Lab Safety 101: for Middle and High School Science Teachers

Lab Safety 101: for Middle and High School Science Teachers

Lab Safety 101: for Middle and High School Science Teachers

As a new science teacher, one of the most daunting aspects was trying to get my head around lab safety. There were so many rules and procedures, not just for me but also my students and it was very overwhelming. 

This guide will walk you through essential safety protocols, tips for setting up a safe laboratory environment, and provide resources for teaching lab safety effectively in a middle or high school environment.

lab safety 101 for science teachers a tray of gloves and safety glasses

Disclaimer: This blog post, ‘Lab Safety 101: A Comprehensive Guide for Middle and High School Science Teachers’, may contain links to resources that I have created for classroom use. Read full disclaimer here. activ

Understanding the Importance of Lab Safety

Before diving into the specifics, it’s crucial to recognize the significance of lab safety. The laboratory is a space where students engage in hands-on learning, often with potentially hazardous materials and equipment.

By establishing a culture of safety, you not only protect your students but also foster an environment that encourages curiosity, exploration, and a lifelong love of science.

Essential Lab Safety Protocols

1. Safety Briefings and Demonstrations

Begin every lab session with a safety briefing. Emphasize key safety rules, potential hazards, and the proper use of equipment. Consider demonstrating techniques and procedures to ensure students have a clear understanding.

2. Safety Equipment and Emergency Procedures

Familiarize students with the location and proper use of safety equipment, including eyewashes, fire extinguishers, first aid kits, and emergency exits. Conduct regular drills so that everyone knows what to do in case of an emergency.

3. Personal Protective Equipment (PPE)

Require students to wear appropriate PPE, including lab coats or aprons, safety goggles, and closed-toe shoes. Stress the importance of wearing these items at all times while in the lab.

4. Handling Chemicals

  • Store chemicals properly, following manufacturer guidelines.
  • Label all containers clearly, including any secondary containers.
  • Never mix chemicals unless directed to do so by the experiment instructions.
  • Provide proper ventilation when working with volatile substances.

5. Handling Glassware and Equipment

  • Inspect glassware for cracks or defects before use.
  • Instruct students on proper techniques for handling, cleaning, and storing glassware and equipment.

6. Waste Disposal

Clearly designate and label waste disposal containers for different types of waste (e.g., chemicals, broken glass). Teach students how to dispose of materials safely and in compliance with local regulations.

Setting Up a Safe Laboratory Environment

1. Lab Layout and Organization

  • Arrange workstations to allow for easy movement and supervision.
  • Keep aisles and exits clear of obstructions.
  • Provide clear signage indicating safety equipment and emergency exits.

2. Storage and Labeling

  • Store chemicals, glassware, and equipment in designated areas.
  • Clearly label shelves and containers to indicate contents and hazards.

3. Ventilation and Fume Hoods

Ensure adequate ventilation in the lab to prevent the buildup of fumes or gases. If available, instruct students on the proper use of fume hoods.

4. Safety Inspections and Maintenance

Regularly inspect equipment, safety devices, and emergency systems. Address any issues promptly and keep a record of maintenance activities.

5. Safety Documentation

Maintain up-to-date records of safety protocols, emergency procedures, and any incidents or accidents that occur in the lab.

 

Classroom resources for teaching lab safety

1. Lab safety contract – this was actually a game changer for me in my middle school classroom. By having a lab safety contract that students signed, it gave students a sense of seriousness and ownership over the lab and their behaviour in it. It also gave me something to refer back to if I felt students weren’t behaving properly, and to remind them of the consequences of it (which they agreed to when they signed it!)

2. Lab safety posters – these are great to have as visual reminders of lab safety protocol, as well as being a part of your classroom decor! 

3. Lab safety escape room – want a fun way to review lab safety rules and procedures? This escape room is a super fun way to have students engage in revising these – perfect for the start of the school year! 

4. Bunsen burner licence – My middle school students LOVE getting their Bunsen burner licences. It makes them feel like they have accomplished something and the physical certificate is something they really value.

5. Rainbow Lab Following Instructions this Rainbow lab is a great back to school activity as it impresses the importance of following instructions and taking precise measurements.

 

Resources for Teaching Lab Safety

1. American Chemical Society (ACS) Safety Guidelines

The ACS provides a wealth of resources, including safety guidelines, lesson plans, and videos to help teach lab safety effectively. ACS Safety Guidelines

2. Flinn Scientific Safety Resources

Flinn Scientific offers a range of safety resources, including safety data sheets, instructional videos, and safety posters. Flinn Safety Resources

3. Occupational Safety and Health Administration (OSHA) Lab Safety

OSHA provides a comprehensive guide to lab safety, including regulations, training resources, and hazard communication guidelines. OSHA Lab Safety

4. National Science Teachers Association (NSTA) Safety Resources

NSTA offers a variety of safety resources, including articles, lesson plans, and safety checklists for science teachers. NSTA Safety Resources

Conclusion

As a new science teacher, prioritizing lab safety lays the foundation for a successful and enriching learning experience. By instilling proper safety protocols, maintaining a safe laboratory environment, and utilizing resources for teaching lab safety, you create an environment where students can explore the wonders of science with confidence and curiosity.

Remember, safety is not just a rule, but a culture that fosters a lifelong appreciation for the scientific process and ensures the safety of all students and teachers.

Note: Always consult your school’s specific safety guidelines and policies, and seek guidance from experienced colleagues or administrators when in doubt about safety protocols.

 

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8 Fun science lab safety worksheets and activities

8 Fun science lab safety worksheets and activities

8 Fun science lab safety worksheets and activities

Teaching middle school and high school students about lab safety is a necessary evil. 

Students find it boring and teachers hate teaching it.

 

But… with the right lab safety resources and activities, you can engage students and have fun with ensuring they understand best practices in the science laboratory.

 

From lab safety rules posters, to lab safety contracts, digital escape rooms and scavenger hunts, these fun science lab safety worksheets and activities will ensure that your students don’t get bored while learning the essential concepts. 

science lab safety worksheets and activities a group of people wearing lab coats

Disclaimer: This blog post, ‘Fun science lab safety worksheets and activities’, contains links to resources that I have created for classroom use. Read full disclaimer here. 

What lab safety features should students know about?

