Forensic Entomology


Forensic Entomology


The study of the life cycle of insects that feed on the flesh to the dead, to establish time of death and occasionally identify chemicals present in a person's body at the time of death.


Time since death


Arrive a few hours after a death and are active through decomposition process. They feed on larvae and other insects rather than the corpse itself.


Larvae that feed on human excrement and remains, and are found late in the decomposition process.

Answers

Answer 1

Forensic Entomology is the study of life cycles of insects that feed on the flesh of dead, to establish time of death and occasionally identify chemicals present in a person's body at time of death

What is meant by Forensic Entomology?

The scientific study of the colonization of dead body by arthropods is called forensic entomology .

Larvae and adults feed on dry skin and hairs of corpse and arrive later in decomposition process : Carpet Beetles

Time since death : postmortem Interval.

Rove Beetles : Arrive a few hours after death and are active throughout decomposition process. They feed on larvae and other insects rather than the corpse itself.

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Related Questions

A certain asteroid is approximately 50 AU from the Sun. According to Kepler’s third law, what is the orbital period of this asteroid in terms of Earth years?

Answers

The orbital period of this asteroid is approximately 353.55 Earth years.

What is the orbital period of this asteroid?

Kepler's third law states that the square of the orbital period (in years) of a planet or asteroid is proportional to the cube of its semi-major axis (in AU).

Therefore, we can use the following formula to calculate the orbital period:

(T / 1 year)^2 = (a / 1 AU)^3

where;

T is the orbital period in years, and a is the semi-major axis in AU.

Plugging in the values for the asteroid at 50 AU, we get:

(T / 1 year)^2 = (50 / 1 AU)^3

(T / 1 year)^2 = 125000

T / 1 year = √(125000)

T = 353.55 Earth years (rounded to two decimal places)

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Part A- Variation in the speed of sound Sound is a longitudinal wave, and its speed depends on the medium through which it propagates. In air, sound travels at 343 m/s. In an experiment, you observo a sound with a frequency of 500 Hz and a wavelength of 6.4 m. What is the speed of sound in this differont medium? Express your answer with the appropriate units. HÅ ? Value Units Submit Request Answer Sounds vary in intensity and loudness across a very wide range, and we use the logarithmic decibel scale to quantify sound. Sort and match the following sounds with their decibel level. Place each sound in the appropriate in for its decibel level. Only one sound may be placed in each bin. Reset Help Operating a lawnmower Your clothing rusting Telephone hold music A whisper across a football field Abrary with people studying -20 dB 10 dB 30 dB 60 dB 90 dB Part D- Calculating the limits of hearing In a large perfectly quiet room, at what maximum distance could you hear a bee with a power output of 1W? Recall that the threshold of hearing is 10-12 W/m² Express your answer with the appropriate units. HA ? T Value Units Submit Request Answer

Answers

The Velocity is 4270 m/s it is equal to product of frequency and wavelength.

Given: -

Frequency(f) = 700 Hz

Wavelength(λ) = 6.1m

velocity = f x λ

velocity = 700 x 6.1

velocity = 4270 m/s

Wavelength is a fundamental concept in physics, particularly in the study of waves, which includes electromagnetic radiation, light, and sound waves. It is defined as the distance between two successive points of the same phase, such as the crest or trough of a wave. This distance is usually measured in units of meters, and it is inversely proportional to the frequency of the wave.

In electromagnetic radiation, the wavelength is an important property that determines the type of radiation, such as radio waves, microwaves, infrared radiation, visible light, ultraviolet radiation, X-rays, and gamma rays. Each type of radiation has a unique range of wavelengths that can be measured using instruments like a spectroscope or a radio antenna.

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How could you use creative thinking to show the relationship between velocity and kinetic energy?.

Answers

Kinetic energy depends οn the velocity of the object squared. This means that when the velocity of an οbject doubles, its kinetic energy quadruples.

What is Kinetic energy ?

The energy an οbject has as a result of motion is referred to as kinetic energy. If we want tο accelerate an object, we must exert force. To apply a force, we must wοrk hard. When the work is done, energy will have been transferred tο the item, causing it to move at a new, constant speed.

