Period 6A-7B calendar

This class runs in two periods and they do not do the same lesson on the same day. You are reading the Period 6A-7B calendar, the one with John Carroll bioethics on Mondays.

Fri, Sep 4, 2026Fall (Semester 1) · Week 2Day 8 of 6480-min blockTight fit

Graphing and statistics

Essential question: How do a graph and a few numbers turn raw measurements into evidence you can defend?Enduring understanding: and a well-labeled graph summarize a dataset's center, spread, and pattern, which is what lets you argue from data instead of from a hunch.

Safety gate · before any work

  • Wear the required PPE, keep the bench clear, handle equipment only as directed, and know where the eyewash, sink, and spill kit are before you start.
  • Human samples and data stay private: label with a code, never a name, and dispose of materials in the correct waste container, then wash your hands.

Do now

Build a graph from collected data and compute descriptive statistics to summarize a sample.

DueTonight, 11:29 PM
Hand in
Data table with three trials and units, calculations of mean/median/range/SD, a correctly labeled graph, and a 3-sentence CER explaining what the standard deviation reveals about precision.
Where
Submit this on the class form named on this page. The form requires the student's district Microsoft sign-in. The thank-you page is the submission receipt. A physical handoff counts only when the day page names that route. Doing the activity in myPLTW does not count as submitted.

You get two school days for every day you were absent, so this deadline moves with you.

If the form offers you a saved draft, choose New draft. If the Assignment box comes up empty, type it exactly: Graphing and statistics

Where you are · this course
Unit Course Launch: PLTW access, lab notebook, PPE/SDS, evidence handling, variables, controls, graphing, descriptive statistics. Graphing and statistics ▸ Day 3
Day 8 of 64 this semester56 left before WebXam
🧬 Where you are · PLTW
Unit 1: Medical Investigation ▸ Lesson 1.1 Investigating the Scene"Activity 1.1.1 A Sketchy Scene"
Counts toward: Handling, Preparation, Storage and Disposal (53.93% of the 072110 exam) · Biotechnology Research and Experiments (46.07% of the 072110 exam)
Every activity name and number was checked against your myPLTW course: Unit 1 against the PBS Teacher Guide on 2026-08-04, Units 2 to 4 against the full course crawl and the official PBS student files on 2026-08-05. Open this exact name in myPLTW (find it in Clever, Microsoft sign-in) so you never get lost.
Check the course before you open it. PLTW reuses the same numbers in different courses, so 3.2.2 in this class is not 3.2.2 in another Biomedical class. Match the course name and the lesson, not just the number. We write L for Lesson, A for Activity, Proj for Project and Prob for Problem, so you can tell them apart.
Today's driving question

You have thirty measurements and someone asks, so what does the data say? What do you compute and draw so your answer is defensible, not just an impression?

Today you'll be able to

Build a graph from collected data and compute to summarize a sample.

You've got it when
  • I can compute mean, range, and .
  • I can pick and label a graph that fits my data type.
Due today · Data table Required with three trials and units, calculations of mean/median/range/SD, a correctly labeled graph, and a 3-sentence CER explaining what the reveals about precision.
Do-Now · start these with your notes closed
  1. If two students both scored an average of 80, could their results still be very different? How?
  2. What does a graph show you that a table of numbers hides?
Do this · step by step
numbered so we can always find our place
  1. 1Enter Wednesday's measurements into a with labeled units.
  2. 2Calculate mean, median, range, and for your sample.
  3. 3Choose an appropriate graph type and plot the data with titled axes.
  4. 4Write a CER: what does the spread of data tell you about precision?
  5. 5Identify one limitation that the reveals about your method.
Interrupted or lost? If you lost your place, check your : three trials with units, then mean, median, range, and . Compute the next one you are missing.
The story

What did this day actually feel like?

Graphing and statistics

We took Wednesday's measurements and turned them into something defensible. Mean, median, range, standard deviation, then a graph with the axes actually labeled and units on them.

The thing that stuck: he showed two data sets with the same average that told completely different stories, because one was tightly clustered and one was all over the place. The average hid it. The spread revealed it. I had never thought of standard deviation as anything but a formula before, and now it is the number that tells you whether to trust the average.

My struggle today was the standard deviation calculation. I got it wrong twice because I was squaring after summing instead of before. A girl at my table walked me through it on scratch paper and it finally clicked.

AT HOME, THE WEEKEND BEFORE TUE SEP 8 Submit launch evidence Friday is packet day. Everything from the week goes in together: signed safety contract, the SDS card, the notebook SOP page, the data table with statistics, the graph.

