What is the magnitude of a point charge in coulombs whose electric field 46 cm away has the magnitude 2.9 N/C?

Answers

Answer 1

The magnitude of a point charge in coulombs whose electric field 46 cm away has the magnitude 2.9 N/C is 3.6 × 10⁻⁹ C.

When a charge q is positioned in space, it generates an electric field E. The electric field is a vector quantity that specifies the force per unit charge on another charge situated at any position in space. Its value is directly proportional to the magnitude of the charge and inversely proportional to the square of the distance between them. The magnitude of a point charge in coulombs whose electric field 46 cm away has the magnitude 2.9 N/C is explained below.

To determine the magnitude of a point charge in coulombs whose electric field is 46 cm away and has a magnitude of 2.9 N/C, use the following equation: E = (kq)/d², where k is the Coulomb constant, q is the point charge, and d is the distance between the point charge and the position where the electric field is to be measured.

The equation can be rearranged to solve for the point charge q: q = Ed²/k, where q is in coulombs, E is in newtons per coulomb, d is in meters, and k is 8.99 × 10⁹ N · m²/C², the Coulomb constant. Substituting the given values: E = 2.9 N/Cd = 46 cm = 0.46 m k = 8.99 × 10⁹ N · m²/C²q = (2.9 N/C) × (0.46 m)² / (8.99 × 10⁹ N · m²/C²)q = 3.6 × 10⁻⁹ C

Therefore, the magnitude of the point charge in coulombs is 3.6 × 10⁻⁹ C.

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Related Questions

An object of mass 5kg moves round a circle of radius 6m. If the period of the motion is \pi s, calculate the force towards the circle

An object of mass 5kg moves round a circle of radius 6m. If the period of the motion is \pi s, calculate

Answers

Answer:

Given: m = 5 kg, r =1 m, ω = 2 radian/s, centripetal force = ?

Formula : Centripetal force = mv²/r = mrω²

(Since v = r ω)

Put the values.

The force towards the circle is 120 N.

What is centripetal force?

Centripetal force is the pressure that acts on the frame to preserve it from shifting in a curved direction. Centripetal force is an actual force that is directed inward closer to the center of rotation. In easy phrases, whilst twirling an object tied to a string, the string will exert an inward centripetal force on the item.

calculation:-

⇒ mass of object = 5 kg,

⇒radius =6 m,

ω = 2 radian/s

⇒centripetal force = mv²/r = mrω²               (Since v = r ω)

centripetal force = 5*6*2*2

centripetal force = 120 N

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El peso normal de un estudiante de secundaria es 725 N y el área de los dos zapatos que usa es de 412 cm2 . La presión medida que sus zapatos ejercen en el suelo es

Answers

Answer:

Presión = 175,97 N/m²

Explanation:

Dados los siguientes datos;

Peso del alumno (fuerza) = 725N

Área de zapatos = 412 cm² a metros cuadrados = 412/100 = 4.12 metros

Para encontrar la presión, usaríamos la siguiente fórmula;

Presión = fuerza / área

Presión = 725 / 4.12

Presión = 175,97 N/m²

project: weather forcasting
Instructions
Click the links to open the resources below. These resources will help you complete the assignment. Once you have created your file(s) and are ready to upload your assignment, click the Add Files button below and select each file from your desktop or network folder. Upload each file separately.

Answers

B that is the correct answer

WILL GIVE BRAINILY TO FIRST PERSON TO ANSWER!!!!
Complete this sentence. If volume remains the same while the mass of a substance ________, the density of the substance will_______________. increases, stay the same decreases, stay the same decreases, increase increases, increase

Answers

The answer is increase.

d = m/v. if you increase the mass without changing the volume, the density will increase.

Which occurs when a warm fluid cools down?

⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔⇔

Answers

Answer: Energy is released to the environment.