When I was a new teacher I was so overwhelmed when trying to figure out the different lab safety features students needed to know to ensure a safe learning environment.

 

Here is a list I refer to each year to make sure I don’t forget anything:

1. Location of safety equipment such as the fire extinguisher & fire blanket

2. Location of personal protective equipment (PPE) such as safety goggles, lab coats and gloves. 

3. Emergency gas cutoff switch

4. Emergency exits and evacuation procedure

5. Location of the sand bucket for a chemical spills

6. Chemical shower

7. Eye wash stations

8. Hazardous materials signs and symbols

9. Fume hoods 

8 fun science lab safety worksheets and activities

 

Fun science lab safety worksheets and activities

 

These science lab safety worksheets and activities will make your lesson plans so much more interesting without adding extra prep to your workload. 

1. Lab Safety Posters:  These are a great reminder and reference to have up in your classroom. Plus they double as classroom decorations! 

2. Lab safety contract: this is a great way to have students take ownership over their own behaviour in the chemistry lab by having them sign an agreement to adhere to the general rules of the science classroom.

3. Lab safety lesson: including lab safety worksheet and cute lab safety posters. This full lesson covers key lab safety practices and basic rules such as 

tieing up long hair, and what to do if there is an accident.

4. Lab safety digital escape room – science students LOVE this as it is an engaging way to review key science lab safety ideas while being collaborative and fun. Students can complete with a lab partner or individually. You may also like this lab equipment digital escape room.

5. Bunsen burner licence: A Bunsen burner licence is an excellent way to keep students accountable for the safe use of a Bunsen burner. The Bunsen burner checklist is a clear and easy way to assess whether students can use a Bunsen burner safely, as well as being a great checklist for students to look back on in case they forget anything.

6. Science equipment scavenger hunt: this activity is a great way to introduce students to various pieces of science equipment while also getting them familiar with where things are stored in a lab.

7. Following instructions lab: this is a fun introduction for middle school students to the scientific method and importance of following instructions carefully. This is great to use in any general science subject to enforce careful attention to detail. 

8. Boiling water experiment: This is a simple experiment that is great for a class’ first experiment as it is simple to set up, yet needs proper lab safety protocol to be followed including use of PPE, lighting the Bunsen burner etc. It is also a good way to introduce recording data as students measure temperature and record it in a table. 

8 fun science lab safety worksheets and activities

*Each resource contains a teacher answer key (where relevant).

Conclusion

In a science lab setting, there are many safety features and protocols to be aware of. This is even more important when you are responsible for up to 30 students working in the lab. 

Having a bank of fun science lab safety worksheets and resources is key to engaging students in learning about the fundamentals.

 Always consult your school’s specific safety guidelines and policies, and seek guidance from experienced colleagues or administrators when in doubt about safety protocols.

8 fun science lab safety worksheets and activities

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44 easy science differentiation strategies

44 easy science differentiation strategies

44 easy science differentiation strategies

As a science teacher, it can often feel like we are teaching a different language. The vocab, the experiments, and the concepts are not easily grasped by all. This is why differentiation in science is so important to ensure all students are able to access the learning. Luckily for us there is a plethora of science differentiation strategies we can use to cater to individual students in the science classroom.

So grab a coffee, sit back and relax while I share 44 easy science differentiation strategies for your classroom.

List of science differentiation strategies

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List of science differentiation strategies

Before we get started – what is differentiation?

Carol Ann Tomlinson defines differentiation as the practices of proactive planning and inclusivity to ensure the learning experiences are accessible to all learners to meet their individual learning needs. 

I love this definition as it really encompasses the main point – to meet the learning needs of your students. 

Note that it doesn’t say: plan 32 different lessons so each students has a personal lesson plan. 

Differentiation is an understanding of student learning needs and how to meet them. It requires successful incorporation of multiple strategies in order to meet the individual needs of those in your classroom.

List of science differentiation strategies

What areas can you can differentiate?

There are 5 ways I believe you can differentiate teaching and learning opportunities in the classroom:

1. Differentiate the Content

Differentiating the content means ensuring each student starts where they need to. This may mean that some students need to start at an introductory level, or maybe even a whole grade level behind, while others can jump in at the extension questions. 

 

This also includes how students receive the content. Whether they receive the content via the teacher, a video, visual resources, etc. 

 

2. Differentiate the Product

This can refer to either the end product students produce to demonstrate their learning, or the standard of that product.

 

3. Differentiate the Process

The process or method used is how it is you want your students to learn the content. An example might be that you explicitly teach one group while having another do some research, or watch a video or do some hands-on modelling. 

 

4. Differentiate the Environment

The environment shapes how or where the activity is completed. This includes whether students complete the activity in groups or individually, and where they might complete that work in the classroom.

 

5. Differentiate Accessibility 

Ok so this is one I made up – but I felt the need to add another category as there are some differentiation strategies that don’t fit in the above categories. After having a read through let me know in the comments if you think this category is legit!

Accessibility refers to any differentiation that makes the learning accessible or achievable for a student that doesn’t necessarily mean a change to any of the above categories. Examples of accessibility could be providing more processing time for individual students or providing scaffolding that breaks down the concepts, allowing them to still meet the same learning intention and success criteria as other students. 

Often accessibility changes are actually ones that can be given to the whole class without hindering those who don’t necessary need the adjustment. For example, if you have students in your class who benefit from having more white space on the page so it isn’t overwhelming, just create one worksheet for the whole class like this. There is no need to create one worksheet with more white space and another with less. But by providing that resource you have ensured the inclusivity of students into the learning environment and made it more achievable for them.

 

Now, let’s get onto the good stuff! List of science differentiation strategies

List of science differentiation strategies 

As a classroom teacher, differentiation can seem like a daunting and overwhelming task. Science instruction is already a mammoth task considering the difficulty of the science content, adding differentiation can seem so overwhleming. However, these strategies are easy to implement without adding massive amounts of time or effort to your workload.

 

40 easy science differentiation strategies for the classroom

Science differentiation strategies for the content

Differentiating the content is the category that will pull on your instructional strategies the most. 

1. Provide various entry levels

Some students might need instruction from the foundations of the topic. Others might need to explore the concept on a deeper level. 