He compared it to forensics, where a missing signature or one undocumented step can get otherwise perfect evidence thrown out of court. The tracker works the same way. Everything has a place and a missing piece is a missing piece regardless of how good the rest is.

I was missing the SDS card. I had done it, I just never uploaded it. Took two minutes to fix once I noticed, and I would not have noticed without the checklist.

Turned in: full week packet → recorded in Class Records

Fiction. There is no such student. The lessons, labs and dates are the real planned course; the student, the classmates and the conversations are invented.

The comic

The same day, drawn.

Drawing, panel 10: Graphing and statistics.

Two data sets, same average, completely different stories. The spread is what gave it away. I had never thought of standard deviation as anything but a formula.

Panel 10Graphing and statistics · 2026-09-04
Read week 2, 5 panels

Fiction. There is no such student. The lessons, labs and dates are the real planned course; the student, the classmates and the conversations are invented.

🛠 Get unstuck · pick your level

Run the lab
Compute mean, median, range, and standard deviation, then build a labeled graph.
Absent? Async catch-up
Standard deviation confusing? It just measures how spread out the numbers are from the mean; a bigger value means less precise.

Lab day: Tier 1 is the whole class at the bench. No extension today.

🔑 Today's words · 5

safetyPPESDSvariablecontrol
+3 more in the word bank

Tap a word in the lesson for a plain meaning and one example. Recycled into next week's Do-Now.

Today's study notebook
Lab safety, SDS reading, PPE, and keeping a proper science notebook.
Open the notebook
Watch first: today's 1-minute intro
Audio overviewVideo overviewMind mapStudy guideFlashcardsQuizData table
Where this fits
Tested on (Ohio WebXam)
Principles and Practice of Biomedical Technology · 072110
PLTW lesson
PBS · Lesson 1.1 Investigating the Scene
WebXam domain
Handling, Preparation, Storage and Disposal
Evidence to produce
Data table
Lab / skill
OSHA Hazard Communication Standard (SDS format)
Do the work · 80-minute blockfirst 5 min = hook

💡 Big idea: and a well-labeled graph turn raw measurements into evidence a scientist can defend.

  1. 0:00Quick-write: what is the difference between accuracy and precision? Share out
  2. 0:10Direct instruction: mean, median, range, , worked example with real numbers
  3. 0:28Students calculate all four statistics for their Wednesday data; check with a partner
  4. 0:42Graph construction: choose graph type, set labeled axes with units, plot data points
  5. 1:00CER writing: what does the spread (SD) say about precision in your measurement?
  6. 1:10Pair-share CERs; preview Friday submission checklist
Mr. Mendoza's 5-minute intro
  • You collected three measurements Wednesday. Three numbers on a page are not yet evidence. Today we turn those numbers into something a scientist or doctor could actually use.
  • In biomedical science, data without statistics is like a diagnosis without a reason. The tells us not just the answer, but how confident we should be in it.
  • We will practice calculating mean, median, range, and by hand first so you understand what the math is actually doing, then we will verify with a calculator.
  • Then we build the graph. A graph should tell the story of your data at a glance. We will learn what makes a graph trustworthy vs. misleading.
Know by the end
  • Mean, median, and range summarize a dataset's center and spread.
  • quantifies how much individual measurements scatter around the mean, revealing precision.
  • The choice of graph type (bar, line, scatter) depends on whether the is categorical or continuous.
Open this PLTW section today

Unit Course Launch: PLTW access, lab notebook, PPE/SDS, evidence handling, variables, controls, graphing, descriptive statistics. · Graphing and statistics

Day 3 of this lesson. Open this exact section in myPLTW (find it in Clever, Microsoft sign-in), then do the work below.

Do this: Open the launch unit in myPLTW and locate the data-analysis resource. Review any graphing or statistics guidance provided, then apply it to the data you collected Wednesday.

Complete

Mark the data-analysis review task complete in myPLTW.

How far to get

You collected data Wednesday. By the end of today your , , and labeled graph should all be in your notebook.

Upload as evidence

Completed notebook page showing the , calculated statistics, and a labeled graph.

The official PLTW activity stays inside myPLTW. If myPLTW will not open, use F1 and E1-E3 on this page to complete today's local evidence decision, then make up the official activity when access returns. Submit this on the class form named on this page. The form requires the student's district Microsoft sign-in. The thank-you page is the submission receipt. A physical handoff counts only when the day page names that route. Doing the activity in myPLTW does not count as submitted.