Explanation:

The speed of your automobile has a huge effect on fuel consumption. Traveling at 65 miles per hour (mph) instead of 55mph can consume almost 20% more fuel. As a general rule, for every mile per hour over 55 , you lose 2% in fuel economy. For example, if your automobile gets 30 miles per gallon at 55mph, the fuel consumption is 21 miles per gallon at 70mph. If you take a 400-mile trip and your average speed is 83mph rather than the posted speed limit of 73mph, what is the extra cost of fuel if gasoline costs $3.26 per gallon? Your car gets 30 miles per gallon (mpg) at 63mph.

Answers

The extra cost of fuel for driving 83 mph instead of 73 mph is $3.7671.

The speed of your automobile has a huge effect on fuel consumption. Traveling at 65 miles per hour (mph) instead of 55mph can consume almost 20% more fuel. As a general rule, for every mile per hour over 55 , you lose 2% in fuel economy.

If you take a 400-mile trip and your average speed is 83mph rather than the posted speed limit of 73mph, then the extra cost of the fuel is calculated as:

* **Fuel consumption at 83 mph:** 30 mpg * (1 - 2% * (83 - 55)) = 27.6 mpg

* **Fuel consumption at 73 mph:** 30 mpg * (1 - 2% * (73 - 55)) = 29 mpg

* **Extra fuel used:** 400 miles / 27.6 mpg - 400 miles / 29 mpg = 2.4 gallons

* **Extra cost of fuel:** $3.26/gallon * 2.4 gallons = $3.7671

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A 5 Kg mass has an initial speed of 5m/s. After 3 sec, it has come to a speed of 70 m/s.

a. What is the acceleration of the mass?
b. What net force is acting on the mass during those 3 seconds?

Answers

Answer:

a

 \(a = 21.7 \ m/s^2\)

b

\(F = 108.5 \ N\)  

Explanation:

From the question we told that

   The mass is  m  =  5 kg

    The initial speed \(u = 5 m/s\)

    The time taken to attain \(v = 70 \ m/s\) is  t =  3 s

   

Generally from kinematic equation we have that

     \(v = u + at\)

=> \(70 = 5 + a * 3\)

=>  \(a = 21.7 \ m/s^2\)

Generally  the force acting is mathematically represented

        \(F = m * a\)

=>      \(F = 5 * 21.7\)  

=>      \(F = 108.5 \ N\)  

             

   

which type of active fire protection system controls and contains hazardous conditions until manual suppression can be achieved?

Answers

The type of active fire protection system that controls and contains hazardous conditions until manual suppression can be achieved is a Fire Alarm and Detection System.

A Fire Alarm and Detection System is designed to detect the presence of fire or smoke and initiate appropriate actions to mitigate the risk. It consists of various components such as smoke detectors, heat detectors, flame detectors, and a control panel. When a fire or hazardous condition is detected, the system activates alarms, alerts occupants, and triggers automatic responses to control the situation.

One important feature of a Fire Alarm and Detection System is its ability to control and contain hazardous conditions. Upon detecting smoke, heat, or flames, the system may activate dampers or vents to prevent the spread of smoke and fire to other areas of the building. It can also initiate the closure of fire doors or activate suppression systems like sprinklers or gas suppression systems to control the fire until manual suppression can be achieved.

By quickly detecting and containing hazardous conditions, a Fire Alarm and Detection System buys valuable time for occupants to evacuate safely and for responders to arrive on the scene. It helps to limit the damage caused by the fire and provides a safer environment for manual suppression efforts.

In summary, a Fire Alarm and Detection System is an active fire protection system that controls and contains hazardous conditions until manual suppression can be achieved. It plays a crucial role in fire safety by detecting fires early, activating appropriate responses, and ensuring the safety of occupants and property.

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The Rodriguez family roasted marshmallows over a campfire one night. They noticed that they all had to help carry the logs to the backyard, but only one of them had to sweep up the ashes and carry them away. In other words, the mass of the ashes was much less than the mass of the original logs. The mass of the logs was 10Kg before burning and after combustion, the ashes had a mass of 1Kg

Write a CER for this please!

Answers

The total mass of the system after combustion is therefore 1Kg (ashes) + 9Kg (gases and water vapor) = 10Kg, which is the same as the total mass before combustion.