This equation demοnstrates the direct relationship between an object's kinetic energy and the square οf its speed. Therefore, for every twofold increase in speed, the kinetic energy will increase by a factοr of four. A threefold increase in speed will result in a nine-fοld increase in kinetic energy.

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who suggested mutation theory​

Answers

Answer:

Hugo de Vries

The mutation Theory of Evolution was proposed by Hugo de Vries.

Answer:

Hugo de Vries

Explanation:

In the history of evolutionary biology, Hugo dr Vries is known as a proponent of the mutation theory of evolution, in which new species are believed to arise by single mutational events.

Two opposite charges of the same magnitude Q = 2x10^-7c are separated by a distance of 15.0cm. What is the magnitude and direction of the force acting on an electron placed at the midpoint

Answers

The direction of the force is along the line joining the two charges, and its magnitude is approximately 1.44 x 10^-12 N.

What is magnitude?

Magnitude can be defined as  the maximum extent of size and the direction of an object.

The force on the electron can be found using Coulomb's law:

F = k * (q1 * q2) / r^2

where

k is Coulomb's constant (k = 9 x 10^9 N*m^2/C^2)q1 and q2 are the magnitudes of the two charges r is the distance between themF is the magnitude of the force

In this case, the two charges have the same magnitude Q = 2 x 10^-7 C, so we can write:

F = k * [(Q * -Q) / (0.15 m)^2]

where the negative sign for one of the charges indicates that it has the opposite charge to the other. Simplifying this expression, we get:

F = k * (Q^2 / 0.0225)

F = (9 x 10^9 N*m^2/C^2) * (2 x 10^-7 C)^2 / 0.0225

F ≈ 1.44 x 10^-12 N

Therefore, the direction of the force is along the line joining the two charges, and its magnitude is approximately 1.44 x 10^-12 N.

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A car driving at a constant speed of 20 m/s (meters per
second) turns right, down a street.
1. Is the car accelerating during the turn? Why or why not?
2. Would you feel any of the movement during this event?
Why or why not?
EXTRA HELP
What is changing as the car turns? What changes qualify as
an acceleration? How can you feel acceleration?

Answers

Answer:

it is accelerating because it is at constant speed.


An object starts from rest at the origin and moves along the x axis subject to the force shown in the figure below. If the mass of
the object is 38.0 kg, determine the speed of the object at the following positions. Each unit along the position axis is 2.00 m and
each unit along the force axis is 3.00 N.

Answers

The speeds of the object at the various positions are :

At x = A; speed = 2.06 m/sAt x = B; speed = 2.38 m/sAt x = speed = 0 m/sWhat is the formula to determine the velocity or speed?

The formula to determine the velocity or speed is given below:

velocity or speed = √(2s * F/m)

where:

s the position or displacementF is the forcem is the mass

The speeds of the object at the various points are given below:

At x = A: force = 9 N; s = 6 m

speed = √(2 * 6 * 9 / 38)

speed = 2.06 m/s

At x = B; Force = 9 N; s = 12 m

speed = √(2 * 12 * 9 / 38)

speed = 2.38 m/s

At x = C; Force = 0 N; s = 18 m

speed = √(2 * 12 * 0 / 38)

speed = 0 m/s

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They include cash,
accounts receivable, notes receivable,
inventory and prepaid expenses. Step 8
explains each one in detail.
1.
You are the owner of an appliance store.
Choose four categories from above and
explain how that asset may fit into your
business. For example, if I owned a
company that installed furnaces, my
inventory would include different types of
furnaces and air conditioners as well as
controls to operate them. Accounts
receivable would include the installations
we did but have not been paid for yet.

Answers

As the owner of an appliance store, the following four categories of assets could apply to my business:

What are the categories of assets that could apply to my business?

Cash: Cash is the most liquid asset and represents the money that the business has on hand or in the bank. As an appliance store owner, cash can be used to pay for business expenses such as rent, utilities, employee wages, and inventory purchases.

Accounts receivable: Accounts receivable represents the money that customers owe to the business for goods or services that have been sold but not yet paid for. In the context of an appliance store, accounts receivable would include sales made on credit, where customers are allowed to take the appliances and pay for them at a later date.