Today's PLTW tracker · fill in and submit

Check things off as you work, then submit. This tells Mr. Mendoza how you're doing so he can help the class. It does not replace turning in your producible through the submission route shown below.

Use the code Mr. Mendoza gave you, not your name. Saved on this device.

Unit Course Launch: PLTW access, lab notebook, PPE/SDS, evidence handling, variables, controls, graphing, descriptive statistics.Day 3 of this projectSee the full week plan
Today's PLTW target

Unit Course Launch: PLTW access, lab notebook, PPE/SDS, evidence handling, variables, controls, graphing, descriptive statistics. · Graphing and statistics

Open the launch unit in myPLTW and locate the data-analysis resource. Review any graphing or statistics guidance provided, then apply it to the data you collected Wednesday.

You collected data Wednesday. By the end of today your , , and labeled graph should all be in your notebook.

This is how Mr. Mendoza sees the class keeping pace with PLTW. Be honest, it only helps if it is accurate.

1 · What you do today

🎯 Build a graph from collected data and compute to summarize a sample.

  • Enter Wednesday's measurements into a with labeled units.
  • Calculate mean, median, range, and for your sample.
  • Choose an appropriate graph type and plot the data with titled axes.
  • Write a CER: what does the spread of data tell you about precision?
  • Identify one limitation that the reveals about your method.
2 · What you turn in

Data table: with three trials and units, calculations of mean/median/range/SD, a correctly labeled graph, and a 3-sentence CER explaining what the reveals about precision.

Submit this on the class form named on this page. The form requires the student's district Microsoft sign-in. The thank-you page is the submission receipt. A physical handoff counts only when the day page names that route. Doing the activity in myPLTW does not count as submitted. Use the checklist just below and upload by 11:29 PM for full credit. Absent with an excused absence? You get two school days for every day you were absent, so this deadline moves with you.

3 · Who's doing what (team)
TaskWho
Enter Wednesday's measurements into a with labeled units._______
Calculate mean, median, range, and for your sample._______
Choose an appropriate graph type and plot the data with titled axes._______
Write a CER: what does the spread of data tell you about precision?_______
Identify one limitation that the reveals about your method._______

Working solo? Put your own name in "Who" for every row.

4 · Words I can use correctly
5 · I'm successful today when I can…
  • I can compute mean, range, and .
  • I can pick and label a graph that fits my data type.
6 · Reflection & next steps
Where are you today?0/7 checked
Pick your period and code first.
Your 4 steps today
  1. 1
    Do this
    Build a graph from collected data and compute descriptive statistics to summarize a sample.
  2. 2
  3. 3
    Submit this
    Data table: Data table with three trials and units, calculations of mean/median/range/SD, a correctly labeled graph, and a 3-sentence CER explaining what the standard deviation reveals about precision.
  4. 4
    Submit it here
    1. 1Open the form. It must say For students at the top: if it says For parents and guardians, press Back and pick I am the student.
    2. 2If it offers you a saved draft, choose New draft: an old draft brings back the old assignment.
    3. 3Sign in with your district Microsoft account, not a personal one.
    4. 4Check the Assignment box says today's assignment from this page, then pick your period and type your student ID, all nine digits.
    5. 5Attach your file and press Submit. The thank-you page is your receipt.
    Submit this on the class form named on this page. The form requires the student's district Microsoft sign-in. The thank-you page is the submission receipt. A physical handoff counts only when the day page names that route. Doing the activity in myPLTW does not count as submitted. Principles of Biomedical Technology (Principles of Biomedical Science) › Unit Course Launch: PLTW access, lab notebook, PPE/SDS, evidence handling, variables, controls, graphing, descriptive statistics. › Data table
    Turn it in
Were you absent? Jump to the make-up plan
Learn it · deck, reading, and vocabulary
Socratic teaching slide deck

The deck carries the prior idea forward, lets you inspect an analogy, maps the rule to biology, and ends with the same evidence decision and exit ticket used on this page.

Generated from this lesson's canonical data with a red-team citation check.

Carry forward

Proper PPE and SDS literacy are non-negotiable prerequisites before anyone enters a biomedical lab.

Daily take-home

and a well-labeled graph turn raw measurements into evidence a scientist can defend.

Inspect the analogy

A research team lays out its question, variables, controls, sampling plan, measurement record, and analysis before deciding what the data support.

