This document provides an overview of the contents and structure of a template for a middle school physical science presentation for 6th grade. It includes slides on various physical science topics like the states of matter, chemical bonding, the periodic table, and properties of light and sound. It also includes instructions, formatting guidelines, and examples of illustrations and infographics that can be customized and inserted into the presentation. The template is intended to be easily edited and adapted for a science presentation at the middle school level.
Glasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shape
Glasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shaped glass
White wine – Medium sized wine glass
Rose wine – Flute or medium sized wine glass
Red wine – Large wine glassGlasses for wine service
Champagne/Sparkling wine
– Flute or tulip shape
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You can give a brief description of the topic you want to talk about here. For example, if you want to talk about Mercury, you can say that it’s the smallest planet in the entire Solar System
Here’s what you’ll find in this Slidesgo template:
A slide structure based on a medical presentation, which you can easily adapt to your needs. For more info on how to edit the template, please visit Slidesgo School or read our FAQs.
To view this template in PowerPoint with the correct fonts, download and install on your computer the fonts that we have used. You can learn how to download and install fonts here.
An assortment of graphic resources that are suitable for use in the presentation can be found in the alternative resources slide.
A thanks slide, which you must keep so that proper credits for our design are given.
A resources slide, where you’ll find links to all the elements used in the template.
Instructions for use.
Final slides with:
The fonts and colors used in the template.
A selection of illustrations. You can also customize and animate them as you wish with the online editor. Visit Storyset to find more.
More infographic resources, whose size and color can be edited.
Sets of customizable icons of the following themes: general, business, avatar, creative process, education, help & support, medical, nature, performing arts, SEO & marketing, and teamwork.
You can delete this slide when you’re done editing the presentation.
You can give a brief description of the topic you want to talk about here. For example, if you want to talk about Mercury, you can say that it’s the smallest planet in the entire Solar System
Que su hijo nazca con síndrome de Apert puede ser abrumador.
Saber que su hijo necesitará atención médica de parte de un gran
equipo de doctores y médicos clínicos es mucho para procesar para
cualquier padre o madre. Esperamos que encuentre consuelo en saber que el
Programa de Anomalías Craneofaciales del Boston Children's Hospital brinda
atención a más de 500 pacientes con diversos diagnósticos craneofaciales
todos los años. Al ser uno de los programas más antiguos de este tipo en el
mundo, nuestra vasta experiencia y compromiso con la atención innovadora
y compasiva nos ha establecido como líderes nacionales en el tratamiento
de niños con síndrome de Apert. En el Boston Children's Hospital, para cada
paciente utilizamos un enfoque colaborativo que gira en torno al trabajo
en equipo. Nuestros cirujanos tienen experiencia con múltiples técnicas
quirúrgicas que nos permiten desarrollar el plan de tratamiento específico que
se adapte mejor a las necesidades individuales de su hijo.
¿Mi hijo tendrá limitaciones en el
desarrollo a causa del síndrome de Apert?
Algunos niños con síndrome de Apert tienen retrasos en el desarrollo. Sin embargo,
esto no es así para todos los niños con síndrome de Apert. Nuestro equipo evalúa y
trata las necesidades de cada niño cuidadosamente. Algunos niños se benefician de
la fonoaudiología, terapia física o terapia ocupacional. Nuestro neuropsicólogo craneofacial ayudará a evaluar a su hijo y recomendará otras intervenciones cognitivas
y del desarrollo que también podrían ser beneficiosas.
¿Por qu
Video Production Proposal XL by Slidesgo.pptxsaifurripon
Video Production Proposal Presentation Slide
Putting together the pieces of your video production strategy just got easier! It is a crucial way for communicating your vision for a video with potential clients and other stakeholders. It allows you to present them with a professional and organized overview of your proposed project, from budgeting and scheduling to team roles and responsibilities. Our template may help you get your message across in an impactful way, with customizable elements and eye-catching visuals.
Features of the Template
100% customizable slides and easy-to-download
Slides are available in different nodes & colors.
The slides contain 16:9 and 4:3 formats.
It comes with a blue theme.
Easy to change the slide colors quickly.
It is a well-crafted template with an instant download facility.
We designed this slide with a stunning design.
You can use this in Microsoft PowerPoint.