Inventory: Inventory represents the goods that the business has on hand to sell to customers. For an appliance store, inventory would include appliances such as refrigerators, washing machines, dryers, and ovens. The value of the inventory can fluctuate depending on market demand, changes in technology, and other factors.

Prepaid expenses: Prepaid expenses represent the costs that the business has paid in advance for goods or services that will be used in the future. In the context of an appliance store, prepaid expenses may include things like rent payments, insurance premiums, and maintenance contracts. By prepaying for these expenses, the business can ensure that it has access to the resources it needs to operate efficiently.

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When a transverse wave travels through a medium, which of the following is TRUE?

A. the medium determines the wavelength
B. the medium determines the amplitude of the wave vibrations.
C. vibrations are parallel to the direction the wave travels.
D. the medium determines the wave frequency
E. vibrations are perpendicular to the direction the wave travels

Answers

The medium determines the amplitude of the wave vibrations is the correct option (B) .

What is wave ?

Laminar and transverse waves are the two types of waves. Longitudinal waves are similar to those of sound in that they alternate between compressions and rarefactions in a medium, much like transverse waves in that the surface of the medium rises and falls.

What is transverse wave ?

The term "transverse wave" refers to motion in which all wave points oscillate along trajectories that are perpendicular to the wave's forward velocity. Transverse waves include electromagnetic (such as radio and light) and seismic S (secondary) waves. Surface ripples on water are another example.

In a transverse wave, the medium's particles vibrate up and down perpendicular to the wave's direction. In a longitudinal wave, the medium's particles vibrate back and forth parallel to the wave's direction.

Therefore, medium determines the amplitude of the wave vibrations is the correct option (B) .

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Identify the correct sequence of events from this passage.

A. Martin Cooper invented the first cell phone.
B. AT&T discussed the concept of a wireless phone.
C. The FDA ruled that the health risks of cell phones were small.
D. Cell phone became the most common electronic device.

Answers

Answer:

The correct sequence of events is:

A. Martin Cooper invented the first cell phone.

B. AT&T discussed the concept of a wireless phone.

C. Cell phone became the most common electronic device.

D. The FDA ruled that the health risks of cell phones were small.

The bottom cube has mass m2 = 4.8kg and sits on a surface without friction. The top cube has mass m1 = 2.2kg. The friction between the two cubes is μ = 0.5. What is the maximum force that can be applied on the upper cube so that the two cubes move together?

Answers

The maximum force that can be applied on the upper cube is 26.29N.

Solving for the  the maximum force that can be applied on the upper cube, we have:

The maximum force that can be applied on the upper cube so that the two cubes move together is given by the equation:

F_max = μ(m1 + m2)g

where,

μ = the coefficient of friction

m1 and m2 = the masses of the top and bottom cube

g = the acceleration due to gravity.

Substituting in the values, we get:

F_max = 0.5(2.2kg + 4.8kg)(9.81m/s²)

F_max = 26.29N

Therefore, the maximum force that can be applied on the upper cube is 26.29N.

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Which sample of water will contain the smallest amount of heat energy?
10 g at 10°C
20 g at 10°C
20 g at 20°C
20 g at 40°C

Answers

Answer:

10 g at 10°C

Explanation:

Answer:

10 g at 10°C

Explanation:

Heat energy is directly proportional to the mass and the temperature of a substance. When comparing two samples of the same substance, the one with higher mass contains more heat energy. Similarly, a substance with higher temperature contains more heat energy compared to the same substance with a lower temperature.

In this case, the smallest amount of heat energy would be in the sample of 10g at 10°C. This is because it has the lowest mass and temperature compared to the other three options.



ALLEN

For each of the following file extensions, select the correct file format from the drop-down menu. . Avi. Rtf. Pdf. Txt.

Answers

The following file extensions are

.avi: Audio Video Interleave file format

.rtf: Rich Text Format file format

.pdf: Portable Document Format file format

.txt: Text File format

File extensions are used by computer operating systems and applications to determine which program to use to open a file and how to handle it.