  1. Which variable is changed or compared?
  2. Which conditions and measurements must stay consistent?
  3. Which conclusion is inside the study's evidence boundary?
Rule

Define variables, controls, sampling, units, and the analysis plan before interpreting a result; analysis cannot repair biased or inconsistent measurement.

Where it breaks

A well-organized classroom study can still be limited by , measurement quality, confounding, and the population represented.

Map the analogy to biology
  • Question and variable cards map to the study design.
  • Control and measurement cards map to fair, reproducible data collection.
  • The conclusion card maps to a bounded claim supported by the analysis.
Read this first

Driving question: You have thirty measurements and someone asks, so what does the data say? What do you compute and draw so your answer is defensible, not just an impression?

What you already know: Proper PPE and SDS literacy are non-negotiable prerequisites before anyone enters a biomedical lab.

New idea: and a well-labeled graph turn raw measurements into evidence a scientist can defend.

Visual or model: F1. F1. A lesson illustration or teaching diagram for Graphing and statistics. Use it with E1-E3; it is a model or context image, not experimental or patient data. What to notice: Use the labels and arrows in F1 to identify the relationship that supports Graphing and statistics.

  1. Observe or measure the relevant feature in today's lesson.
  2. Organize the observation with a stable evidence ID.
  3. Apply this rule: Define variables, controls, sampling, units, and the analysis plan before interpreting a result; analysis cannot repair biased or inconsistent measurement.
  4. Choose the option the evidence supports and state the limit of the conclusion.

Real biomedical example: You have thirty measurements and someone asks, so what does the data say? What do you compute and draw so your answer is defensible, not just an impression?

What the evidence supports: E1-E3 and F1 support the daily take-home when the response meets the stated success criteria.

What it cannot prove: The package does not support claims beyond this lesson's or any real patient diagnosis.

Vocabulary:
  • : Practices and precautions that protect people from harm, such as wearing protective equipment and handling hazards correctly in a lab or clinic.
  • PPE: Personal protective equipment, the gear like gloves, goggles, lab coats, and masks worn to shield the body from chemical, biological, or physical hazards.
  • SDS: A data sheet: a standardized document listing a chemical's hazards, safe handling steps, and emergency measures for anyone using it.
  • variable: Any factor in an experiment that can change or be changed, including what you test, what you measure, and what you hold steady.
  • control: The comparison condition that isolates the effect of the variable being tested by keeping everything else the same.
  • evidence: The facts, data, and cases that carry your claim. Opinions are free; evidence costs homework.
  • : The documented record of who handled a piece of evidence, when, and where, proving it was never lost, swapped, or tampered with.
  • : Numbers and graphs, such as the mean, median, and range, that summarize and describe a set of data without drawing wider conclusions.

Use it now: Choose one decision option. Cite E1 and E3, then explain how the rule connects the evidence to your choice.

Go further, optional: The source links below are optional enrichment. Every fact required for today's local evidence decision appears in this lesson package.

Evidence set and decision
E1 · Source fact

A planned study connects its question to defined variables, controls, sampling, measurement, and analysis so the resulting data can support a bounded and reproducible conclusion.

Limit: A statistical difference or trend does not automatically establish practical importance, causation, generalizability, or freedom from bias.

E2 · Teaching model

Define variables, controls, sampling, units, and the analysis plan before interpreting a result; analysis cannot repair biased or inconsistent measurement.

Limit: A well-organized classroom study can still be limited by , measurement quality, confounding, and the population represented.

E3 · Task criterion

You can compute mean, range, and .

Limit: E3 defines the classroom product or success criterion. It is not independent scientific evidence and cannot justify a clinical or causal claim.

PLTW-PBT@P67-2026-09-04 · Simulated classroom evidence scenario

Your role: biomedical team member

Decision: Your team must decide what the evidence from today's lesson supports before submitting the labeled and result claim named on the lesson page.

  • Select the option best supported by E1-E3.
  • Select a reasonable alternative and name the evidence it would require.
  • Delay the claim because the evidence does not distinguish the options.

Response: State one choice, cite at least two evidence IDs, explain the rule that connects them, and add one limitation. Submit it as the labeled and result claim.

Claim ceiling: Today's evidence supports a classroom claim about today's lesson. It cannot prove causation, diagnose a real patient, or justify action outside this room.

Composite case file · PLTW-PBT@P67-2026-09-04

Reason for review: Your team must decide what the evidence from today's lesson supports before submitting the labeled and result claim named on the lesson page.

