You are an astronaut in space far away from any gravitational field, and you throw a rock as hard as you can. The rock will:

slowly slow down and stop

continue at the same speed forever

continue to accelerate at the rate it was when it left your hand


PLZ HELP QUICKLY!

Answers

Answer 1

Answer:

the rock will continue at the same speed unless it is affected by another force such as gravity and so if you threw it it will continue to move unless affected by a force

Explanation:

this is because Newton's first law states that every object will remain at rest or in uniform motion in a straight line unless compelled to change its state by the action of an external force.


Related Questions

What is the change in the direction of a wave when it passes obliquely from one medium to another called?
A
refraction
B
interference
C
diffraction
D
superposition

Answers

Answer:

Refraction?

Explanation:

3. consider the forces acting on a car. when the car is accelerating, it will move in the direction of the net force. this is because the force of the engine is large enough to overcome the forces of friction and air resistance. however, objects do not always move in the direction of the net force. explain how this would be the case for a car coming to a stop at a traffic light. your answer should include a diagram showing the forces acting on the vehicle.

Answers

The force that accelerates the car is the static friction force.

What is acceleration?

Acceleration is a rate at which velocity changes with time, in terms of both speed and direction. A point or an object moving in a straight line is accelerated if it speeds up or slows down.

According to the condition,

When the car is accelerating, it will move in the direction of the net force. this is because the force of the engine is large enough to overcome the forces of friction and air resistance.

However, objects do not always move in the direction of the net force.

To accelerate something, there needs to be a force from the outside. For the car accelerating from rest, the only thing acting on it in the forward direction is the friction due to the ground.

The force that accelerates the car is the static friction force. It is the only external force acting forward on the car and is therefore responsible for its acceleration per Newton's second law.

That force is the equal and opposite reaction to the force the wheel exerts backward on the ground per Newton's third law.

The below diagram shows the exact answer.

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What is the melting point of substance A?
Heating Curve of Substance A
600
500
400
E
Temperature (Cº)
300
200
100
Heat Added (J)​

Answers

Answer:

Solids are easily recognized by their ability to retain a fixed shape and definite volume. Particles making

up a solid are held together in a rigid form. They are not free to move about or slide past one another and

the solid does not have the ability to flow. (Although the particles of a solid do not move position to position, they do have motion in that they are constantly vibrating.

To change the temperature of a solid, heat energy must be added. The amount of heat energy that changes

the temperature of 1.0 g of a solid by 1.0°C is called its specific heat (c). Each substance has its own

specific heat. The specific heat of ice is 2.1 Joules/g°C. In other words we must supply 1.0 gram of ice

with 2.1 Joules of heat energy to raise its temperature by 1.0 °C.

The general equation for calculating heat energy to change the temperature of a solid is:

Heat = Mass x Specific Heat (solid) x Temperature Change

Q = m c DT

10 g 10 g 10 g 10 g 10 g 10 g

Calculate the heat necessary to change 10 g of ice(s) at -20 °C to 10 g of ice(s) at 0°C. (A-B)

Q = mc∆T = (10 g) (2.1 J/g°C) (20°C) = 420 J

If you continue to add heat energy once the temperature of the ice reaches 0°C , the heat absorbed is called

the heat of fusion (Lf). This heat is used to cause a change of phase (from a solid to a liquid). This heat is

increasing the potential energy of the molecules of the solid. No temperature change takes place. Each

substance has its own heat of fusion. The heat of fusion for ice is 340 Joules/g. Exactly the same amount

of heat is given up when 1.0 g of water is changed to ice. This heat is called the heat of crystallization.

The general equation for calculating heat energy to change a solid to a liquid is:

Heat = Mass x Heat of Fusion

Q = m Lf

Calculate the heat necessary to change 10 g of ice(s) at 0°C to 10 g of water(l) at 0°C.(B-C)

Explanation:

Q = mLf = (10 g)( 340 J/g) = 3400 J

Answer:

Correct Answer: 200° C

Explanation:

Have a great day!