 

Here are some easy, low prep ways to do this practically:

 

  • In a science textbook or worksheet with multiple questions, students have to get 3 answers correct in a row in each section before moving on to the next. This means those who have understood the content and are ready to move forward will be able to and it immediately differentiates the work for the entire class. 

  • Divide your questions for a topic into sections so they gradually increase in difficulty. You can either let students choose which section they begin in or allocate those sections based on where your testing and observations suggest each student is ready to begin.

  • Allow students to choose whether they listen to explicit instruction. After doing some pretesting it may become obvious that some students already have a good knowledge of the topic you are about to teach. Don’t waste their time by making them sit through explicit instruction on something they already know. Allow them to get straight into some questions or applications of the learning. 

  • Provide the opportunity for peer teaching. If you have some students who already understand the concept then allow them to teach some of their peers. 

 

2. Incorporate videos & flipped learning

Videos are a great resource to use for differentiation if teaching a mixed ability class. While teaching high school chemistry, flipped learning become a regular teaching method as there was a lot of content to cover in limited amount of time.

 

How does flipped learning allow differentiation? 

 

Instead of having the class watch the video together at the front, allow students to watch it individually with headphones. This allows those who need to rewind and rewatch certain parts to do this. Or for those who take more time to process information, they are able to pause the video and reflect rather than watching it all in one stream.

 

Often I pair my videos with questions. For my higher ability students, they are able to watch the whole video and then answer the questions. For my students needing more support, I give less questions and allow them to complete while watching the video and pausing when they understand the answer. For those needing even more support I provide the approximate time in the video that the question is answered.

 

Flipped learning is a term coined by Jon Bergmann and refers to students watching the video for home learning, and then coming into the classroom ready to tackle harder questions and apply their learning with the support of the teacher.

Head to my YouTube channel if you’d like some great science videos that are perfect for flipped learning. 

 

3. Jigsaw activities

Jigsaw is a way of grouping students. First students are split into groups where, as a group, they are to research / investigate / learn about a specific part of the topic. 

 

For example, for studying renewable and non renewable resources in science, one group might study solar energy, another wind energy, another fossil fuels etc. Once they have become ‘experts’ at their given topic they then get split into mixed groups where each student is considered the ‘expert’ of their own topic. In this group each student takes a turn to teach the group about their area. 

 

This can be done with random assignments of groups, or you can sort students into groups and provide the expert topic based on their learning needs. For example, solar energy may be easier for students to research than fossil fuels.

 

4. Incorporate student interests

Being able to know your students well enough to incorporate their interests can sometimes be overwhelming – particularly at the beginning of the school year. 

 

However, there are definitely ways you can do this without knowing all their individual likes, hobbies and sports. 

 

For example, in teaching physics I like to have students choose one of Newton’s laws and write about how it applies in a sport or hobby of their choice. For learning adjectives, it could be writing a list of all the adjectives they can think of for their sport / object / place of choice.

 

5. Changing the context or application

The context or application of the learning can be differentiated. For example, one group of students may apply their learning to an everyday example, while another may apply it to an industrial example.  

 

6. Doodle notes

Doodle notes (TM) are a type of scaffolding that give students freedom to express their learning and understanding of a concept while also being able to ‘doodle’ with diagrams, colouring or sketches. I like to use these super simple doodle note templates for topic summaries or while watching a video. Click here to get them for FREE!

I actually find that my extension students often need this type of scaffolding to help become more concise in their notes. 

Note: Doodle Notes is a trademarked term used with permission. check out doodlenotes.org for more.

List of science differentiation strategies

7. Encourage cross-curricular application

Some students might be ready to apply their knowledge across subject areas. By incorporating this type of learning, your extension or gifted students will be able to engage in critical thinking and higher order thinking skills. For example, a lot of earth and environmental science crosses over into geography.

 

8. Less ‘drills’ and more problem solving 

If your pretesting shows that students already have a good knowledge base then allow them to skip the drills and launch straight into the application and problem-solving questions. Providing leveled questions can be a helpful way to do this and allow students to start from where their readiness levels indicate.

 

9. Have students write their own questions

Another way to extend students would be to ask them to write their own questions. This works well if you can pair up some of your extension students to work together. That way they can each write a question, have their peer complete it, then swap back again to mark their peer’s answer. The level of understanding and critical thinking required to write an appropriate question is far superior to that needed just to answer a question.

 

10. Graphic organisers / visual representation

Graphic organisers allow for the visual processing of concepts and ideas, and more specifically how they connect to other concepts and ideas. A way to differentiate using these is providing students who need extra support with a graphic organiser or a scaffolded graphic organiser, while those who need extension could create a graphic organiser. 

 

11. Task cards

Task cards are an easy activity to provide to the whole class. How does it involve differentiation?

 

Provide choice. Choice in the order they complete the task cards and choice in how many they complete. 

 

12. Add personification

Personification is my all time favourite differentiation strategy for engaging higher order thinking skills for students. This can be so easily added to any worksheet, activity, or task and super easy to add into a lesson if some students finish their work early. 

 

So what is it?

 

Personification is attributing human characteristics or personality to something that isn’t human.

 

Therefore, to incorporate personification into learning ask students to answer questions like these examples below:

  • Science equipment: What would a conical flask say to a beaker?

  • Chemistry: What hydrogen bond say to a dispersion force?

  • Earth Science: What would a sedimentary rock say to a metamorphic rock?

  • Biology: What would a virus say to a bacteria?

13. Use stations 

Station rotation models are a great way to differentiate. How can you differentiate the content? Make you one of the stations! When students come to you in small groups you can tailor your teaching to those groups of students to meet individual student needs. Alternatively, use the opportunity to include ‘help stations’ so students can come to you or a teachers’ aide for help throughout the activity. List of science differentiation strategies

Science Differentiation Strategies for differentiating the product

Science differentiation strategies for the product can be done in various ways to help you cater to all ability levels. The science curriculum lends itself to a wide range of differentiated activities to engage students in the learning process. 

 

14. Offer choice for the type of activity or type of product

I used to think this was so much work as I didn’t want to have to make 4 different lessons for students to choose. 

 

But you don’t have to do this! 

 

For example, research tasks are easy to differentiate in this way as students could choose how their final product will look. Will it be a brochure? A poster? Video? Slideshow? You can still provide the same success criteria and have students research the same key points, but give them choice in how they would like to present it.