What is law of conservation of mass?

Therefore, if the mass of the logs before burning was 10Kg, the total mass of the system before combustion was 10Kg (logs) + 0Kg (oxygen) = 10Kg. After combustion, the mass of the ashes was 1Kg, so the mass of the remaining gases and water vapor released into the atmosphere was 10Kg - 1Kg = 9Kg.

What are the three laws of energy conservation?

There are three fundamental quantities in mechanics that are conserved. These are power, forward motion, and angular momentum.

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Describe how the pendulum concept is used in the pendulum clock.

Answers

The concept of the pendulum is used in pendulum clocks to keep time. The pendulum swings back and forth in a continuous motion at a fixed rate that is determined by the length of the pendulum and the force of gravity.

This motion is used to regulate the movement of the clock's gears, which control the hands on the clock face.The mechanism of a pendulum clock is such that when the pendulum swings in one direction, it pushes a toothed wheel or gear, which in turn moves the other gears, causing the clock's hands to move forward.

When the pendulum swings back in the opposite direction, it again pushes the gear, causing the hands to move further forward. This cycle continues, with each swing of the pendulum causing the hands to move forward by a set amount. The length of the pendulum determines the rate at which the hands move forward, with longer pendulums causing the hands to move more slowly.

In a pendulum clock, the pendulum swings back and forth in a continuous motion at a fixed rate that is determined by the length of the pendulum and the force of gravity. This motion is used to regulate the movement of the clock's gears, which control the hands on the clock face. The pendulum clock is an improvement on the original verge escapement clocks, which were prone to errors due to the uneven force of the mainspring.The pendulum is a simple yet effective device that can keep accurate time. Its motion is governed by the law of conservation of energy, which states that energy cannot be created or destroyed, only transferred from one form to another.

When the pendulum is pulled to one side and released, it swings back and forth, converting potential energy into kinetic energy and back again. The period of the pendulum, or the time it takes to complete one full swing, is determined by the length of the pendulum and the force of gravity. By adjusting the length of the pendulum, the rate at which it swings can be altered, allowing it to keep accurate time.

To keep the pendulum clock running accurately, it needs to be adjusted periodically. This is done by altering the length of the pendulum, either by moving a weight up or down along the pendulum rod or by turning a screw at the bottom of the pendulum bob. This alters the period of the pendulum, which in turn changes the rate at which the clock runs.

The pendulum clock is a testament to the ingenuity of humanity. By using the simple yet effective concept of the pendulum, clockmakers were able to create accurate timepieces that revolutionized the way we keep time. Today, the pendulum clock may have been superseded by more advanced technologies, but its legacy lives on in the modern clocks and watches we use every day.

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A body having uniform velocity has zero acceleration

Answers

Acceleration means change in velocity with respect to time If the body is moving with uniform velocity then there will be no change in velocity which means acceleration will be 0.

Answer:

a = (V2 - V1) / t = 0 if V2 = V1

True

Note: an object moving in a circular path with a uniform speed does not have a uniform velocity

The length of nylon rope from which a mountain climber is suspended has a force constant of 1.2×104 N/m.
a. What is the frequency, in Hz, at which he bounces, given his mass and the mass of his equipment is 98 kg?
b. How much would this rope stretch, in centimeters, to break the climber's fall if he free-falls 1.8 m before the rope runs out of slack?
c. What is the frequency, in Hz, at which he bounces, given his mass and the mass of his equipment is 98 kg if the rope is twice as long?
d. How much would this rope stretch, in centimeters, to break the climber's fall if he free-falls 1.8 m before the rope runs out of slack if he rope was twice the length?

Answers

The length of nylon rope from which a mountain climber is suspended has a force constant of 1.15 ✕ 104 N/m.

What is the force constant measured in?

Spring constant is the common name for the force constant. Hooke's law states that F=-kx. k=N/m is used to replace units in the equation where F is force, x is displacement, and k is force constant (spring constant) to determine the SI unit of force constant (spring constant).