Richard's entangled aventures in wonderlandRichard Gill
Since the loophole-free Bell experiments of 2020 and the Nobel prizes in physics of 2022, critics of Bell's work have retreated to the fortress of super-determinism. Now, super-determinism is a derogatory word - it just means "determinism". Palmer, Hance and Hossenfelder argue that quantum mechanics and determinism are not incompatible, using a sophisticated mathematical construction based on a subtle thinning of allowed states and measurements in quantum mechanics, such that what is left appears to make Bell's argument fail, without altering the empirical predictions of quantum mechanics. I think however that it is a smoke screen, and the slogan "lost in math" comes to my mind. I will discuss some other recent disproofs of Bell's theorem using the language of causality based on causal graphs. Causal thinking is also central to law and justice. I will mention surprising connections to my work on serial killer nurse cases, in particular the Dutch case of Lucia de Berk and the current UK case of Lucy Letby.
More Related Content
Similar to Science Subject for Middle School - 6th Grade_ Physical Science XL by Slidesgo.pptx
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You can give a brief description of the topic you want to talk about here. For example, if you want to talk about Mercury, you can say that it’s the smallest planet in the entire Solar System
Here’s what you’ll find in this Slidesgo template:
A slide structure based on a medical presentation, which you can easily adapt to your needs. For more info on how to edit the template, please visit Slidesgo School or read our FAQs.
To view this template in PowerPoint with the correct fonts, download and install on your computer the fonts that we have used. You can learn how to download and install fonts here.
An assortment of graphic resources that are suitable for use in the presentation can be found in the alternative resources slide.
A thanks slide, which you must keep so that proper credits for our design are given.
A resources slide, where you’ll find links to all the elements used in the template.
Instructions for use.
Final slides with:
The fonts and colors used in the template.
A selection of illustrations. You can also customize and animate them as you wish with the online editor. Visit Storyset to find more.
More infographic resources, whose size and color can be edited.
Sets of customizable icons of the following themes: general, business, avatar, creative process, education, help & support, medical, nature, performing arts, SEO & marketing, and teamwork.
You can delete this slide when you’re done editing the presentation.
You can give a brief description of the topic you want to talk about here. For example, if you want to talk about Mercury, you can say that it’s the smallest planet in the entire Solar System
Que su hijo nazca con síndrome de Apert puede ser abrumador.
Saber que su hijo necesitará atención médica de parte de un gran
equipo de doctores y médicos clínicos es mucho para procesar para
cualquier padre o madre. Esperamos que encuentre consuelo en saber que el
Programa de Anomalías Craneofaciales del Boston Children's Hospital brinda
atención a más de 500 pacientes con diversos diagnósticos craneofaciales
todos los años. Al ser uno de los programas más antiguos de este tipo en el
mundo, nuestra vasta experiencia y compromiso con la atención innovadora
y compasiva nos ha establecido como líderes nacionales en el tratamiento
de niños con síndrome de Apert. En el Boston Children's Hospital, para cada
paciente utilizamos un enfoque colaborativo que gira en torno al trabajo
en equipo. Nuestros cirujanos tienen experiencia con múltiples técnicas
quirúrgicas que nos permiten desarrollar el plan de tratamiento específico que
se adapte mejor a las necesidades individuales de su hijo.
¿Mi hijo tendrá limitaciones en el
desarrollo a causa del síndrome de Apert?
Algunos niños con síndrome de Apert tienen retrasos en el desarrollo. Sin embargo,
esto no es así para todos los niños con síndrome de Apert. Nuestro equipo evalúa y
trata las necesidades de cada niño cuidadosamente. Algunos niños se benefician de
la fonoaudiología, terapia física o terapia ocupacional. Nuestro neuropsicólogo craneofacial ayudará a evaluar a su hijo y recomendará otras intervenciones cognitivas
y del desarrollo que también podrían ser beneficiosas.
¿Por qu
Video Production Proposal XL by Slidesgo.pptxsaifurripon
Video Production Proposal Presentation Slide
Putting together the pieces of your video production strategy just got easier! It is a crucial way for communicating your vision for a video with potential clients and other stakeholders. It allows you to present them with a professional and organized overview of your proposed project, from budgeting and scheduling to team roles and responsibilities. Our template may help you get your message across in an impactful way, with customizable elements and eye-catching visuals.