 

For activities, rather than having students go through all stations set up around a room, give them a number to complete. If you set up 5 stations then ask students to choose three to complete. This also allows those who may finish sooner to have the opportunity to complete an extra station. It also means that for those students who need extra time you could easily differentiate and ask them to only choose two to complete.

 

15. Engage with their cultural background

Providing opportunity for students to engage with their cultural background can not only engage them but allows for differentiation in your classroom. This may be as simple as allowing them to research or apply the relevance of the topic to their cultural practices or traditions. 

 

16. Incorporate technology 

Technology provides a lot of options for choice for students to learn and demonstrate their learning. Students could choose whether the end product may be a short video, powtoon, infographic and so on. 

 

17. Differentiate the success criteria

While you might be providing students the same activity to complete, differentiation could come in with the success criteria you provide for students. Students who need some extension could have different levels of success criteria to meet which may extend them in terms of depth or breadth of understanding shown, or the quality of product produced.

 

18. Provide sophisticated language prompts

For students who need an additional challenge, encourage students to up their language game by providing prompts for sophisticated language examples to include in answers. For example, when explaining ask students to use words such as ‘consequently’ or ‘thereby’, rather than the words ‘and’ or ‘but’. 

 

19. Change the verb

Differentiating the verb used can prompt students to deliver various products. E.g. design, create, evaluate, assess, compare etc. Blooms taxonomy can be a helpful reference for this.

 

20. Allow for the expression of creativity

Allow students to be creative with the end product. This could be done by offering choice for presenting information via a model, diorama, painting, sculpture, drama, song etc. 

 

21. Interview students

I’ve often come across student’s who struggle to express their level of understanding on paper, but can very clearly express it verbally. This is a great option for informal assessment and can be done during a regular class lesson. 

List of science differentiation strategies

List of science differentiation strategies for differentiating the process

Spend some time when you are organising your lesson plans to consider whether you can incorporate any of these science differentiation strategies for the process in your science program.

 

22. Use technology

There are lots of different programs that allow for easy differentiation by offering students choice. For example, Quizlet allows students to choose how to learn the content, whether it be by using flashcards, multiple-choice questions, typing an answer, practicing spelling, matching the correct term to definition, or playing a game.

 

23. Offer choice for the order they complete tasks

While there is often a need to have students complete tasks in a particular order, there also often arises the opportunity to change up that order. Allowing students to choose their own adventure allows students to learn the material in the order that makes sense for them.

 

24. Cut and paste activities

Allowing for students to physically rearrange something can be so powerful for those needing adjustments. This helps their brain to process the information in a new way. This can be easily done in class with simple worksheets. For example, if you are wanting students to match the term with the glossary definition then provide students with a printable version they could cut and paste. This offers another opportunity to provide choice as students could choose to cut and paste, or use colour coding, or write the term in the box with the definition. Three different options for one activity and no extra prep from you!

 

25. Use virtual or augmented reality

As a science teacher, I find the hardest areas to support my students in are those concepts that are theoretical concepts or those which we cannot see physically. For example, teaching atoms and molecules. Virtual or augmented reality programs allow students to visualise things that usually wouldn’t be possible.

 

26. Hands-on learning

Providing students with the opportunity to explore learning in a hands-on way provides immediate differentiation as students will engage in a way that makes sense to them. To differentiate you could provide multiple types of materials for students to choose from. For example, to learn about ratios in maths I provided both cordial and paint for students to explore.

 

27. Modelling

Modelling can be done in many different ways, but it could be that while you send your extension students off to investigate the topic, you may need to go through step by step for other students and show them exactly how you want them to go about solving a problem. Modelling a process could also be done by providing a scaffolded worksheet for students who need it.

 

28. Inquiry-based learning and project-based learning

Inquiry-based learning is about students discovering the answer to a problem while project-based learning is about exploring the ‘why’ of an answer. Both of these options allow for varying levels of exploration by students and allow for choice in how they go about investigating.

 

29. Incorporating STEM or STEAM projects

Using STEM or STEAM in the classroom has the benefits of cross-curricular activities and project-based learning while also fostering student development in critical thinking, collaboration, communication and creativity.

List of science differentiation strategies

List of science differentiation strategies to differentiate the environment

30. Group work

Using multiple forms of grouping, or flexible grouping for students in a class provides differentiation as students take on different roles within their groups depending on who they are with. Some examples for grouping could be:

  • Grouping students who need some extra support together. This will also allow you to provide this group with more explicit instruction as you move around the room.

  • Grouping students of mixed ability together. This allows those who need extension to take on a leadership role within the group and have the opportunity to share their understanding with their peers.

  • Groups based on choice. This could be student choice for who is in their group, or students could be grouped by their choice of activity. Both of these options allow for differentiated instruction and learning. 

31. Offer choice for how they work

Offering student choice is an excellent way to differentiate and also increase engagement as students feel they have ownership over their learning. Allowing students to choose how they work, whether it is individually, with a partner, as a small group, etc is an easy way to incorporate differentiation into your classroom without loads of preparation. 

 

32. Offer choice for where they complete the work

Allow students to choose whether to stand, use different chairs, sit on the floor, work outside etc. Taking a class outside for a lesson on the lawn is fantastic for this. Because there are no chairs, students can choose whether to sit, stand, lie on their stomachs, sit on a rock, choose to sit in the sun or the shade. So much choice!

 

33. Provide choice for brain breaks

Brain breaks are so important for retaining high levels of student concentration when learning new concepts. Providing choice in how they have breaks enhances your differentiated classroom. 

If you need some brain break ideas read this blog post here. 

 

34. Pair with a more able student

Pairing a student who may need extra support with a student who needs a challenge can be a great learning experience for both of them. 

 

35. Allow to complete work in a small group

Allowing some students to work in a small group as opposed to completing a task individually can be a good differentiation option. This provides the support of their peers and together they may be able to accomplish something that individually they wouldn’t have been able to.

 

36. Changing the environment space

Changing the environment for students can be very powerful. This can include allowing for some students to sit in a more quiet space, while others can work in pairs. This could also include where the students’ desks are facing. One student may learn more effectively with their desk at the front of the room facing the board, while another can work opposite a peer.