What is a graph's force constant?

The slope (gradient) of the graph equals the force constant. The proportionality constant, or k, is also known as the force constant in physics. A spring that is more rigid will have a higher value for k. The graph is no longer a straight line beyond point A since the gradient has changed and the formula F = Kx is no longer valid.

Calculation:

Maximum speed is at equilibrium where:

F = kx ⇒x =F/k

Now, F x=1/2mv²+1/2kx²

Solving we get,

V=F/√mk=Vmax

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Is a stone in the ground example of newtons first law of motion?

Answers

Answer:

yes, a stone in the ground is a example of newtons first law of motion because it does change it position until an external force is applied.

(Newton’s first law states that, if a body is at rest or moving at a constant speed in a straight line, it will remain at rest or keep moving in a straight line at constant speed unless it is acted upon by a force. )

Explanation:

This equation shows how the number of biscuits Olivia can bake is related to the amount of flour she has.

c = 15f

The variable f represents the number of scoops of flour Olivia has, and the variable c represents the number of biscuits she can bake. With 1 scoop of flour, how many biscuits can Olivia bake?

Answers

With 1 scoop of flour, Olivia can bake 15 biscuits if the the equation that shows the relation between number of biscuits and amount of flour is c = 15f.

c = 15 f

c = Number of biscuits

f = Number of scoops of flour

f = 1

c = 15 * 1

c = 15

This equation shows that number of biscuits that can be made is 15 times the number of scoops of flour. So if the number of scoops of flour is 1, the number of biscuits that can be made is 15.

Therefore, with 1 scoop of flour, Olivia can bake 15 biscuits

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which answer is right? thanks if u help me! :)

which answer is right? thanks if u help me! :)

Answers

Answer:7.5 x 10* 14

Explanation:

Answer: I believe the answer is 7.5 x 10^(14)Hz or 7.5E14Hz

Explanation: the formula for frequency is speed of the wave divided by the wavelength

f= c/wavelength

f- frequency

c-speed

(3 x 10^(8)) x (400 x 10^(-9))= 750,000,000,000,000 or 7.5E14 or 7.5 x10^(14)

Explain why the diffraction pattern of the hair appears in the horizontal direction that it does.

Answers

The diffraction pattern of the hair appears in the horizontal direction that it does because the diffraction pattern of the hair appears in the horizontal direction due to the bending and spreading of light waves around the hair.

1. When light encounters an obstacle, such as a hair, diffraction occurs. Diffraction is the bending and spreading of light waves around the obstacle.
2. The hair acts as a single slit, allowing light to pass through the narrow gap around it.
3. As the light waves pass through this gap, they interfere with each other, causing constructive and destructive interference.
4. This interference results in a diffraction pattern that appears in the horizontal direction, which is perpendicular to the direction of the hair.
5. The pattern is characterized by a series of bright and dark bands, with the bright bands representing areas of constructive interference and the dark bands representing areas of destructive interference.
In conclusion, the diffraction pattern of the hair appears in the horizontal direction due to the bending and spreading of light waves around the hair, which causes interference patterns to form perpendicular to the direction of the hair.

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a 3{,}500\, \text{kg}3,500kg3, comma, 500, start text, k, g, end text probe lands on a planet where the gravitational field is twice that of earth. what is the gravitational force exerted on the probe while it is on the surface of the planet?

Answers

A 3,500 kg probe lands on a planet where the gravitational field is twice that of Earth.

The gravitational force exerted on the probe while it is on the surface of the planet can be calculated using the formula: F = m * g', where F is the gravitational force, m is the mass of the probe (3,500 kg), and g' is the gravitational acceleration on the planet. Since the planet's gravitational field is twice that of Earth, g' = 2 * g (where g is Earth's gravitational acceleration, approximately 9.81 m/s²).

So, g' = 2 * 9.81 m/s² = 19.62 m/s².

Now, we can calculate the gravitational force: F = 3,500 kg * 19.62 m/s² ≈ 68,670 N (Newtons).

