In your examples describe the action and the equal and opposite reaction.

Answers

Answer:

jumping, pulling a elastic band, bouncing a ball

Explanation:

when you jump, your legs apply a force to the ground, and the ground applies and equal and opposite reaction force that propels you into the air.

When we pull an elastic band, it automatically returns to its original position. The more you pull the more force it generates. This is the same when you pull or compress a spring. The action (applied force) is stored as energy and is released as a reaction with an equal and opposite force

A ball is able to bounce because of the reaction from the ground. If there was no reaction then the ball would not bounce but rather stick to the ground.

I need some help with this

Answers

It is B: low precision,low accuracy

Explanation:

Have a great day =)

A weightlifter raises a 180-kg barbell to a height of 1.95 m. How much work is done by the weightlifter in lifting the barbells

Answers

P= 10m = 10 x 180 = 1800 N

work is done by the weightlifter in lifting the barbells :

A= Ph = 1800 x 1.95 = 3510 J

ok done. Thank to me :>

There are normally two types of common cables in your home. Explain why the cables have 2 or 3
wires inside. Why is there not only one?

Answers

Answer:

it's because every wire is different and the insides of it are possitive and negative

Explanation:

hope my answer is correct

Why does plasma challenge what we know about matter? How does it confirm what we already know?

Answers

Being made of charged particles, plasmas can do things gases cannot, like conduct electricity. And since moving charges make magnetic fields, plasmas also can have them. In an ordinary gas, all the particles will behave roughly the same way. Auroras, lightning, and welding arcs are also plasmas; plasmas exist in neon and fluorescent tubes, in the crystal structure of metallic solids, and in many other phenomena and objects. The Earth itself is immersed in a tenuous plasma called the solar wind and is surrounded by a dense plasma called the ionosphere.

Plasma is a type of matter in which many electrons freely roam around the nuclei of atoms.

What is plasma?

Although plasma is commonly thought of as a subset of gases, the two states behave very differently. Plasmas, like gases, have no definite shape or volume and are denser than solids or liquids.

Plasma is a sort of matter in which numerous electrons freely roam around the nuclei of atoms.

Plasma has been described as the fourth state of matter, alongside solid, liquid, and gas.

Normally, electrons in a solid, liquid, or gaseous sample of matter remain bound to the same nucleus.

Thus, plasma is considered a distinct phase because it does not conform to the standard descriptions and physical laws that are used to describe the standard three states of matter.

For more details regarding states of matter, visit:

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As galáxias são maiores do que os enxames de estrelas?

Answers

[tex]▪▪▪▪▪▪▪▪▪▪▪▪▪  {\huge\mathfrak{Responder \;\;a}}▪▪▪▪▪▪▪▪▪▪▪▪▪▪[/tex]

As galáxias são geralmente maiores do que os aglomerados de estrelas. Como disse Geller ~ As galáxias são como as cidades em que vivem os aglomerados de estrelas. As galáxias podem ter cerca de milhares ou mais aglomerados de estrelas ~

I hope it helps ~

A star with a mass like the Sun which will soon die is observed to be surrounded by a large amount of dust and gas -- all material it has expelled in the late stages of its life. If astronomers want to observe the radiation from such a giant star surrounded by its own debris, which of the following bands of the spectrum would be the best to use to observe it?

a. gamma-rays
b. x-rays
c. ultraviolet
d. infrared
e. very long wavelength radio waves

Answers

Answer: D. Infrared

Infrared is the best way to observe it.

Can you answer it for me pls

Answers

Answer:

the answer is b. because liquid always bubble when boiling

A kickball is kicked straight up at a speed of 22.4 m/s. How high does it go?

Answers

Answer:

25.6 meters

Explanation:

have a good day

11 An aeroplane is travelling horizontally at a speed of 80 ms", and drops a crate of emergency supplies
(Figure 2.39). To avoid damage, the maximum vertical speed of the crate on landing is 20 ms.
You may assume air resistance is negligible.
80 ms
Figure 2.39 For End-of-chapter Question 11.
a Calculate the maximum height of the aeroplane when the crate is dropped.
b Calculate the time taken for the crate to reach the ground from this height.
• The aeroplane is travelling at the maximum permitted height Calculate the horizontal distance travelled
by the crate after it is released from the aeroplane.
12
12

Answers

a.

The maximum height of the aeroplane when the crate is dropped is 20.41 m

Using v² = u² - 2gs where u = initial vertical speed of crate = -20 m/s(since it is falling), v = final vertical speed of crate = 0 m/s (since it stops immediately it lands), g = acceleration due to gravity = 9.8 m/s² and s = maximum height of airplane when crate is dropped.

So, making s subject of the formula, we have

s = -(v² - u²)/2g

Substituting the values of the variables into the equation, we have

s = (v² - u²)/2g

s = -((0 m/s)² - (-20 m/s)²)/(2 × 9.8 m/s²)

s = -(-400 m²/s²)/(19.6 m/s²)

s = 400 m²/s²/19.6 m/s²

s = 20.41 m

So, the maximum height of the aeroplane when the crate is dropped is 20.41 m

b.

The time taken for the crate to reach the ground from maximum height is 2.041 s

Using v = u + gt where u = initial vertical speed of crate = -20 m/s(since it is falling), v = final vertical speed of crate = 0 m/s (since it stops immediately it lands), g = acceleration due to gravity = 9.8 m/s² and t = time taken for the crate to reach the ground from maximum height.

Making t subject of the formula, we have

t = (v - u)/g

Substituting the values of the variables into the equation, we have

t = (v - u)/g

t = (0 m/s - (-20 m/s))/9.8 m/s²

t = (0 m/s + 20 m/s))/9.8 m/s²

t = 20 m/s/9.8 m/s²

t = 2.041 s

So, the time taken for the crate to reach the ground from maximum height is 2.041 s

c.

The horizontal distance travelled by the crate after it is released from the aeroplane is 163.27 m

Since the horizontal velocity of the crate is the horizontal velocity of the crate, we calculate the horizontal distance the crate travelled after it is released from the aeroplane.from

d = Vt where V = horizontal velocity of crate = 80 m/s and t = time taken for crate to drop from maximum height = 2.041 s.

So, substituting the values of the variables into the equation, we have

d = Vt

d = 80 m/s × 2.041 s

d = 163.27 m

So, the horizontal distance travelled by the crate after it is released from the aeroplane is 163.27 m

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it took David 2 seconds to lift a 5 Newton bag of toys from the floor to the top of the top shelf, which is 3 meters tall. How much power did David use?


A. 3.3 W

B. 6.1 W

C. 7.5 W

D. 14 W

Answers

So power is equal to work over time and work is force times distance, you do 5 times 3 and get 15 dividing by 2 gives us 7.5 W answer c

a car is moving at a constant speed of 100 miles per hour for 2 hour. how far does the car travel?

a. 200 miles

b. 100 miles

c. 2 miles

d. 50 miles

Answers

Answer: a) 200 miles because your doing 2 hours and each hours is 100 miles  :)

EASY 35 POINTSSSSS PLSSSSSSSS



i just need notes on food weds so what ever u find just put on the answer

Answers

Answer:

the predator or tertiary consumer is not eaten except by saprophytes and maybe vultures, feeding starts from the green plants or producers going through a complex energy transfer

Fill in the blank to balance the equation: ___ AgI + Na₂S → Ag₂ + 2NaI

Answers

Answer:2AgI + Na2S → Ag2S + 2NaI I am pretty sure this is the answer

Explanation:

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