 

37. Allow students to remove themselves from distraction

Similarly to above, this refers to allowing choice for students. For example, wearing noise-cancelling headphones or the freedom to move around the class if needed. For a lot of classrooms, students aren’t allowed to change seats or move during the lesson. Allowing this freedom can allow students to take ownership over their learning and concentration by being able to change their environment if needed. List of science differentiation strategies

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List of science differentiation strategies accessibility

 

38. Cloze passages 

Cloze passages are easy to differentiate quickly by choosing what level of support you want to give your students. Here are some examples of varying levels of support you could provide:

  • No word bank. This also provides students with the opportunity to use their choice of synonyms when filling in the blanks.

  • Providing the first letter of each word with no word bank.

  • Full word bank.

  • Providing the first letter of each word with a full word bank.

If you want to see an example of these click here to see my cloze passage for changing states of matter in year 7 science.

 

39. Provide written or printed instructions broken down into steps

This is one of those differentiation strategies that you can do for the whole class rather than just a few students. It won’t hinder the rest of the class to have instructions broken down into steps. It is also important for students to have these visually represented to them so they can refer back as often as needed, whether it be printed or upon the board.

 

40. Change the reading level

It is important that students are given the opportunity to engage in learning by being provided resources that are at an appropriate reading level. These days it is so easy to use AI such as ChatGPT to change the reading level of a passage.

 

41. Provide extra processing time

This could be as simple as giving students fewer questions to complete in the same amount of time.

 

42. Provide class discussion questions before discussion time

This allows students who need extra processing time to have the opportunity to still be a part of a class discussion. This could be a homework task or as simple as handing out the questions before marking the roll and doing class admin so the students have time to read the questions in advance. For some students, this could be the difference between being able to contribute to a class discussion, or not.

 

43. Give warning before being called upon in class

This goes with the previous point as well. Students may freeze or shut down when being called upon in class if they haven’t had a chance to consider and process the question.

 

So, if the activity is to answer a few questions and then go through them as a class, you could go and quietly say to the student that you are going to ask their opinion about question #3. This gives them time to process it, time to ask you questions if they don’t understand, and time to make it an answer they are proud of.

 

44. Use programs that allow instructions to be read to them

For some students, something as simple as having instructions read out loud to them can allow them to be able to access the learning. Depending on what device they may be using there are different apps or plugins students could install for this purpose.

List of science differentiation strategies

Conclusion

Incorporating science differentiation strategies into your teaching and learning does not have to be difficult or overwhelming.

Which of these science differentiation strategies are your favorite?

List of science differentiation strategies

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69 Best science trivia questions and answers

69 Best science trivia questions and answers

69 Best science trivia questions and answers

Trivia is fun. Whether it be in the classroom, a fundraiser or at the pub, trivia has a way of celebrating diversity in a group and bringing out the competitive side in friends. Science is a great topic to grab some trivia questions for.

If you’re a science teacher, particularly one heading towards the end of the year, then running a science trivia lesson is a great way to keep your students engaged and bring some fun to the classroom.

So sit back and relax while I provide you with some fun trivia questions.

69 best science trivia questions and answers

science trivia questions

List of science trivia questions

General knowledge easy science trivia questions and answers:

These easy trivia questions are based on general knowledge and great to use with younger age groups or as the starting questions before moving to harder ones.

1. Question: What planet is closest to the sun? Answer: Mercury.

2. Question: What is the chemical symbol for water? Answer: H2O.

3. Question: What is the tallest mountain in the world? Answer: Mount Everest

4. Question: What is the process of a liquid turning to a gas called? Answer: Evaporation.

5. Question: Pluto is no longer considered a planet. What is it? Answer: A dwarf planet. 

69 best science trivia questions and answer

Chemistry trivia questions and answers

6. Question: What is the main gas found in the air we breathe? Answer: Nitrogen.

7. Question: What is the chemical symbol for gold? Answer: Au.

8. Question: What is the chemical formula for table salt? Answer: NaCl.

9. Question: What is the process of a solid turning into a gas without becoming a liquid called?Answer: Sublimation.

10. Question: What is the only metal that is liquid at room temperature? Answer: Mercury

11. Question: What is the hardest natural substance on earth? Answer: Diamond

12. Question: What is the most abundant element in the Earth’s atmosphere? Answer: Nitrogen.

13. Question: What is the smallest unit of matter? Answer: Atom.

14. Question: What is the chemical symbol for oxygen? Answer: O2.

15. Question: What is the chemical formula for table salt? Answer: NaCl.

16. Question: What is the chemical symbol for carbon? Answer: C.

17. Question: What is Mendeleev famous for creating? Answer: The periodic table of elements

18. Question: What is the chemical formula for carbon dioxide?Answer: CO2.

19. Question: What is the chemical symbol for silver?Answer: Ag.

20. Question: What is the chemical formula for aspirin?Answer: C9H8O4.

 21. Question: What is the chemical symbol for gold?Answer: Au.

22. Question: What is the chemical formula for hydrochloric acid?Answer: HCl. 

69 best science trivia questions and answers

Space and Earth science trivia questions

23. Question: What is the study of earthquakes called? Answer: Seismology.

24. Question: What is the process of a gas turning into a liquid called?Answer: Condensation.

25. Question: What is the study of fossils called? Answer: Paleontology.

26. Question: What is the biggest planet in our solar system? Answer: Jupiter.

27. Question: What does the richter scale measure the strength of? Answer: Earthquakes.

28. Question: How many planets are in our solar system? Answer: 8

29. Question: Which is the largest planet in our solar system? Answer: Jupiter.

30. Question: What is the study of the weather called?Answer: Meteorology.

31. Question: What is the study of the stars and celestial bodies called?Answer: Astronomy.

32. Question: What is the colloquial term for a natural satellite of a planet? Answer: Moon

33. Question: What was the name of the first man-made satellite? Answer: Sputnik I

69 best science trivia questions and answers

Biology science trivia questions and answers

34. Question: What is the largest mammal in the world? Answer: Blue whale.

35. Question: What is the only mammal that can fly? Answer: A bat

36. Question: What is the fastest land animal? Answer: Cheetah

37. Question: What is the process by which plants make their food using the sun’s light? Answer: Photosynthesis.

38. Question: What is the basic unit of life? Answer: Cell

39. Question: What type of blood cells are primarily responsible for fighting infections? Answer: white blood cells.

40. Question: Where is the smallest bone in the adult human body? Answer: the ear

41. Question: What is the heaviest organ in the human body? Answer: the skin

42. Question: Which part of the body (human) has the most bones? Answer: The hand

43. Question: What is the process by which plants release water vapor into the air called? Answer: Transpiration.

69 best science trivia questions and answers

Physics science trivia questions and answers

44. Question: As I travel through a medium, I cause particles to vibrate, creating disturbances known as what? Answer: Sound waves.