The gravitational force exerted on the probe while it is on the surface of the planet is approximately 68,670 N.

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please help will give brainlyest

please help will give brainlyest

Answers

16.34 km/2.34 h = 6.98 km/h

-Green spaces provide a place for recreation/walking/playing sports.
-An intact ecosystem provides places to maintain mental/physical health and well-being.
Ecosystems and biodiversity are important for many types of tourism/ecotourism
-Cultural and ecotourism provide education about the importance of biodiversity.
-Aesthetic appreciation/inspiration for art, culture, science, and/or design.
-Diverse ecosystems can provide spiritual experience/sense of place/are considered sacred or have religious meaning.
-Nature can be associated with customs/traditional knowledge in some cultures to create a sense of belonging/sense of purpose.

Answers

Green spaces and intact ecosystems provide numerous benefits to individuals and communities. They offer recreational opportunities, such as walking and playing sports, and are crucial for maintaining mental and physical health.

Additionally, diverse ecosystems support various types of tourism, including ecotourism, which educates visitors about the importance of biodiversity. These natural areas also offer aesthetic inspiration for art, culture, science, and design. Furthermore, certain ecosystems may hold spiritual significance for some cultures, providing a sense of place and belonging. Nature can also be associated with traditional knowledge and customs, creating a sense of purpose. In conclusion, protecting and preserving natural areas is essential for not only individual well-being but also for promoting tourism, cultural education, and maintaining diverse ecosystems.

Green spaces and intact ecosystems offer benefits that go beyond simple recreation and aesthetics. They provide essential opportunities for maintaining mental and physical health and well-being. Diverse ecosystems also support various types of tourism and offer cultural education about the importance of biodiversity. Additionally, certain natural areas hold spiritual and religious significance, creating a sense of belonging and purpose for some cultures. It is important to recognize the multifaceted value of natural areas and protect them for future generations to enjoy. In conclusion, maintaining and preserving natural areas is vital for individual and community well-being, tourism, cultural education, and diverse ecosystems.

Green spaces and intact ecosystems offer a multitude of benefits, ranging from physical health to cultural education. They provide opportunities for recreation, support diverse ecosystems, and offer spiritual significance for some cultures. It is essential to recognize the value of natural areas and protect them for future generations to enjoy. By preserving these areas, we can promote individual and community well-being, maintain diverse ecosystems, and support educational and cultural opportunities.

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FAILURE OF THE PRODUCT Instructions 1. Select THREE from everyday below items from the list and discuss the way this item can potentially fail (list minimum THREE failures). Justify your answer by considering Load Strength graph and what can be done to prevent those failures. -Ball Pen -Room Key - Blender

Answers

The three product which can be potentially fail considering Load Strength graph and precautionary measure to prevent failure are as below;

Ball Pen:

1. Ink Leakage: One potential failure of a ball pen is ink leakage. This can occur due to poor sealing between the ink reservoir and the ballpoint mechanism. Ink leakage can result in messy hands, stained documents, and reduced functionality of the pen. To prevent this failure, manufacturers can improve the quality control process to ensure proper sealing and use high-quality materials for the pen's components.

2. Ballpoint Jamming: Another failure is ballpoint jamming, where the ball gets stuck and prevents smooth writing. This can be caused by a buildup of dried ink or debris inside the pen's mechanism. To prevent ballpoint jamming, regular cleaning and maintenance of the pen can be recommended. Additionally, manufacturers can design the pen with features that facilitate easy cleaning or provide instructions on how to clear any blockages.

3. Weak Barrel Construction: The barrel of the pen may also be prone to failure if it is weak or brittle. Excessive pressure or rough handling can lead to cracks or breakage, rendering the pen unusable. To prevent this, manufacturers can use durable materials for the pen barrel, such as sturdy plastics or reinforced metal, and perform quality checks to ensure structural integrity.