1. Which of the following is carried by the waves from one place to another?

a) Velocity b) Energy c) Mass d) Wavelength

Answers

Answer:

B) Energy

Explanation:

In a system, when energy is transformed from one form to another
O
A. some energy is always destroyed.
O
B. new energy is created.
O
c. the total energy is conserved
O
d.
all energy changes to friction
HELP Please

Answers

Answer:

C: the total energy is conserved

Explanation:

In a closed system they total mechanical energy is always conserved although energy may change from one form to another

Answer:

C. the total energy is conserved

An object with a positive electric charge will be attracted to what? *

A.Any object no matter what its electric charge.
B.An object with no electric charge.
C.An object with a negative electric charge.
D.Another object with a positive electric charge.

Answers

Answer:

C. An object with a negative electric charge.

Final answer:

An object with a positive electric charge will be attracted to an object with a negative electric charge. This is due to the principle that unlike charges attract each other, which is governed by Coulomb's law. So the correct option is C.

Explanation:

An object with a positive electric charge will be attracted to an object with a negative electric charge. According to the principles of electrostatics, like charges repel, and unlike charges attract each other. When you have two objects, one positively charged and the other negatively charged, the electrostatic force between them will cause them to move towards one another. This attraction is explained by Coulomb's law, which states that the force between two point charges is directly proportional to the product of their charges and inversely proportional to the square of the distance between them.

An object with no electric charge, or a neutral object, can also be attracted to a charged object because of polarization that occurs when the charged object is brought near. The electric field of the charged object causes the charges in the neutral object to rearrange, creating a region with a slight excess of charge that is opposite to that of the charged object, leading to an attractive force. However, two positively charged objects would repel each other, as would two negatively charged objects.

Samantha and Emily are pushing a box of textbooks in the same direction across their classroom. Samantha is applying a force of 10 newtons, and Emily is applying a force of 10 newtons. What is the net force of their efforts?

Answers

Answer: 20 newtons

Explanation:

Given that:

Force applied by Samantha = 10 newtons

Force applied by Emily = 10 newtons

Direction of both forces = same

Net force of their efforts = ?

Since net force of forces applied in the same direction is obtained by adding up the seperate forces applied, then

Net force = (10 newtons + 10 newtons)

Net force = 20 newtons

Thus, the net force of their efforts is 20 newtons.

What is the force exerted by a catcher’s glove on a 0.15 kg baseball moving at 35 m/s that is stopped in 0.02 sec?

Answers

Answer: 262.5N

Explanation:

Given that:

Force exerted by a catcher’s glove (F) = ?

Mass of baseball (m) = 0.15 kg

Speed (s) = 35 m/s

Time (t) = 0.02 sec

The force exerted is obtained by dividing the momentum by time.

i.e Force = momentum/time

(since momentum is equal to the product of mass and speed)

i.e F= mv/t

F = (0.15 kg x 35 m/s)/0.02 sec

F = 5.25kgm/s / 0.02 sec

F = 262.5N

Thus, the force exerted by a catcher’s glove is 262.5 newton

Final answer:

The force exerted by a catcher's glove on a 0.15 kg baseball moving at 35 m/s that is stopped in 0.02 sec is 262.5 N in the direction opposite to the baseball's initial motion.

Explanation:

The force exerted by a catcher’s glove on a baseball can be found using Newton's second law of motion, which states that force is equal to the mass of an object multiplied by its acceleration (F = ma). The acceleration can be calculated by using the change in velocity (final velocity - initial velocity) divided by the time it takes to change the velocity.

Since the baseball is stopped, its final velocity is 0 m/s. Therefore, the acceleration a is (-35 m/s) / 0.02 s = -1750 m/s² (the negative sign indicates a decrease in speed). Subsequently, the force F exerted can be calculated as (0.15 kg) × (-1750 m/s²), which results in -262.5 N. The negative sign indicates that the force is applied in the direction opposite to the baseball's motion.

Thus, the force exerted by the glove on the baseball is 262.5 N in the direction opposite to the initial motion of the baseball.

This type of soil occur in temperate climates where rainfall is moderate to high.
Question 4 options:


pedocal


laterite


pedalfer


humus

Answers

Answer:

Pedalfer soils

Explanation:

6.18b: Pedalfer soils occur in temperate climates experiencing moderate to high rainfall.

The type of soil that occurs in temperate climates where rainfall is moderate to high is pedalfer soil.

What is a temperate climate?

A temperate climate is a moderate climate that is characterized by relatively mild temperatures and distinct seasonal changes.