A file extension is a series of characters that follow the last period in a filename and indicates the format of the file. It is a way of identifying the type of data stored in a file, such as a text document, image, audio or video file, spreadsheet, or executable program.

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A 65 kg person sits on a 3.6 kg chair. Each leg of the chair makes contact with the floor in a circle that is 1.1 cm in diameter.
Find the pressure exerted on the floor by each leg of the chair, assuming the weight is evenly distributed.!!!!!!!!!!!!!!!!!!!!URGENT!!!!!!!!!!!!!!!!1

Answers

The pressure exerted on the floor by each leg of the chair is [tex]7.080685*10^6M Pa[/tex]

Given :

Mass of person = 65 kg

Mass of chair = 3.6 kg

Diameter of contact point = 1.1 cm = D

Radius of contact point = 1.1/2 = 0.55 cm

The total mass of chair and person = 65 + 3.6 = 68.6 kg = M

Acceleration due to gravity = 9.81 m/s²

Force acting on the floor F

F=mg

F= 68.6 * 9.81

F = 672 .9 N

Area of the contact point

A = [tex]\pi r^2[/tex]

A = [tex]\pi (0.55)^2[/tex]

A = [tex]0.00003025\pi[/tex]

Pressure = force/Area

Pressure = [tex]672.9/0.00003025\pi[/tex]

Pressure =[tex]7.080685*10^6[/tex]

What is pressure in short answer?

Pressure is an expression of force exerted on a surface per unit area. if a force F is applied on area A, then pressure P=F/A.

What is the formula for pressure, force, and area?

Pressure is defined as force per unit area. It is expressed as P = F/A, where P is pressure in pascals, F is the force in newtons, and A is the area in square meters.

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Two balls are dropped to the ground from different heights. One is dropped 1.5 s after the other, but they
both strike the ground at the same time, 5.0 s after the first was dropped. (a) What is the difference in the
heights from which they were dropped? (b) From what height was the first ball dropped? Ans. (a) 63 m;
(b) 0.12 km

Answers

Answer:

Height difference: approximately [tex]63\; {\rm m}[/tex].

The first ball was dropped from a height of approximately [tex]123\; {\rm m}[/tex].

(Assumptions: both balls were released from rest, air friction is negligible, and that [tex]g = 9.81\; {\rm m\cdot s^{-2}}[/tex].)

Explanation:

Under the assumptions, both ball would accelerate at a constant [tex]a = (-g) = (-9.81)\; {\rm m\cdot s^{-2}}[/tex].

Let [tex]t[/tex] denote the time since the first ball was released.

Height of the first ball at time [tex]t[/tex] can be modelled with the SUVAT equation [tex]h(t) = (1/2)\, a\, t^{2} + u\, t + h_{0}[/tex], where [tex]u[/tex] is the initial velocity. However, since [tex]u = 0\; {\rm m\cdot s^{-1}}[/tex] by assumption, this equation simplifies to [tex]h(t) = (1/2)\, a\, t^{2} + h_{0}[/tex].

Since this ball reached the ground after [tex]t = 5.0\; {\rm s}[/tex], [tex]h(5.0) = 0\; {\rm m}[/tex]. In other words:

[tex]\begin{aligned}\frac{1}{2}\, (-9.81)\, (5.0)^{2} + h_{0} = 0\end{aligned}[/tex].

Simplify and solve for the initial height of this ball, [tex]h_{0}[/tex]:

[tex]\begin{aligned}h_{0} &= -\frac{1}{2}\, (-9.81)\, (5.0)^{2} \\ &\approx 123\; {\rm m}\end{aligned}[/tex].

In other words, the first ball was dropped from a height of approximately [tex]123\; {\rm m}[/tex].

Similarly, the height of the second ball may be modelled as [tex]h(t) = (1/2)\, a\, t^{2} + h_{0}[/tex].

Since this ball reached the ground [tex]t = (5.0 - 1.5)\; {\rm s} = 3.5\; {\rm s}[/tex] after being released, [tex]h(3.5) = 0\; {\rm m}[/tex]. The initial height of this ball would be:

[tex]\begin{aligned}h_{0} &= -\frac{1}{2}\, (-9.81)\, (3.5)^{2} \\ &\approx (-60)\; {\rm m}\end{aligned}[/tex].