Room Key:

1. Keycard Malfunction: A potential failure of a room key is a malfunction in its electronic components. This can result in the keycard being unreadable by the door lock system, preventing access to the room. To prevent this failure, regular maintenance and replacement of keycard readers can be implemented. Additionally, guests should be advised to keep their keycards away from magnets and electronic devices that can interfere with the card's functionality.

2. Magnetic Strip Damage: Another failure can occur if the magnetic strip on the keycard gets damaged or demagnetized. This can happen due to exposure to magnetic fields or physical damage. To prevent this failure, keycards can be made more durable with protective coatings or alternative technologies such as RFID. Guests should also be educated on proper handling and storage of keycards to avoid damage.

3. Battery Drain: Some room keys use batteries to power their electronic components. A failure can occur if the battery drains, leading to an inactive keycard. To prevent this, low-power consumption designs can be implemented, and regular battery checks or replacements can be carried out by hotel staff. Guests should be informed about the importance of returning the keycard to the front desk for recycling or proper disposal to ensure the battery is replaced as needed.

Blender:

1. Motor Burnout: One potential failure of a blender is motor burnout due to prolonged use or overloading. Continuous operation at high speeds or attempting to blend hard or frozen ingredients beyond the blender's capacity can cause the motor to overheat and fail. To prevent motor burnout, manufacturers can provide clear guidelines on the maximum load capacity and recommended usage durations. Automatic thermal protection mechanisms can also be incorporated to shut off the blender if it detects excessive heat.

2. Blade Jamming: Another failure can occur if food particles or ingredients get jammed between the blender's blades, preventing them from spinning freely. This can happen if the blender is not properly cleaned or if ingredients are not adequately prepared before blending. To prevent blade jamming, users should be advised to clean the blender thoroughly after each use and ensure that ingredients are cut into manageable sizes. Manufacturers can also design blades with accessible mechanisms for easy cleaning or provide cleaning tools.

3. Leakage: A failure in a blender can also manifest as leakage. This can happen if the blender jar or its sealing components are damaged or improperly assembled. Liquid or food can leak out during blending, resulting in a messy and potentially unsafe situation. To prevent leakage, manufacturers should ensure proper sealing mechanisms and use high-quality materials for the blender jar and lid. Regular inspection of the sealing components can be advised,

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PLS
Which of the following involves the particles of matter slowing down and moving closer together?
Sublimation
condensation
Vaporization
Melting

Answers

Answer:

condensation

Explanation:

sublimation-solid to gas

evaporization- liquid to gas

melting - sold to liquid

particles spread further apart

A lever requires an energy input of 10,000 J to move a 35 kg box up a distance of 18 m. What is the efficiency of this lever?

Answers

The efficiency of the lever will be 62%

What is Efficiency?

Efficiency is the ratio of the work performed by a machine to the total energy expended or heat consumed.

Efficiency refers to how close we can get to a particular outcome of the given input with as much less wastage as possible. Efficiency is the ability to minimise wasting materials, efforts, energy and time in performing something or producing the desired result.

The ratio of energy transferred to a useful form compared to the total energy supplied initially is called the efficiency of the device.

Efficiency (%) = (work output/work input) x 100%

work output = mgh

work input = 10,000J

Efficiency (%) = (35 x 18 x 9.8/10,000) x 100

Efficiency (%) = 0.62 x 100

Efficiency (%) = 62%

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two children on a seesaw are able to balance perfectly while on earth. would they still be balanced if the seesaw was brought to the moo

Answers

The balance of the seesaw would be affected if it were brought to the moon. On Earth, the balance of the seesaw depends on the force of gravity acting on the children and the distribution of their weights. The seesaw is designed in a way that when one child goes up, the other child goes down, maintaining balance.

However, on the moon, the force of gravity is only about 1/6th of what it is on Earth. This means that the children would experience a much weaker gravitational force. As a result, the seesaw would not be able to balance perfectly on the moon without some adjustments.

To balance the seesaw on the moon, the position of the children would need to be adjusted. The child with less weight would need to move closer to the center of the seesaw, while the child with more weight would need to move towards the end of the seesaw. By adjusting their positions, they can compensate for the weaker gravitational force and maintain balance on the seesaw.