Here,

Pedalfer soils are also known as "brown earth" and are characterized by a high content of iron and aluminum oxides. They are formed in regions with a humid climate, where rainfall leaches away nutrients and minerals from the topsoil and causes the accumulation of iron and aluminum oxides in the subsoil. Pedalfer soils are generally fertile and are commonly used for agricultural purposes due to their ability to support plant growth.

In contrast, pedocal soils are found in arid or semi-arid regions, laterite soils are found in tropical regions with high rainfall, and humus is a type of organic matter that can be found in various soil types.

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Use the image to answer the questions about The current is flowing
the right-hand rule.
The magnetic field is flowing out of the_____
______of the screen and into the
________of the screen.

Answers

Answer:

the current is flowing to the left

the magnetic field is flowing out of the bottom of the screen

the screen and into the top of the screen.

Explanation:

Which statement about one of Newton’s laws of motion is incorrect ?
A)the total force on an object is calculated by multiplying it mass times its acceleration,
B)An object is motion continues in motion unless acted upon by and outside force.
C) For every action there is an equal reaction perpendicular to the direction of the force.
D)a=F/m

Answers

A is incorrect b and c and Newton’s laws and D is the laws applied

According to Newton's law, the incorrect statement is "for every action, there is an equal reaction perpendicular to the direction of the force". Therefore, option C is correct.

This statement does not accurately represent Newton's third law of motion. Newton's third law states that "For every action, there is an equal and opposite reaction." The reaction force is equal in magnitude but opposite in direction to the action force, not necessarily perpendicular to it.

These laws describe the relationships between the motion of objects and the forces acting upon them. They are foundational concepts in the field of classical mechanics and provide a framework for understanding how objects move and interact with one another. Therefore, option C is correct.

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(60 POINTS!!) Which lunar phase follows a waxing gibbous phase
a. Full
b. New
c. First quarter
d. Third quarter

Answers

After the waxing gibbous, the lunar phase is the full moon so the answer is A.

Answer:

A

Explanation:

Full moon is the phase after a waxing gibbous

Drag each label to the correct category.
Decide whether each statement describes mass or weight.
measured in newtons
measured in kilograms
does not change when
gravity changes
changes when gravity
changes
the amount of matter
in something
a gravitational force
Mass
Weight

Answers

Answer:

See details below

Explanation:

1) The amount of matter in something -  is a mass - does not change when gravity changes - it is measured in kilograms.

2) a gravitational force - is a force (normally called weight) - changes when gravity changes - it is measured in newtons.

-- measured in newtons  . . . . . Weight

-- measured in kilograms  . . . . . Mass

-- does not change when gravity changes  . . . . . Mass

-- changes when gravity  changes  . . . . . Weight

-- the amount of matter  in something   . . . . . Mass

-- a gravitational force . . . . . Weight

Frogs, hawks, and lions are all _________
A.herbivores
B.carnivores

Answers

Answer:

A. Carnivores

Explanation:

Frogs, hawks, and lions are all carnivores. Thus, the correct option for this question is B.

What are Carnivores?

Carnivores may be characterized as animals or organisms that typically eat the meat or flesh of other animals or a plant that traps and digests insects or other small animals. Some examples of carnivores may include lions, eagles, leopards, polar beer, frogs, etc.

Carnivorous animals have specialized dentition to hunt and kill prey. Some carnivorous animals such as chameleons and a few species of frogs have long sticky tongues to catch prey. Most carnivores are usually fast as they need to chase and tire their prey. Carnivores are also known as predators.

Organisms like grasshoppers, goats, horses, rabbits, deer, etc. are categorized under the category of herbivores as they only eat plants and their derived products.

Therefore, frogs, hawks, and lions are all carnivores. Thus, the correct option for this question is B.

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1. Butterflies usually are identified by the colors and patterns on their wings. Butterflies have four wings. The two wings near the butterfly's head are "forewings while
ead are forewings while
the wings near the butterfly's tail are "hindwings. You can use the following dichotomous key to identify four common butterfly species in North America.
i
ii.
Hindwings pointed
Go to 2
Hindwings rounded ..................... Goto 3
Wings mainly yellow ............... Papilio glaucus
Wings mainly black .............. Papilio polyxenes
Wings orange with black piping...Danaus plexippus
Wings yellow with black edges..... Colias philodice
ii.
i.
i.
Based on the key, what speries of butterfly is shown below?
A Papilio glaucus

Answers

Final answer:

The butterfly in question is most likely a Papilio glaucus. This determination is made based on the features described in the provided dichotomous key, mainly the color of the wings. In a real situation, other factors such as geography could also play a role in identification.