Subtract the initial height of the second ball from that of the first ball to find the difference in initial height:

[tex](123 - 60) \; {\rm m} \approx 63\; {\rm m}[/tex].

A positively charged solid conducting sphere is contained within a negatively charged conducting spherical shell as shown. The magnitude of the total charge on each sphere is the same.
1)Which of the following statements best describes the electric field in the region between the spheres?
A.The field points radially outward
B.The field points radially inward
C.The field is zero
2.Which of the following statements best describes the electric field in the region outside the red sphere?
A.The field points radially outward
B.The field points radially inward
C.The field is zero
CAN u give me a explanation.

Answers

1) Statements best describes the electric field in the region between the spheres  field points radially outward.

2) Statements best describes the electric field in the region outside the red sphere The field is zero.

For positive charge, E field lines are projecting outward of positive charge.

For negative charge, E field lines are projecting inward of negative charge.

Then, between the spheres,

because of q, E field lines are projecting outward of q and inward of- q;

and because of- q, E filed lines are projecting outward of q and inward of- q

So, The field points radially outward

2) C still, net charge inside the gaussian face is zero, If we draw a gaussian face outside the spheres.

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When Marcus goes to play golf, he steps up to his ball and swings the club without thinking at all about his technique. Due to years of practice and repetition Marcus has most likely begun to use __________ processes when swinging his golf club.

Answers

Due to years of practice and repetition, Marcus has most likely begun to use unconscious processes when swinging his golf club.

What are unconscious processes?

The unconscious is the process that proceeds outside the person's awareness and plays a major role in directing thoughts, feelings, behavior, and mental illness.

When Marcus goes to play golf, he steps up to his ball and swings the club without thinking at all about his technique, so the signs about the unconscious process.

Therefore, Marcus has most likely begun to use unconscious processes when swinging his golf club.

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A rock is thrown upward with a velocity of 14
meters per second from the top of a 50
meter high cliff, and it misses the cliff on the way back down. When will the rock be 2
meters from ground level? Round your answer to two decimal places.

Answers

Answer:

The rock will be 2 meters from the ground after 1.29 seconds.

Explanation:

The motion of the rock can be described by the following kinematic equation:

h = vi * t + 0.5 * a * t^2

where h is the height of the rock above the ground, vi is the initial velocity (14 m/s), t is time, and a is the acceleration due to gravity (-9.8 m/s^2).

Setting h = 2 m and solving for t, we get:

2 = 14 * t + 0.5 * (-9.8) * t^2

Expanding and solving for t, we get:

t = 1.29 seconds

So, the rock will be 2 meters from the ground after approximately 1.29 seconds.

Blood flows through a major artery at 1.2 m/s over a distance of 0.50m then at 0.70 m/s for another 0.50 m through a smaller artery.
Is the average speed of the blood 0.95 m/s greater than 0.95 m/s or less than 0.95 m/s (part a)
Verify your answer to Part A by calculating the average speed.
(part b)

Answers

The average speed of the blood is less than 0.95 m/s and the average speed is 0.884 m/s.

What is average speed?

Average speed is a measure of the rate of change in position of an object over a certain period of time. It is calculated by dividing the total distance traveled by the total time taken. In other words, it is the rate at which an object covers a given distance. Average speed is useful in determining the efficiency of a vehicle, or of a person, in covering a particular distance. For example, if a person drives for 2 hours and travels a total distance of 200 kilometers, the average speed of the body is 100 km/hr (200km / 2 hrs).

The average speed is,

[tex]V_{avg} = \frac{d_{1}+ d_{2} }{\frac{d_{1} }{V_{1} }+ \frac{d_{2} }{V_{2} } }[/tex]

        [tex]= \frac{0.50m + 0.50m}{\frac{0.50m}{1.2m/s}+\frac{0.50m}{0.70m/s} }[/tex]

       = 0.884 m/s

Due to the average speed is 0.884 m/s the average speed of the blood becomes less than 0.95 m/s.

Therefore, the average speed of the blood is less than 0.95 m/s and the average speed is 0.884 m/s.