Context: and a well-labeled graph summarize a dataset's center, spread, and pattern, which is what lets you argue from data instead of from a hunch.

Timeline:
  • T1: Enter Wednesday's measurements into a with labeled units.
  • T2: Calculate mean, median, range, and for your sample.
  • T3: Choose an appropriate graph type and plot the data with titled axes.
  • T4: Write a CER: what does the spread of data tell you about precision?
  • T5: Identify one limitation that the reveals about your method.
Evidence records:
  • E1: A planned study connects its question to defined variables, controls, sampling, measurement, and analysis so the resulting data can support a bounded and reproducible conclusion.
  • E2: Define variables, controls, sampling, units, and the analysis plan before interpreting a result; analysis cannot repair biased or inconsistent measurement.
  • E3: You can compute mean, range, and .

Measurements: Use only the measurements, units, graph, or counts supplied in today's task. No additional patient measurement is implied.

Figure finding: Teaching diagram for Graphing and statistics. Use the labels and arrows to identify the decision-relevant relationship. This is a teaching model, not patient or experimental data.

Uncertainty: This is a composite classroom scenario. Missing history, measurements, or confirmation tests remain unknown and limit the conclusion.

Math moment
Formula or setup

Mean = sum of values / number of values. Median = middle ordered value. Range = maximum - minimum.

Worked parallel example

For 2, 4, 4, and 10: mean = 20 / 4 = 5, median = 4, and range = 10 - 2 = 8.

Units and reasonableness

Mean, median, and range keep the measurement unit. Order the values before finding the median.

Try it with today's data

Calculate the requested summary for today's supplied values, then write what it reveals and what it hides.

Watch the trap

Students often think the average (mean) tells you everything about a dataset. The trap: the mean hides the spread, so two datasets with the same mean can differ wildly; the range and are what reveal precision

Worked example · a parallel case (guides, does not reveal)
Data table with descriptive statistics
Completes: Completes the data-analysis launch task: a clean data table with the mean, range, and a labeled graph of your measurements.

I measured the resting heart rate of four classmates, three trials each, then summarized.

  • Mean (Trial averages): 72 beats per minute
  • Range: 84 minus 64 = 20 beats per minute
  • Claim from the graph: heart rate varied most for Sample D, so I would re-check that person's measurements before trusting them.

My graph has the four samples on the x-axis (labeled 'Sample') and beats per minute on the y-axis (labeled 'Heart rate, bpm'), with a title 'Resting Heart Rate by Sample'. Every axis is labeled and has units, which is the SOP for a trustworthy figure.

SampleTrial 1Trial 2Trial 3Average
A70727171
B65646665
C83848283
D68767272
Heart-rate data for four samples with three trials each and a computed average column.
Why this matters

This model shows the level of evidence and organization needed to complete: Completes the data-analysis launch task: a clean data table with the mean, range, and a labeled graph of your measurements.

Build yours step by step
  1. Name the variables and include units.
  2. Enter observations without changing the raw values.
  3. Check labels, calculations, and patterns before interpreting the data.
Change it for a new task

Keep the structure. Replace the question, facts, measurements, and evidence. Then recheck units, vocabulary, and whether the conclusion goes beyond the evidence.

Also due today: Save the labeled graph image to your notebook and write one sentence stating the mean and range in words.

See the full worked example
Portal terms
CER:
Claim, Evidence, Reasoning: make a claim, back it with evidence, explain your reasoning.
SOP:
Standard Operating Procedure, the exact steps to follow (especially in a lab).
Tracker:
Your PLTW progress log where you record completed evidence.
myPLTW:
The PLTW course site where you do the online activities. Find it in Clever with your Microsoft sign-in, right next to Schoology.
This unit's vocabulary
(Personal Protective Equipment)(Safety Data Sheet)

Tap the speaker to hear a term. Add two of these to your notebook glossary with a definition and an example in your own words.

Build your vocabulary · optional, for extra credit

Pick just 2 or 3 words from today and make them yours: write what each one means in your own words, name the context clue or evidence that helped, then give one example from what you actually did in Graphing and statistics. Try your own words first; the glossary is there if you get stuck. This is voluntary and counts as extra credit, so keep it short.

safety
PPE
SDS
variable
control
evidence

Saved on this device. Show Mr. Mendoza or add these to your notebook glossary to claim the extra credit.

Resources & readings

Hand-picked readings and interactives for this lesson, from authoritative open organizations and PLTW's own public course outline.