Explanation:

The question presents a dichotomous key that is used to identify species, in this case, butterfly species based on wing shape and pattern. This is a common biological identification method. The butterfly in question is identified as Papilio glaucus.

This determination is based on the key provided: if the butterfly's hindwings are pointed or rounded (no specific shape was mentioned in the question), then we check the primary color. The Papilio glaucus is primarily yellow, therefore, if the butterfly has primarily yellow wings it is most likely this species.

Please note, that real-world species identification can be more complex and involve factors such as geographical location, time of year, and more.

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What can occur in a physical change?

Answers

A physical change involves a change in physical properties. Examples of physical properties include melting, transition to a gas, change of strength, change of durability, changes to crystal form, textural change, shape, size, color, volume and density.

Show that a body projected vertically up from the ground, the distance travelled by it in the last second of its upwards motion is an constant independent of its initial velocity

Answers

Answer and explanation:

Let [tex]v_1[/tex] be the velocity of a body projected vertically up, 1 second before it reaches its maximum height. We know, from the kinematics equations, that the distance traveled [tex]y[/tex] in an interval of time [tex]t[/tex] is equal to:

[tex]y=v_0t-\frac{1}{2}gt^{2}[/tex]

Then, in the last second, the distance traveled [tex]y_1[/tex] is equal to:

[tex]y_1=v_1t-\frac{1}{2}gt^{2}[/tex]

But the velocity [tex]v_1[/tex] is related to the time by the equation:

[tex]t=\frac{v_1}{g}\\\\v_1=gt[/tex]

And substituting this expression in the equation above, we obtain:

[tex]y_1=gt^{2}-\frac{1}{2}gt^{2}\\\\y_1=\frac{1}{2}gt^{2}\\\\y_1=\frac{1}{2}(9.8m/s^{2})(1s)^{2}\\ \\y_1=4.9m[/tex]

It means that the distance traveled by the body in the last second of its motion is a constant, independent of its initial velocity.

A 2.0 kg guinea pig runs at a speed of 1.0 m/s what is the guinea pigs kinetic energy

Answers

The kinetic energy for the above data is 1.0000 J.

The kinetic energy (KE) is calculated using the formula KE = 1/2 * m * v^2, resulting in a kinetic energy of 1.0 Joule for a 2.0 kg guinea pig moving at a speed of 1.0 m/s.

The kinetic energy (KE) of an object in motion is determined by the formula: KE = 1/2 * m * v^2, where m is the mass and v is the velocity. For the guinea pig in question, with a mass (m) of 2.0 kg and a velocity (v) of 1.0 m/s, the calculation is as follows:

KE = 1/2 * 2.0 kg * (1.0 m/s)^2

KE = 1/2 * 2.0 kg * 1.0 m^2/s^2

KE = 1.0 kg * 1.0 m^2/s^2

KE = 1.0 Joule

Therefore, the kinetic energy of the 2.0 kg guinea pig running at a speed of 1.0 m/s is 1.0 Joule.

A man walks 3.50 mi due east, then turns and walks 2.57 mi due north. How far
and in what direction is he from the starting point

Answers

Answer:

4.34 mi at [tex]36.3^{\circ}[/tex] north of east

Explanation:

The displacement of an object in motion is a vector connecting its initial position to the final position of motion.

In this problem, the man has 2 different motions:

- 3.50 mi due east

- 2.57 mi due north

We can take the east direction as positive x-direction and north as positive y-direction, so these two motions can be written as:

[tex]x=+3.50 mi[/tex]

[tex]y=+2.57 mi[/tex]

Since the two motions are perpendicular to each other, the resultant displacement can be found by using Pythagorean's theorem; therefore:

[tex]d=\sqrt{x^2+y^2}=\sqrt{3.50^2+2.57^2}=4.34 mi[/tex]

We can also find the direction using the equation:

[tex]tan \theta = \frac{y}{x}[/tex]

And therefore,

[tex]\theta=tan^{-1}(\frac{y}{x})=tan^{-1}(\frac{2.57}{3.50})=36.3^{\circ}[/tex]

Explain using complete sentences where on the HR diagram you would expect to find a main sequence star based on its physical properties.