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A 1500 kg car traveling east at 20 m/s collides with a moving 2500 kg truck moving 30 m/s west..  After they collide, the two interlock and move together.  What was the final velocity of the truck? (Hint-momentum is a vector and direction matters, use + or - values as appropriate)* A. 11.25 m/s west B. 11.25 m/s east C. 32.6 m/s east D. 32.6 m/s west​

Answers

The final velocity of the truck after the collision is -11.25 m/s.

A. 11.25 m/s west

How to find the final velocity?

In this collision, the total momentum of the system before the collision is equal to the total momentum of the system after the collision, since momentum is conserved. The total momentum of the system before the collision can be found by adding up the momenta of the car and truck.

The momentum of the car is given by:

= mass of car * velocity of car

= 1500 kg * 20 m/s = 30000 kg m/s (east)

The momentum of the truck is given by:

= mass of truck * velocity of truck

= 2500 kg * -30 m/s

= -75000 kg m/s (west)

The total momentum of the system before the collision is given by:

30000 kg m/s + (-75000 kg m/s) = -45000 kg m/s

The total mass of the system is given by:

total mass = mass of car + mass of truck = 1500 kg + 2500 kg = 4000 kg

The final velocity of the system is given by:

final velocity = -45000 kg m/s / 4000 kg = -11.25 m/s

Since the final velocity is negative, it means that the system is moving west, which is the direction of the truck's initial velocity.

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Find the moment of inertia for the following objects:
A. A uniform disc of mass M and radius R rotating about its axis. Replace the sum in 3.31 by the appropriate integral and do the integral in polar coordinates.
B. A uniform solid sphere rotating about a diameter. Replace the sum in 3.31 by the appropriate integral and do the integral in spherical coordinates.

Answers

The moment of inertia of a uniform disc of mass M and radius R rotating about its axis is [tex](1/2) MR^2[/tex].

The moment of inertia of a uniform solid sphere of mass M and radius R rotating about a diameter is [tex](8/5) MR^2[/tex].

The moment of inertia of a uniform disc of mass M and radius R rotating about its axis can be found by integrating the moment of inertia of small elements of mass dm located at a distance r from the axis of rotation.

Using polar coordinates, we can write dm = (M/πR^2)rdrdθ, where r ranges from 0 to R and θ ranges from 0 to 2π.

The moment of inertia of each element is given by dI = dm r^2. Therefore, we have:

I = ∫dI

= ∫[tex]r^2 dm[/tex]

= ∫₀²π ∫₀ᴿ (M/πR^2)r³drdθ

= (M/πR^2) ∫₀²π [∫₀ᴿ r³dr] dθ

= (M/πR^2) ∫₀²π [(1/4)R^4] dθ

= (M/πR^2) (1/4)R^4 (2π)

= [tex](1/2) MR^2[/tex]

The moment of inertia of a uniform solid sphere of mass M and radius R rotating about a diameter can be found by integrating the moment of inertia of small elements of mass dm located at a distance r from the diameter. Using spherical coordinates, we can write dm = (M/4πR^3)r^2sinθdrdθdφ, where r ranges from 0 to R, θ ranges from 0 to π, and φ ranges from 0 to 2π. The moment of inertia of each element is given by dI = dm r^2sin^2θ. Therefore, we have:

I = ∫dI = ∫r^2sin^2θ dm = ∫₀²π ∫₀ᴾ ∫₀ᴿ (M/4πR^3)r^4sin^3θdrdθdφ

= (M/4πR^3) ∫₀²π ∫₀ᴾ [∫₀ᴿ r^4sin^3θdr] dθdφ

= (M/4πR^3) ∫₀²π ∫₀ᴾ [(2/5)R^5sin^3θ] dθdφ

= (2/5) MR^2 ∫₀²π [∫₀ᴾ sin^3θ dθ] dφ

= (2/5) MR^2 ∫₀²π [(-cosθ + (3/2)cos^3θ/3)|₀ᴾ] dφ

= (8/15) MR^2 ∫₀²π dφ

= (8/15) MR^2 (2π)

= (8/5) MR^2

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Two box of the masses 5 kg and 40 kg are in contact with each other on a frictionless surface. What is the acceleration of the more massive box?