45. Question: What is the flow of electric charge called? Answer: Electric current.

46. Question: What is the rate at which electrical energy is transferred by an electric circuit called? Answer: Electric power.

47. Question: What is the speed of light in a vacuum? Answer: Approximately 300,000 kilometers per second.

48. Question: What forms when a massive star collapses, creating a region with gravity so strong that not even light can escape? Answer: a black hole.

49. Question: What is the study of sound called? Answer: Acoustics.

50. Question: What tool is used to measure the presence of radiation? Answer: geiger counter

51. Question: What force keeps planets in orbit around the sun? Answer: Gravity

52. Question: What is the term for the amount of matter in an object? Answer: Mass

53. Question: What is the unit of electrical resistance? Answer: Ohm

54. Question: What kind of energy is stored in an object due to its position or height? Answer: (gravitational) potential energy

55. Question: What is the term for materials that do not allow electricity to flow through them easily? Answer: Insulators

69 best science trivia questions and answers

 

Scientists Trivia questions and answers:

56. Question: Who was the first woman to win a Nobel prize? Answer: Marie Curie

57. Question: Who developed the theory of relativity? Answer: Albert Einstein.

58. Question: Who discovered penicillin? Answer: Alexander Fleming.

59. Question: Who proposed the concept of gravity? Answer: Sir Isaac Newton.

60. Question: Who discovered the structure of DNA? Answer: James Watson and Francis Crick.

61. Question: Who discovered radioactivity? Answer: Henri Becquerel

62. Question: Who discovered X-rays? Answer: Wilhelm Conrad Roentgen.

63. Question: Who discovered the electron? Answer: J.J. Thomson.

64. Question: Who proposed the theory of the Big Bang? Answer: Georges Lemaître.

65. Question: Who is known as the father of modern biology? Answer: Aristotle.

66. Question: Who discovered the laws of electromagnetic induction? Answer: Michael Faraday.

67. Question: Who invented light bulbs? Answer: Thomas Edison

68. Question: Which famous physicist was born on pi day (March 14)? Answer: Albert Einstein.

69. Question: Who am I? I am the first person to propose the existence of electromagnetic waves, including light and radio waves. Answer: Heinrich Hertz.

69 best science trivia questions and answers

Conclusion

Which of these science trivia questions are your favorite?

Make sure you share this with your high school or middle school team to help relieve the pressure at the end of the year with a fun science trivia lesson!

69 best science trivia questions and answers

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42 fun Easter science activities for middle school

42 fun Easter science activities for middle school

42 fun Easter science activities for middle school

Easter is the perfect time to include some fun science experiments and stem activities in class. This easter season, spark your students curiosity and optimize learning by incorporating some of these fun easter science activities. Having fun with some easter themed experiments and easter activities is a great way to engage young scientists in the classroom.

This awesome list of easter science activities covers a wide range of scientific concepts so you can find the right fit for your class. Find activities and easter experiments for chemical reactions, density, engineering, forces, microscopes, chromatography and more.

 

fun easter science activities

easter science activities

easter science activities

42 easter science activities and easter STEM challenges for middle school

 

Don’t stress about what to do for easter – check out these amazing easter science activities:

 

  1. Digital escape room: Always my favorite type of resource for fun easter science activities as they are zero prep! Get an Easter Escape Room to review scientific measurement here or visit on my TPT store.
  2. Crosswords: Just print and go. This scientific method crossword reviews key terms and understanding with some cute Easter clip art to bring it in theme.
  3. Egg Drop Experiment: Design and build a contraption to protect an egg from cracking when dropped from a height. This is a fun easter STEM challenge to run with your class and doesn’t require a lot of preparation. Just provide a whole heap of scrap materials, string and sticky tape and let the students design the rest!
  4. Egg Geodes: Create crystal-filled eggs using alum powder and food coloring.
  5. Egg-cellent Osmosis: Investigate how different concentrations of saltwater affect the osmosis of an egg.
  6. Easter Egg Rockets: Build rockets using plastic Easter eggs and investigate how varying amounts of fuel (baking soda and vinegar) affect their launch height.
  7. Easter Egg Volcanoes: Create miniature volcanoes inside plastic Easter eggs using baking soda and vinegar.
  8. Easter Egg Density Tower: Layer liquids of different densities (e.g., corn syrup, water, vegetable oil) inside a transparent container. To place an easter twist on this classic science experiment, add different types of easter eggs (or easter decorations) in the tower to compare their density with the different liquids.
  9. Eggshell Strength Test: Compare the strength of different types of eggshells (chicken, duck, quail) by applying increasing weights until they crack.
  10. Egg in a Bottle: Demonstrate the principles of air pressure by placing a peeled hard-boiled eggs on the mouth of a bottle and observing it being sucked in.
  11. Egg Yolk Art: Use droplets of food coloring to create intricate designs in egg yolks.
  12. Egg Incubation: Create a makeshift incubator and monitor the development of a fertilized chicken egg.
  13. Egg Float Test: Explore egg freshness by determining whether an egg sinks or floats in water.
  14. Eggshell Dissolving Experiment ‘fizzy eggs’: Investigate the effects of different liquids (vinegar, soda, juice) on eggshell dissolution.
  15. Egg Carton Catapults: Construct mini catapults using egg cartons and rubber bands to launch small candies or marshmallows.
  16. Egg Spinner: Build a device to spin an egg and observe how centrifugal force affects its stability.
  17. Easter Egg Chromatography: Separate the colors in dyed Easter egg shells using chromatography paper and water.
  18. Easter Egg Batteries: Create batteries using copper and zinc electrodes inserted into Easter eggs filled with saltwater or vinegar.
  19. Egg Parachutes: Explore air resistance and design and test parachutes made from various materials to safely drop an egg from a height.
  20. Egg Insulation Experiment: Test different materials (cotton balls, foam, bubble wrap) to see which provides the best insulation for keeping an egg warm.

    easter science activities

     

21. Eggshell Microstructure Observation: Use a microscope to examine the microscopic structure of eggshells.

22. Eggshell Fertilizer: Crush eggshells and investigate their effectiveness as a fertilizer for plants.

23. Egg Rolling: Study the physics of rolling by racing eggs down inclined surfaces of different materials.

24. Egg Dyeing with Natural Ingredients: Explore the chemistry of natural dyes by using ingredients like onion skins, turmeric, or beet juice to dye eggs.