Answers

Answer:

The Hertzsprung-Russel Diagram also known as HR diagram is stars' scatter plot showing the relation of luminosity or absolute magnitude vs spectral class or surface temperature. The main sequence stars can be plotted on a HR Diagram as a diagonal band as their physical properties vary a lot.

The mass of these stars ranges from about a tenth of that of the Sun to about 200 times the mass of the Sun. Inside these stars Hydrogen fusion results in Helium. 90% of the stars, including the Sun, in the Universe lies in this category.

Their surface temperature lies in the range of 2500 Kelvin to 40000 Kelvin.

And Giant Stars:

A giant star is a star with a radius much larger than that of our Sun (even hundreds of times bigger). They can be either blue giants or red giants: in the first case, the surface temperature is very high, higher than that of the Sun, while in the second case the surface temperature can be lower than that of the Sun. The same applies to the mass: blue giants are very massive stars, burning quickly their nuclear fuel, while red giants can have small masses (a little bit bigger than that of our Sun).

We can find giant stars in the upper part of the HR diagram, blue giants will be on the upper left corner since they have high luminosity and high temperature, while red giants will be on the upper right corner, having high luminosity but low temperature.  

Explanation:

17. Which of the following is the closest weight in newtons of a 7.0-kilogram
bowling ball? *
A. 7.0 newtons
B. 70 newtons
C. 700 newtons
d. 7000 newtons

Answers

Weight = (mass) x (gravity)

Weight = (7.0 kg) x (gravity)

On Earth, where (gravity) is roughly 10 N/kg . . .

Weight = (7.0 kg) x (roughly 10 N/kg)

Weight = roughly 70 Newtons

That's B on Earth.

It would be some other number on other bodies.

Final answer:

A 7.0-kilogram bowling ball on Earth would weigh approximately 70 newtons, as weight is calculated by multiplying mass by Earth's gravity (9.8 m/s²).

Explanation:

The weight of an object on Earth can be calculated using the formula Weight (N) = Mass (kg) × Gravity (m/s²). Since the standard acceleration due to gravity on Earth is approximately 9.8 m/s², a 7.0-kilogram bowling ball would have a weight of 7.0 kg × 9.8 m/s² = 68.6 N, which we round to 70 newtons (option B).

This conversion is crucial for solving problems that involve force and mass, such as questions on kinetic energy, momentum, and collision outcomes as typically covered in physics classes.

PLEASE ANSWER!!!!
Ingrid hangs a black shirt on the clothesline to dry. After a few hours, she removes the black shirt from the clothesline and notices that it feels hot. What causes the black shirt to feel hot? How does molecular motion change when the black shirt gets hot?
EXPLAIN!!!


Answers

Answer:

consumes the hot

Explanation:

Black consume heat and white reflects the heat and doenst get that hot

Compare and contrast Earth to the other inner planets.

Answers

The inner planets are;- Mercury, Venus, Earth and Mars.  Earth is the only planet which has atmosphere, water on the surface or know of  to have water(Mars might have water underground), and life.  

Mercury is pretty much a small planet on fire by day, but freezes at night.

Venus is a gas planet which is usually on fire in places too, but has mass ice craters on the surface.

Earth, well just look out your window.

Mars may have been an earth like planet at one stage, (still unknown) but is known as the red planet due to its volcanic activity.  Mars also has the biggest mountain/volcano on any known planet called Mt Olympus.  It's 3 times the size of Mt Everest.

Hope this helps!! :)

Answer:

contrast:

Earth is considered to be very unique because of its ability to sustain life and unique atmosphere that has the ability to keep earth at stable temperature with is crucial for plants, animals/ ocean and land, and humans to live.

compare:

Mars has been studied by scientists and have discovered what used to be bodies of water which means the formation of mars was similar to ours.

i hope this helped :)

Weight is a force that depends on mass and: *
A. friction
B. gravity
C. magnetism
D. energy conservation

Answers

B. gravity
because the weight depends on the strength gravitational pull from earth
B. Gravity bc it depends on the strength of the gravitational pull

is an apple hanging from a tree konetic energy or potential energy


Answers

Answer:

Potential

Explanation:

This is because it has not yet fallen, and it has the potential to fall and turn into kinetic energy. When it starts falling, it will be kinetic.