Answers

Answer:ddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddddd

Explanation:

what is life? can you explain in please

Answers

Life is a complex phenomenon that is difficult to define or explain in a simple way. It refers to the characteristic that distinguishes living things from non-living things. Some of the defining characteristics of life include the ability to grow and develop, respond to stimuli, maintain homeostasis, produce offspring, and evolve over time.

Life is also often described as a process that involves the consumption of energy and the conversion of matter to maintain and reproduce itself. This process is known as metabolism. Living things are also capable of reproducing and passing on genetic information to their offspring, which allows for the continuation and evolution of life over time.

In addition to these biological definitions, the concept of life also has cultural, spiritual, and philosophical dimensions. Different cultures and belief systems have their own interpretations of what life is and what it means.

In general, life is a complex and multifaceted concept that encompasses many different aspects of our existence, from the physical and biological, to the cultural and philosophical.

An old-fashioned single-play vinyl record rotates on a turntable at 45.0 rpm. What are (a) the angular velocity in rad/s and (b) the period of the motion? nand (h the period of the

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The angular velocity in rad/s are 4.7124 rad/s and the period of the motion is 1.333s.

a) Find angular velocity

Given

45 rpm that is rotations per min  converting it in to rad/s

we know that the angular displacement for one rotation is  2pi rad

45 rpm = 45*2pi/60

            = 4.7124 rad/s

So,the angular velocity is W = 4.7124 rad/s

b) We have relation between the angular velocity and time period is  

W = 2pi /T

T = 2pi/W

T = 2pi/4.7124 s

T = 1.333 s

Angular velocity is a physical quantity that describes the rate of change of the angular displacement of an object with respect to time. It is a vector quantity, and its direction is perpendicular to the plane in which the object is rotating. The magnitude of the angular velocity is given by the ratio of the angular displacement of the object to the time taken to complete the displacement. It is measured in radians per second (rad/s).

Angular velocity is an important concept in physics and is used in the study of rotational motion. It is used to calculate the centripetal force required to maintain circular motion and is also used to describe the motion of planets and other celestial bodies. In addition, angular velocity is used in engineering and mechanics to design and analyze rotating machines and devices.

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A bowling ball with a mass of 7.0 kg strikes a pin that has a mass of 2.0 kg. The pin flies forward with a velocity of 7.0 m/s, and the ball continues forward at 4.0 m/s. What was the original velocity of the ball?

Answers

The original velocity of the ball was -4.0 m/s, which means it was moving in the opposite direction of the final velocity (4.0 m/s).

How to find the original velocity of the ball?

The original velocity of the ball can be found using the principle of conservation of momentum. The principle of conservation of momentum states that the total momentum of a closed system remains constant if no external forces act upon it. In this case, the closed system is the ball and the pin. Before the collision, the total momentum of the system was zero (since the ball was at rest). After the collision, the momentum of the system is given by the ball's momentum plus the pin's momentum.

The momentum of an object is given by the product of its mass and velocity:

p = m * v

where:

p is the momentum of the object

m is the mass of the object

v is the velocity of the object

First, let's find the total momentum of the system after the collision:

p_total = p_ball + p_pin

p_total = (m_ball * v_ball) + (m_pin * v_pin)

p_total = (7.0 kg * v_ball) + (2.0 kg * 7.0 m/s)

Now, we'll use the principle of conservation of momentum to set the total momentum of the system before the collision equal to the total momentum of the system after the collision:

p_total_before = p_total_after

0 = p_total

0 = (7.0 kg * v_ball) + (2.0 kg * 7.0 m/s)

Solving for v_ball:

v_ball = (-2.0 kg * 7.0 m/s) / 7.0 kg

v_ball = -4.0 m/s

So, the original velocity of the ball was -4.0 m/s, which means it was moving in the opposite direction of the final velocity (4.0 m/s).

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Continue where the red line would would go

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Refraction would cause the red light to bend at the air/glass boundary.

What is refraction?

While the question is unclear, I assume that you are trying to know something about the refraction of the red light across the air/glass boundary. I will tell you something about refraction!