25. Egg Experiment pH: Test the pH of different substances using crushed eggshells as an indicator.

26. Easter Egg Static Electricity: Rub plastic Easter eggs with different materials and observe how they attract or repel each other due to static electricity.

27. Eggshell Mosaics: Create intricate mosaic patterns using crushed dyed eggshells.

28. Egg Color Mixing: Explore color mixing by dipping eggs into primary-colored dyes and observing the resulting secondary colors.

29. Easter Egg Cartesian Diver: Create Cartesian divers using plastic Easter eggs and investigate the effects of adding weights or changing buoyancy.

30. Eggshell Flame Test: Heat crushed eggshells over a flame and observe the colors produced to identify different elements present.

31. Egg Bouncy Ball: Investigate the properties of polymers by making bouncy balls from egg whites and borax solution.

32. Eggshell Artillery: Build catapults or trebuchets to launch eggs and explore projectile motion.

33. Easter Egg Electromagnets: Wrap wire around plastic Easter eggs and connect them to a battery to create electromagnets.

34. Eggshell Carbonate Test: Test for the presence of carbonate ions in eggshells by reacting them with acid and observing the release of carbon dioxide.

35. Eggshell Soundproofing: Test the effectiveness of eggshells as a soundproofing material by measuring the transmission of sound through eggshell barriers.

36. Eggshell Filtration: Investigate the use of eggshells as a natural filtration material by testing their ability to remove impurities from water.

37. Eggshell Weathering: Expose eggshells to simulated weathering conditions (sunlight, water, wind) and observe changes over time.

38. Eggshell UV Protection: Test the ability of eggshells to block ultraviolet (UV) radiation by exposing them to UV light and comparing to untreated shells.

39. Easter Egg Fermentation: Investigate the process of fermentation by fermenting eggs in different liquids (e.g., vinegar, brine) and observing gas production.

40. Eggshell Biodegradability: Compare the biodegradability of eggshells in different environments (compost, soil, water) over time.

41. Easter egg crystals: Grow crystals on eggshells using a supersaturated solution of salt, sugar or copper sulfate and observe crystal formation patterns.

42. Easter egg hunt: create an easter egg hunt with scientific clues to help students find the eggs or easter candy around the lab or school.

easter science activities

 

Conclusion

As we approach the Easter season, let’s embrace the opportunity to bring joy, creativity, and relevance into our classrooms. By incorporating Easter science activities, we’re not only enriching our students’ educational experiences but also fostering a love for learning that extends far beyond the confines of the classroom. Happy Easter and happy learning!

 

Be sure to share this list of easter science experiments with your teaching friends!

easter science activities

 

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47 Fun St Patricks day science activities and experiments

47 Fun St Patricks day science activities and experiments

47 Fun St Patricks day science activities and experiments

Coming up with ideas for fun St Patrick’s Day activities is hard when you are a teacher with so many things to do! Let me help you out with these lists of St Patrick’s Day Activities and Experiments to help turn your classroom into the end of the rainbow.

Taking advantage of fun holidays and events such as St Patrick’s Day is a great way to engage young learners in middle school.

 

There are tons of fun ways to incorporate St. Patrick’s day theme into the classroom.

So grab a coffee, sit back and relax while I give you a heap of St Patricks Day Science Activities you could do with your class.

St Patricks Day Science Activities

14 St Patricks Day Science Activities

If you’re a science teacher that wants to get into the theme of St Patrick’s Day but don’t have the time, materials or patience for science experiments, then this list is for you!

These activities are low prep for you while still engaging students in learning and fun. This list of fun activities will help you create a space for st patrick’s day fun in your classroom without increasing your planning time.

1. St Patrick’s Day Escape room: This is one of my favorite St Patricks Day Science Activities as it is zero prep and students LOVE it! Digital escape rooms are a great way to develop students problem-solving skills and review general science content.

2. Crosswords: Use a crossword with cute St Patrick’s Day themed clipart such as this one.

3. 4 leaf clover research activity: Explore the genetics involved in creating 3 or 4 leaf clovers.

4. Science of a rainbow: Explore the science of a rainbow and how reflection and refraction are involved.

5. St. Patrick’s Day Science Scavenger Hunt: Create a scavenger hunt with questions related to St. Patrick’s Day and science facts. Students can research and find the answers to the questions.

6. St. Patrick’s Day Science Trivia: Host a St. Patrick’s Day science trivia game where students can test their knowledge on both St. Patrick’s Day and science-related topics.

7. St. Patrick’s Day Science Puzzles: Provide students with St. Patrick’s Day-themed science puzzles & word searches to solve.

8. St. Patrick’s Day Science Kahoot: Create a St. Patrick’s Day-themed Kahoot quiz with science-related questions for students to answer individually or in teams. This is a one of the best low prep St Patricks Day Science Activities as you can also find some already made on Kahoot for you!

9. St. Patrick’s Day Science Reading: Assign readings about the science behind St. Patrick’s Day traditions, such as the chemistry of green dye or the biology of clovers.

10. St. Patrick’s Day Science Writing Prompts: Provide writing prompts related to St. Patrick’s Day and science, such as imagining the life of a leprechaun scientist or writing a fictional story about a scientific discovery related to St. Patrick’s Day.

11. St. Patrick’s Day Science Art Projects: Have students create St. Patrick’s Day-themed science art projects, such as drawing or painting rainbows, shamrocks, or leprechaun laboratories.

12. St. Patrick’s Day Science History Research: Assign research projects on the history of St. Patrick’s Day traditions and how they relate to science, such as the origins of green beer or the science behind corned beef and cabbage.