Answer:

Potential because it is in place.

Explanation:

Kinetic energy is when something is in motion. Potential is sitting still.

Hope this helps :)

A wave has 16 cycles in 208 m of space. It’s frequency is 4hz. What is the velocity of the wave

Answers

Answer:

52 m/s

Explanation:

Wavelength is the distance between two successive crests. Two crests make one circle hence 16 cycles are equal to 16 wavelengths. Each wavelength is equal to 208/16=13 m long

Speed of wave is given as the product of wavelength and frequency, expressed as

S=fw

Where f is the frequency and w is the wavelength

Substituting 13 m for w and 4 Hz for f then

S=4*13=52 m/s

Therefore, the speed is equivalent to 52 m/s

Figure 3
(b) The surface is tilted to an angle of 37 degrees from the horizontal, as shown above in Figure 3 The blocks are each given a push so that at the instant show
Other
they are
go de
1. Each block has a mass of 0.20 kg Calculate the magnitude of the net force exerted on the two block system at the instant shown above

Answers

Answer:

  3.92 N (straight down)

  2.36 N (down, parallel to the plane)

Explanation:

The only force acting on the system is apparently that due to gravity. The mass of the system is the sum of the masses of the blocks, so is ...

  0.20 kg + 0.20 kg = 0.40 kg

The force due to gravity is given by ...

  F = ma = (0.40 kg)(9.8 m/s²) = 3.92 N . . . (straight down)

That force is acting straight down, so is at an angle with respect to the direction the blocks are constrained to move.

The force down the plane is (3.92 N)·sin(37°) ≈ 2.359 N . . . (down the plane)

_____

Comment on the answer

We have given two answers to the question, because in this frictionless system, the force acting normal to the plane of motion is irrelevant to the system dynamics. The question asked for the net force on the system, which is the force due to gravity, so we have given that magnitude also.

The parallel force on the block system is 2.36 N

The perpendicular force on the bock system is 3.13 N.

The given parameters;

mass of the first block, m₁ = 0.2 kgmass of the second block, m₂ = 0.2 kgangle of inclination, θ = 37⁰

The magnitude of the net force exerted on the block system is calculated as follows;

The parallel force on the block system is calculated as;

[tex]F_{||} = mg \times sin(\theta)\\\\F_{||} = (0.2 + 0.2)\times 9.8 \times sin(37)\\\\F_{||} = 2.36 \ N[/tex]

The perpendicular force on the bock system;

F⊥ = mg x cos(Ф)

F⊥ = (0.2 + 0.2) x 9.8 x cos(37)

F⊥ = 3.13 N

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How do electromagnetism and gravitation differ from the strong and weak nuclear forces?

Answers

Electromagnetism is the interaction between charged particles. It is very long ranged. It can manifest as a force causing like charges to repel and unlike charges to attract. ... The weak nuclear force is very short ranged and is not a force at all.

compass needle normally points toward Earth's magnetic pole, which is near the North Pole. Which best explains why the
eedle moves away from the pole when it comes close to a current-carrying wire?
Current within the wire weakens the magnetic force of the pole.
Magnetism surrounding the wire weakens the magnetic force of the nole

Answers

Answer:

compass needle normally points toward Earth's magnetic pole, which is near the North Pole. Which best explains why the

eedle moves away from the pole when it comes close to a current-carrying wire?

Current within the wire weakens the magnetic force of the pole.

Magnetism surrounding the wire weakens the magnetic force of the nole

Explanation:

Answer:

(D)

Explanation:

A compass needle normally points toward Earth’s magnetic pole, which is near the North Pole. Which best explains why the needle moves away from the pole when it comes close to a current-carrying wire?

Current within the wire weakens the magnetic force of the pole.

Magnetism surrounding the wire weakens the magnetic force of the pole.

Current within the wire draws the needle toward the wire.

Magnetism surrounding the wire draws the needle toward the wire.

What force is required to move an object 8 m using 24 j of work?