Features of the Template
100% customizable slides and easy-to-download
Slides are available in different nodes & colors.
The slides contain 16:9 and 4:3 formats.
It comes with a blue theme.
Easy to change the slide colors quickly.
It is a well-crafted template with an instant download facility.
We designed this slide with a stunning design.
You can use this in Microsoft PowerPoint.
Richard's entangled aventures in wonderlandRichard Gill
Since the loophole-free Bell experiments of 2020 and the Nobel prizes in physics of 2022, critics of Bell's work have retreated to the fortress of super-determinism. Now, super-determinism is a derogatory word - it just means "determinism". Palmer, Hance and Hossenfelder argue that quantum mechanics and determinism are not incompatible, using a sophisticated mathematical construction based on a subtle thinning of allowed states and measurements in quantum mechanics, such that what is left appears to make Bell's argument fail, without altering the empirical predictions of quantum mechanics. I think however that it is a smoke screen, and the slogan "lost in math" comes to my mind. I will discuss some other recent disproofs of Bell's theorem using the language of causality based on causal graphs. Causal thinking is also central to law and justice. I will mention surprising connections to my work on serial killer nurse cases, in particular the Dutch case of Lucia de Berk and the current UK case of Lucy Letby.
Earliest Galaxies in the JADES Origins Field: Luminosity Function and Cosmic ...Sérgio Sacani
We characterize the earliest galaxy population in the JADES Origins Field (JOF), the deepest
imaging field observed with JWST. We make use of the ancillary Hubble optical images (5 filters
spanning 0.4−0.9µm) and novel JWST images with 14 filters spanning 0.8−5µm, including 7 mediumband filters, and reaching total exposure times of up to 46 hours per filter. We combine all our data
at > 2.3µm to construct an ultradeep image, reaching as deep as ≈ 31.4 AB mag in the stack and
30.3-31.0 AB mag (5σ, r = 0.1” circular aperture) in individual filters. We measure photometric
redshifts and use robust selection criteria to identify a sample of eight galaxy candidates at redshifts
z = 11.5 − 15. These objects show compact half-light radii of R1/2 ∼ 50 − 200pc, stellar masses of
M⋆ ∼ 107−108M⊙, and star-formation rates of SFR ∼ 0.1−1 M⊙ yr−1
. Our search finds no candidates
at 15 < z < 20, placing upper limits at these redshifts. We develop a forward modeling approach to
infer the properties of the evolving luminosity function without binning in redshift or luminosity that
marginalizes over the photometric redshift uncertainty of our candidate galaxies and incorporates the
impact of non-detections. We find a z = 12 luminosity function in good agreement with prior results,
and that the luminosity function normalization and UV luminosity density decline by a factor of ∼ 2.5
from z = 12 to z = 14. We discuss the possible implications of our results in the context of theoretical
models for evolution of the dark matter halo mass function.
Seminar of U.V. Spectroscopy by SAMIR PANDASAMIR PANDA
Spectroscopy is a branch of science dealing the study of interaction of electromagnetic radiation with matter.
Ultraviolet-visible spectroscopy refers to absorption spectroscopy or reflect spectroscopy in the UV-VIS spectral region.
Ultraviolet-visible spectroscopy is an analytical method that can measure the amount of light received by the analyte.
This presentation explores a brief idea about the structural and functional attributes of nucleotides, the structure and function of genetic materials along with the impact of UV rays and pH upon them.
Nutraceutical market, scope and growth: Herbal drug technologyLokesh Patil
As consumer awareness of health and wellness rises, the nutraceutical market—which includes goods like functional meals, drinks, and dietary supplements that provide health advantages beyond basic nutrition—is growing significantly. As healthcare expenses rise, the population ages, and people want natural and preventative health solutions more and more, this industry is increasing quickly. Further driving market expansion are product formulation innovations and the use of cutting-edge technology for customized nutrition. With its worldwide reach, the nutraceutical industry is expected to keep growing and provide significant chances for research and investment in a number of categories, including vitamins, minerals, probiotics, and herbal supplements.
Introduction:
RNA interference (RNAi) or Post-Transcriptional Gene Silencing (PTGS) is an important biological process for modulating eukaryotic gene expression.