Refraction is a phenomenon of light where it changes direction when it enters a medium with a different refractive index. Refractive index is a measure of how much a medium bends light that passes through it. When light passes from a medium with a lower refractive index to a medium with a higher refractive index, it bends towards the normal (an imaginary line perpendicular to the surface at the point of incidence). On the other hand, when light passes from a medium with a higher refractive index to a medium with a lower refractive index, it bends away from the normal.

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Drop Tower NASA operates a 2.2-second drop tower at the Glenn Research Center in Cleveland, Ohio. At this facility, experimental packages are dropped from the top of the tower, on the 8th floor of the building. During their 2.2 seconds of free fall, experiments experience a microgravity environment similar to that of a spacecraft in orbit.
What is the drop distance of a 2.2- s tower?
(part a)
How fast are the experiments traveling when they hit the air bags at the bottom of the tower?
(part b)
If the experimental package comes to rest over a distance of 0.80 m upon hitting the air bags, what is the average stopping acceleration?
(part c)

Answers

The drop distance is 23.7402 m

t = Time taken

u = Initial velocity

v = Final velocity

s = Displacement

g = Acceleration due to gravity = 9.81 m/s² = a

Equation of motion

S = ut + ½ at²

S = 0 × t × ½ × 9.81 × 2.2²

S= 23.7402 m

The drop distance is23.7402 m

v = u + at

v = 0 + 9.81 × 2.2

v= 21. 582 m/s

When they hit the airbags at the bottom of the tower the speed of the experiments is 21.582 m/s

The final speed of the fall will be the initial velocity of stopping

v² - u² = 2as

a = v² - u²/ 2s

a= 310.521816 m/s²

The average stopping acceleration is 310.521816 m/s²

What is displacement?

The temporal rate of change of the position vector can also be used to describe velocity. The velocity of P (for example, a point representing the position of a passenger walking on the train) may be referred to as a relative velocity as opposed to an absolute velocity if one considers a moving initial position, or equivalently a moving origin (e.g., an initial position or origin which is fixed to a train waggon which in turn moves on its rail track).

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What is the mass density of a liquid that exerts a pressure of 180 kPa at a depth of 41 m?

Answers

Answer: no answer

Explanation:

A motorist runs out of gas on a level road 210 m from a gas station. The driver pushes the 1,180 kg car to the gas station. If a 140 N force is required to keep the car moving, how much work (in J) does the driver do?

Answers

Answer:

the driver does 29,400 J of work in pushing the car to the gas station.

Explanation:

To find the amount of work done by the driver, we need to know the force applied by the driver and the distance the car is moved.

The force applied by the driver is given as 140 N, and the distance the car is moved is given as 210 m.

Work done can be calculated using the formula:

W = F * d * cos(θ)

where W is the work done, F is the force applied, d is the distance moved, and θ is the angle between the force and the displacement. Since the force and displacement are in the same direction, θ = 0, and the cosine of 0 is 1.

So,

W = F * d * cos(θ) = 140 N * 210 m * 1 = 29,400 J

POSSIBLE POINTS: 1
Based on what you have learned from this project so far, describe the relationship between mass and gravitational force (the size of the gravity force
vectors). You should use directly proportional or inversely proportional in your answer. Use at least three complete sentences to justify your answer
(explain why you think what you think).

Answers

Answer:

F = G * (m1 * m2) / r^2

Explanation:

The relationship between mass and gravitational force is directly proportional. This means that as the mass of an object increases, the magnitude of the gravitational force acting on it also increases. The exact relationship can be described using Newton's law of universal gravitation, which states that the gravitational force between two objects is proportional to the product of their masses and inversely proportional to the square of the distance between them.

This relationship can be expressed mathematically as:

F = G * (m1 * m2) / r^2

where F is the gravitational force, G is the gravitational constant, m1 and m2 are the masses of the two objects, and r is the distance between them.

This relationship makes intuitive sense: larger objects have a greater ability to pull other objects towards them, so the gravitational force they exert is stronger. On the other hand, as the distance between two objects increases, the gravitational force between them decreases, because the pull is spread out over a larger area.

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