Check yourself · commit, then reveal

Claim ceiling for this check: Today's evidence supports a classroom claim about today's lesson. It cannot prove causation, diagnose a real patient, or justify action outside this room.

Quick self-check · commit, then reveal

Two samples have the same mean but very different standard deviations. What does that tell you, and which is more precise?

How sure are you?

Write an answer and pick a confidence to unlock the key.

Cumulative WebXam review · flash practice

Fast retrieval with instant answers, not the commit-then-reveal check above. Try each from memory first: write what you remember about the earlier units, then check yourself here.

Tap an answer to check it · nothing is recorded or graded
[Review: Orientation: how we learn in Principles of Biomedical Science] What is the WebXam?
After using a single-use scalpel in the laboratory, what should you do with it?
Go further and get help
🔬 Pre-lab simulation

Run this before you touch the bench. It is built from the real lab procedure, so the decisions you make here are the ones you will make with the equipment in your hands.

The Glove That Failed
Open the simulation →
Lab · prepare, conduct, complete
1Prepare
Pre-lab pass · clear all six to go to the bench
0/6

I can name the procedure's purpose and the evidence I will record. I can identify each named hazard and the control that reduces it: Wear the required PPE, keep the bench clear, handle equipment only as directed, and know where the eyewash, sink, and spill kit are before you start. My data table is ready before materials are handled.

Finish the checklist before you handle any material.

Bring / set up
Bound lab notebookSafety gogglesNitrile glovesLab coat or apronEyewash stationPrinted or digital Safety Data SheetChemical waste container
Safety · specific to today's hazards
  • Wear the required PPE, keep the bench clear, handle equipment only as directed, and know where the eyewash, sink, and spill kit are before you start.
  • Human samples and data stay private: label with a code, never a name, and dispose of materials in the correct waste container, then wash your hands.
Review Lab Safety (rules, PPE, SDS, emergencies) and check your contract + test
2Conduct (Argument-Driven Inquiry)
  1. 1Before materials are handled, identify the purpose, variables or comparison, controls, measurement units, and stop-work condition.
  2. 2Enter Wednesday's measurements into a data table with labeled units.
  3. 3Calculate mean, median, range, and standard deviation for your sample.
  4. 4Choose an appropriate graph type and plot the data with titled axes.
  5. 5Write a CER: what does the spread of data tell you about precision?
  6. 6Identify one limitation that the standard deviation reveals about your method.
  7. 7Record each result in the prepared table before interpreting it. Mark missing, repeated, or invalid results truthfully.
  8. 8Complete the named cleanup and waste route, remove PPE safely, wash hands when required, and confirm the station is ready for the next group.
Prepare this data table before materials are handled
Trial or sample IDIndependent conditionMeasured result with unitsObservation before interpretationQuality-control note
     
     
     
OSHA Hazard Communication Standard (SDS format)
3Complete
Argue from your evidence, then compare what you predicted to what happened. Error analysis names a specific method limit, never "human error".
You predicted

Before the procedure, predict the result and cite the rule behind the prediction.

What actually happened

After the procedure, compare the result with the prediction and name one limitation or source of uncertainty.

Your lab report is graded on the rubric below, with extra weight on error analysis and method.
Where this leads: careers
What to do if you were absent
This one needs the room

Today's work depends on equipment and locations in our lab, so it cannot be finished from home. Do the part that travels: read the target above and the safety notes, and write what you already know.

Back in class. The in-room part has to be done in the room. See Mr. Mendoza on your first day back and he will run it with you before you work at the bench.

If MR. MENDOZA is absent

Class still runs. Complete the online activity above (it's self-guided). Need the concept taught without a teacher? Use this authoritative explainer:

OSHA Hazard Communication Standard (SDS format)
How this is graded
For: Data table: Data table with three trials and units, calculations of mean/median/range/SD, a correctly labeled graph, and a 3-sentence CER explaining what the standard deviation reveals about precision.
  • Complete
    Every required part of the artifact is present, nothing left blank.
  • Accurate
    The science and the data are correct and match the evidence.
  • Scientific reasoning
    You explain your claim with evidence and reasoning (CER), not just an answer.
  • Professional communication
    Clear, organized, labeled, and written the way a clinician or scientist would.
  • Submitted
    Turned in through the one route named under Submit here and confirmed by the form receipt or the named physical handoff. Not in Schoology: that is where the report-card grade appears later.
  • Error analysis and method · counts double
    Name a specific limit of the method and how it moved your result, and compare what you predicted to what happened. "Human error" does not count; say what about the procedure or instrument caused it.