In summary, the children would not be able to balance perfectly on the seesaw if it were brought to the moon. They would need to adjust their positions to account for the weaker gravity in order to maintain balance.

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A force of 20 N acts upon a 5 kg block. Calculate the acceleration of the object.

Answers

Answer:

The answer is 4 m/s²

Explanation:

The acceleration of an object given it's mass and the force acting on it can be found by using the formula

\(a = \frac{f}{m} \\ \)

where

f is the force

m is the mass

From the question we have

\(a = \frac{20}{5} \\ \)

We have the final answer as

4 m/s²

Hope this helps you

write the equation used to relate the heat absorbed by a substance to its specific heat, mass, and change in temperature.

Answers

The equation used to relate the heat absorbed by a substance to its specific heat, mass, and change in temperature is Q = mcΔT.

This equation is known as the heat equation or the heat transfer equation. It is based on the principle of conservation of energy, which states that energy cannot be created or destroyed, only transferred from one form to another. In this case, the energy is transferred in the form of heat.

The specific heat of a substance is the amount of heat required to raise the temperature of one unit of mass of the substance by one degree Celsius or Kelvin. The heat equation allows us to calculate the amount of heat absorbed by a substance when its mass, specific heat, and change in temperature are known.

This equation is commonly used in physics, chemistry, and engineering to calculate the amount of heat transferred in various processes.

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The diagrams show two planets of different masses with identical orbiting satellites. Select all the conditions that would increase the gravitational force between each pair.
A. move the satellites closer to the planet
B. move the satellites farther from the planet
C. Add mass to the satellites
D.Remove mass from the satellites

Answers

Answer:

C I think but I'm not sure

Explanation:

Because by adding mass it would add more gravitational pull

Examples of a/an _______ observation are 37 m, 9.37 s, and 100 mph.

Answers

These are exaxmples of a quantitative observation.

Measuring is the expression of an observed quantity in a number with a relevant unit that can be compared with other values of the same quantity.

It is not limited to physical quantities, but extends to a quantitative description of the whole of reality. Measurements are usually quantitative observations, and their results are expressed in

numerical values, and units  

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6) Bill and Amy want to ride their bikes from their neighborhood to school which is 14.4
kilometers away. It takes Amy 40 minutes to arrive at school. Bill arrives 20 minutes
after Amy. How much faster (in meters/second) is Amy’s average speed for the entire
trip? (3p)

Answers

Answer:

Amy's speed is 2/3 faster than Bill's

Explanation:

can't believe you don't know how to do this.

A horizontal rope is attached from a truck to a 1475-kg car. As the truck tows the car on a horizontal straight road, the rope will break if the tension is greater than 2551 N. Ignoring friction, what is the maximum possible acceleration of the truck if the rope does not break?

Answers

Given data

*The given mass of the car is m = 1475 kg

*The maximum tension is T = 2551 N

The formula for the maximum possible acceleration of the truck is given by Newton's second law as

\(\begin{gathered} T=ma_{\max } \\ a_{\max }=\frac{T}{m} \end{gathered}\)

Substitute the known values in the above expression as

\(\begin{gathered} a_{\max }=\frac{2551}{1475} \\ =1.72m/s^2 \end{gathered}\)

Hence, the maximum possible acceleration of the truck is a_max = 1.72 m/s^2

Which layer of the osi model is targeted by the threat actors for layer 2 attack?

Answers

The data link layer of the OSI model is targeted by the threat of layer 2 attacks.

What is the OSI model?

The International Organization for Standardization (IOS) developed the open system's interconnection (OSI) model, a conceptual framework that enables various communication systems to exchange data via agreed-upon protocols. The OSI, or Open Systems Interconnection, offers a standard for various computer systems to be able to communicate with one another.

One could think of the OSI Model as a common language for computer networking. Its foundation is the idea that a communication system may be broken down into seven abstract levels, each one built on top of the previous.

Hence, the threat of a layer 2 assault is directed against the OSI model's data link layer.

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