13. St. Patrick’s Day Science Podcasts or Videos: Curate a list of podcasts or videos that discuss St. Patrick’s Day and its connection to science, such as the chemistry of beer brewing or the physics of rainbow formation.

14. St. Patrick’s Day Science Debates: Organize debates on scientific topics related to St. Patrick’s Day, such as whether leprechauns could exist or the environmental impact of St. Patrick’s Day celebrations.

St Patricks Day Science activities

21 St Patricks Day Science Activities: Experiments

What makes science the best subject? The experiments! If you’re lucky enough to be in a lab for St Patrick’s Day then capitalise on it by choosing an experiment from this list!

Or make a week of it by including a range of fun experiments from rainbow themed, to gold coin themed, to leprechaun and shamrock themed. There is absolutely no shortage of ideas on this page to help you transform your classroom into a St Patrick’s Day Haven.

St Patricks Day Science activities

1. Rainbow science experiment: This following instructions experiment is a great way to remind students of the importance of following a scientific method closely. If they do it correctly, students will end up with test tubes colored like the rainbow!​

2. Walking rainbow experiment: Here is a video showing how you can easily set this one up using paper towels, water and food dye

3. Rainbow Density Tower: Explore density by layering liquids of different densities to create a rainbow in a large measuring cylinder or glass jar.

4. Leprechaun Trap Engineering: Design and build a leprechaun trap using household materials, incorporating principles of engineering and physics.

5. Chromatography Shamrocks: Use chromatography to separate the colors in green markers and create colorful shamrocks.

6. Clover Leaf Chromatography: Go a step further and use chromatography to separate the pigments in clover leaves and explore plant biology. Crush them down with a mortar and pestle and add a little water to then separate using chromatography paper.

6. Fizzing Pots of Gold: Create a chemical reaction by mixing baking soda and vinegar to make pots of gold fizz and overflow. Use yellow food dye and glitter!

7. Magic Milk Experiment: Explore surface tension and chemistry by adding drops of food coloring to milk and then adding dish soap to create swirling colors.

8. St Patrick’s day slime: Make green slime and explore its non-Newtonian properties.

9. Leprechaun Potion: Mix together different household ingredients to create a foaming “leprechaun potion” and explore chemical reactions.

10. Green Fire Experiment: Use a boric acid solution to make green flames in a safe and controlled environment, exploring the science of fire and combustion. Copper sulfate also makes a cool green flame. (Ensure you complete a proper risk assessment and follow your school’s safety protocol).

11. Shamrock Crystals: Grow crystals on shamrock shapes using a supersaturated solution of borax and water.

12. Leprechaun Oobleck: Mix cornstarch and water with green food coloring to create a messy oobleck to explore non-Newtonian fluids.

13. Shamrock Leaf Skeletons: Use a process called “decomposition” to remove the green pigments from shamrock leaves and observe the leaf skeletons.

14. Leprechaun Rainbow Paper: Use chromatography to create rainbow patterns on filter paper and explore color separation.

15. Shamrock Capillary Action: Use celery stalks and colored water to observe capillary action and how plants transport water.

16. Leprechaun Ice Excavation: Freeze small toys or coins in ice cubes and challenge students to “excavate” them using salt, warm water, and tools.

17. Shamrock Dissection: Dissect a shamrock to explore plant anatomy and learn about the different parts of a plant.

18. Shamrock Leaf Stamping: Use shamrock leaves as stamps to create art and explore plant morphology.

19. Leprechaun Rainbow Spinners: Make rainbow spinners using paper plates, markers, and string, exploring color mixing and centrifugal force.

20. Leprechaun Balloon Rockets: Create green balloon rockets using string, straws, and balloons, exploring Newton’s third law of motion.

21. Leprechaun Rainbow Prism: Use a prism to create rainbows and explore the science of light refraction.

St Patricks Day Science activities

St Patricks Day Science Activities

 12 St Patrick’s Day STEM Activities

St Patrick’s day STEM activities are perfect for encouraging hands-on learning using simple materials.

1. Leprechaun Coding Challenge: Create coding challenges or puzzles with a St. Patrick’s Day theme using platforms like Scratch or Blockly.

2. Leprechaun Engineering Challenge: Task students with building a bridge or tower using only green materials, testing their engineering and design skills.

3. Pot of Gold Probability: Design activities to teach probability using a pot of gold theme, such as flipping coins or rolling dice to simulate finding gold.

4. Saint Patricks Day Music and Sound Engineering: Explore the science of sound by creating musical instruments or sound effects with St. Patrick’s Day themes, such as rainbows or leprechaun footsteps.

5. Saint Patrick’s Day Environmental Science: Study the environmental impact of St. Patrick’s Day celebrations, such as the effects of dyeing rivers green or the sustainability of traditional St. Patrick’s Day foods.

6. Shamrock Geometry Art: Use geometric principles to create intricate shamrock designs or tessellations.

7. Leprechaun Physics Challenge: Design physics challenges related to St. Patrick’s Day themes, such as leprechaun catapults to launch coins or rainbow pendulums.

8. St. Patrick’s Day Virtual Field Trip: Take a virtual field trip to explore Irish landmarks or cultural sites, discussing their significance and connection to St. Patrick’s Day.

9. Rainbow Weather Science: Study the science of weather and rainbows, exploring concepts like refraction, precipitation, and atmospheric conditions.

10. St. Patrick’s Day Astronomy: Explore the night sky and learn about Irish contributions to astronomy, such as the ancient Celtic observatories or modern-day space missions.

11. Leprechaun Genetics: Learn about genetics and heredity by exploring the genetics of traits associated with leprechauns, such as height, hair color, or shoe size.

12. Gold coins Economics: Introduce economic concepts by discussing the value of gold and analyzing the economics of finding a pot of gold at the end of the rainbow.

St Patricks Day Science activities

St Patricks Day Science activities

Conclusion

Incorporating any of the above St Patrick’s day theme science or steam activities is a perfect way to liven up your classroom and engage students in learning. Build their love of science by embracing themed lessons and experiments.

What are your favorite St Patricks Day Science Activities?

Please comment below and share this blog post with your teaching friends.

St Patricks Day Science activities

Note: Always consult your school’s specific safety guidelines and policies, and seek guidance from experienced colleagues or administrators when in doubt about safety protocols. 

St Patricks Day Science Activities

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