Answers

Answer:

3N

Explanation:

Workdone = F x d

F = force

d = distance 8m

Workdone = 24J

24 = F x 8

Divide both sides by 8

24/8 = F x 8/8

3 = F

F = 3N

Other Questions
piaget believed that infants and toddlers A) carry out many activities inside their heads B) understand and interact with the world differently based on their development C) assimilate more than they accommodate D) are incapable of constructing schemes When determining the temperature of a substance, what property of its particles is being measured? Jonathan is working in his basement on a science fair project when his little sister closes and locks the door. Jonathan wants to let his parents know that he is stuck down in the basement. He can either yell as loudly as he can, bang on the metal pipes, or bang on the concrete wall. Which should he do if he wants someone to hear him? Explain your answer, and explain why the other options would not be as effective. How is Mr. Whites reaction different than Mrs. whites in this excerpt A tanker that ran aground is leaking oil that forms a circular slick about 0.2 foot thick. To estimate the rate dV/dt (in cubic feet per minute) at which oil is leaking from the tanker, it was found that the radius of the slick was increasing at 0.31 foot per minute (dR/dtequals0.31) when the radius R was 400 feet. Find dV/dt, using pi almost equals 3.14 . Tasks: Read the article "Jet Propulsion LaboratoryPreview the document", and answer the questions below. Please submit your answers by March 29st.Questions:1. Should Gentry Lee recommend launch or delay for the MBE mission? What are the most important factors to consider in this decision2. Identify the principal risk-management processes used in the MBE project. What role does each play, and what is critical for its success?3. Consider the role of JPLs senior systems engineer, Gentry Lee. What challenges did he face when implementing the risk management process at JPL? What characteristics seem critical for his success?4. Do the new risk management processes match JPLs strategy and culture?Please do not share the case document with others. The method of protecting an embryo from dehydration is due to the evolution of the _______ Determine the value of Kc for the following reaction if the equilibrium concentrations are as follows: [H2]eq = 0.14 M, [Cl2]eq = 0.39 M, [HCl]eq = 1.6 M. H2(g) + Cl2(g) 2 HCl(g) Determine the value of Kc for the following reaction if the equilibrium concentrations are as follows: [H2]eq = 0.14 M, [Cl2]eq = 0.39 M, [HCl]eq = 1.6 M. H2(g) + Cl2(g) 2 HCl(g) 12 29 2.1 10-2 8.7 10-2 47 How would the computer improve business productivity?A) software programs could be used to increase efficiencyB) workers could program games on their computers to decrease stressC) ITworkers could repair systems on siteD) products could be make more quickly Describe how a root can be written using a rational expression. Give an example. Decide whether each equation is true for all, one, or no values of x. 6x 4 = -4 + 6x EMERGENCY ON THE MOUNTAINWhat can you infer about the story from the title, EMERGENCY ON THE MOUNTAIN?? what is an emergency? what do you need to do when there is an emergency? what thing will you need to help? What is the simplified quotient?01 x2 - 6x + 9______________ 4x2 + 20x + 254x2 + 20x + 25______________ x2 - 6x + 9The correct answer is (1) Suppose Best Buy, buys 26" LED TVs from SONY for $138 each. They charge 72% more than this in the store. How much does this TV cost in the store? * Why does my skin seem to break out more after using new skincare products? Most of the people in the internment camps in the United States during World War II wereA)German-Americans.B)African-Americans.C)Italian-Americans.D)Japanese-Americans. Which statements support the claim that social mediais harmful to teens? Check all that applyoSharing videos can create feedback loops that leadto poor decision-makingTeens spend around three hours every day usingsome form of online media.An "all-about-the-likes" sense of values cannegatively influence decisions.Sharing images and memes can be fun.Brain development and online pressure can lead tohimpulsivity Assuming that 10.0% of a 100-W light bulb's energy output is in the visible range (typical for incandescent bulbs) with an average wavelength of 580 nm, and that the photons spread out uniformly and are not absorbed by the atmosphere, how far away would you be if 500 photons per second enter the 3.00-mm diameter pupil of your eye? (This number easily stimulates the retina.) (answer in km) Score: 0 O 1 PL2.3.1Solve the equation. Check your solution.2x + 4x - 5= 37x=(Simplify your answer.) The resulting R'S'T' is an example of what kind of transformation?