Drag each tile to the correct box.

The diagrams represent different phases of the menstrual cycle. Arrange these diagrams of the female reproductive system in the correct order in which the menstrual cycle progresses, starting with day 1 of the menstrual cycle.

Answers

Answer 1

The correct order in which the menstrual cycle progresses, starting with day 1 of the menstrual cycle, is as follows:

MenstruationFollicular Phase:OvulationLuteal Phase

How do we explain?

The first phase of the menstrual cycle is the follicular or proliferative phase. Occurs from day 1 to day 14 of the menstrual cycle, based on an average menstrual cycle of 28 days.

The follicular phase begins on the first day of menstruation and lasts 13-14 days, ending with ovulation.

During the Luteal phase, the empty follicle transforms into the corpus luteum, which produces progesterone to prepare the uterus for potential implantation.

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Drag Each Tile To The Correct Box.The Diagrams Represent Different Phases Of The Menstrual Cycle. Arrange

Related Questions

The walls of the large intestine absorb (a) water (b) digested food (c) undigested food (d) cellulose​

Answers

Answer:

a) water

Explanation:

digested food is mostly absorbed in the small intestine.

The walls of the large intestine absorb a)water.

In the large intestine, the water from the undigested food is absorbed and the remaining undigested food is sent to the rectum.

From the rectum, the undigested food materials are egested from the anus as feces.

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A car starts from rest and gains a velocity of 20 m/s in 10 s. Calculate acceleration and average velocity. ​

Answers

The acceleration of the car is 2 m/s².

The average velocity of the car is 2 m/s.

How to calculate acceleration ?

The equation acceleration = (final velocity - beginning velocity) / time can be used.

Given:

Initial velocity (u) = 0 m/s (since the car starts from rest)

Final velocity (v) = 20 m/s

Time (t) = 10 s

Using the formula, we can substitute the values:

acceleration = (20 m/s - 0 m/s) / 10 s

acceleration = 20 m/s / 10 s

acceleration = 2 m/s²

Therefore, the acceleration of the car is 2 m/s².

You can use the following equation to determine the average velocity: average velocity = total displacement / total time.

The initial position and the final position are identical since the automobile begins at rest. As a result, the displacement and the ultimate position are equal.

Given:

Displacement = 20 m

Time (t) = 10 s

Using the formula, we can substitute the values:

average velocity = 20 m / 10 s

average velocity = 2 m/s

Therefore, the average velocity of the car is 2 m/s.

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The bar chart here shows the relative speed of light through different types of media, air, water, and oil. Using the representation shown here, predict the speed of light through different media. Select ALL that correctly predict the light’s speed. A. Light traveling through glass would have a speed slower than that of light in air. B. Light traveling through a vacuum would have a speed higher than that of light in air. C. Light traveling through quartz would be faster than all speeds shown through the selected media. D. Light traveling through translucent plastic would be faster than all shown speeds through the media listed. E. Light traveling through humid air would be slower than the light through air but faster than light through water shown here.

Answers

Based on the information in the chart, light traveling through glass would have a speed slower than that of light in the air (option A), and light traveling through a vacuum would have a speed higher than that of light in the air (option B).

How does the speed of light change depending on the medium?

Based on the graph, the denser the medium is the slower the light moves. For example, light is much faster when traveling in the air than when traveling in oil. Due to this, the true statements are:

Light travels slower through glass than in the airLight would travel faster through a vacuum.

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How would you explain the key concepts for the CWA in less than two minutes?

Answers

Answer:

Explanation:

vPoint Source - a source of water discharged to surface water through a discrete point - generally through a pipe, ditch, or channel.

Nonpoint Source - Nonpoint sources, such as parking lots or athletic fields, discharge runoff water to groundwater or surface water; runoff does not come from  a pipe, ditch, or channel. These sources may contain pollutants such as pesticides, motor oil, and soaps.

Navigable Waters of the United States  For the purposes of the Clean Water Act, the term "navigable waters" includes:

all waters used in commerce, including groundwater;

all interstate waters including wetlands, mudflats, and sand-flats; and

all other waters such as lakes, rivers, streams, wetlands and sloughs.

EPA policy states, "The majority of facilities in the U.S. have the potential to discharge to navigable waters."  The Supreme Court decision in (2006) requires the Army Corps of Engineers and the EPA to determine whether there is a "significant nexus" between a navigable waterway and an area a spill might affect.  In June of 2007, EPA and the Army Corps of Engineers released provisional interpretive guidance regarding the "significant nexus” question. According to this guidance, the agencies will assert jurisdiction over traditional navigable waters, wetlands adjacent thereto, and relatively permanent tributaries thereof. The agencies will generally not assert jurisdiction over swales and ditches that lack routine water flow. Finally, the agencies will apply the "significant nexus" requirement and make a case-by-case, fact-specific analysis on impermanent tributaries and other wetlands.

Additional executive orders were issued 2015 in 2019.  Under the 2019 proposal, traditional navigable waters, tributaries to those waters, certain ditches, certain lakes and ponds, impoundments of jurisdictional waters, and wetlands adjacent to jurisdictional waters would be federally regulated. It also details what are not "waters of the United States," such as features that only contain water during or in response to rainfall (e.g., ephemeral features); groundwater; many ditches, including most roadside or farm ditches; prior converted cropland; stormwater control features; and waste treatment systems.

Could the requirement for one or more NPDES Discharge Permit apply to my campus?

If your campus discharges pollutants directly to navigable waters of the United States through a point source, you must obtain an NPDES permit or redirect the flow of the waste.

Stormwater releases from certain activities require an NPDES permit. The most common activities on college campuses requiring NPDES permits for stormwater are construction activities disturbing more than 1 acre, hazardous waste storage areas operating under the Resource Conservation and Recovery Act permit system, steam-generating power plants, and airports. See Stormwater section below.

Regulations issued by local water authorities, or Publicly Owned Treatment Works (POTWs), not NPDES permits, govern discharges into sanitary sewer systems. See Sewer Use (POTW) section below for more information about requirements for using POTWs for commercial or industrial waste disposal.

What do I have to do related to NPDES Discharge Permits?

Determine where wastewater flows from buildings and processes on your campus. Any industrial or commercial operation (e.g., ice rink melt pits, floor drains, and vehicle wash stations) that discharge into a water of the United States may require an NPDES permit. If required, you must obtain such a permit from the appropriate regulatory agency, probably your state environmental agency.

French drains, dry wells, and septic system leach fields are different from point source discharges because they do not immediately affect surface water. Some state and federal environmental agencies manage these systems under the Underground Injection Control program, part of the Safe Drinking Water Act. See Safe Drinking Water Act for more information.

Details of NPDES

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