It is highly conserved process of posttranscriptional gene silencing by which double stranded RNA (dsRNA) causes sequence-specific degradation of mRNA sequences.
dsRNA-induced gene silencing (RNAi) is reported in a wide range of eukaryotes ranging from worms, insects, mammals and plants.
This process mediates resistance to both endogenous parasitic and exogenous pathogenic nucleic acids, and regulates the expression of protein-coding genes.
What are small ncRNAs?
micro RNA (miRNA)
short interfering RNA (siRNA)
Properties of small non-coding RNA:
Involved in silencing mRNA transcripts.
Called “small” because they are usually only about 21-24 nucleotides long.
Synthesized by first cutting up longer precursor sequences (like the 61nt one that Lee discovered).
Silence an mRNA by base pairing with some sequence on the mRNA.
Discovery of siRNA?
The first small RNA:
In 1993 Rosalind Lee (Victor Ambros lab) was studying a non- coding gene in C. elegans, lin-4, that was involved in silencing of another gene, lin-14, at the appropriate time in the
development of the worm C. elegans.
Two small transcripts of lin-4 (22nt and 61nt) were found to be complementary to a sequence in the 3' UTR of lin-14.
Because lin-4 encoded no protein, she deduced that it must be these transcripts that are causing the silencing by RNA-RNA interactions.
Types of RNAi ( non coding RNA)
MiRNA
Length (23-25 nt)
Trans acting
Binds with target MRNA in mismatch
Translation inhibition
Si RNA
Length 21 nt.
Cis acting
Bind with target Mrna in perfect complementary sequence
Piwi-RNA
Length ; 25 to 36 nt.
Expressed in Germ Cells
Regulates trnasposomes activity
MECHANISM OF RNAI:
First the double-stranded RNA teams up with a protein complex named Dicer, which cuts the long RNA into short pieces.
Then another protein complex called RISC (RNA-induced silencing complex) discards one of the two RNA strands.
The RISC-docked, single-stranded RNA then pairs with the homologous mRNA and destroys it.
THE RISC COMPLEX:
RISC is large(>500kD) RNA multi- protein Binding complex which triggers MRNA degradation in response to MRNA
Unwinding of double stranded Si RNA by ATP independent Helicase
Active component of RISC is Ago proteins( ENDONUCLEASE) which cleave target MRNA.
DICER: endonuclease (RNase Family III)
Argonaute: Central Component of the RNA-Induced Silencing Complex (RISC)
One strand of the dsRNA produced by Dicer is retained in the RISC complex in association with Argonaute
ARGONAUTE PROTEIN :
1.PAZ(PIWI/Argonaute/ Zwille)- Recognition of target MRNA
2.PIWI (p-element induced wimpy Testis)- breaks Phosphodiester bond of mRNA.)RNAse H activity.
MiRNA:
The Double-stranded RNAs are naturally produced in eukaryotic cells during development, and they have a key role in regulating gene expression .
(May 29th, 2024) Advancements in Intravital Microscopy- Insights for Preclini...Scintica Instrumentation
Intravital microscopy (IVM) is a powerful tool utilized to study cellular behavior over time and space in vivo. Much of our understanding of cell biology has been accomplished using various in vitro and ex vivo methods; however, these studies do not necessarily reflect the natural dynamics of biological processes. Unlike traditional cell culture or fixed tissue imaging, IVM allows for the ultra-fast high-resolution imaging of cellular processes over time and space and were studied in its natural environment. Real-time visualization of biological processes in the context of an intact organism helps maintain physiological relevance and provide insights into the progression of disease, response to treatments or developmental processes.
In this webinar we give an overview of advanced applications of the IVM system in preclinical research. IVIM technology is a provider of all-in-one intravital microscopy systems and solutions optimized for in vivo imaging of live animal models at sub-micron resolution. The system’s unique features and user-friendly software enables researchers to probe fast dynamic biological processes such as immune cell tracking, cell-cell interaction as well as vascularization and tumor metastasis with exceptional detail. This webinar will also give an overview of IVM being utilized in drug development, offering a view into the intricate interaction between drugs/nanoparticles and tissues in vivo and allows for the evaluation of therapeutic intervention in a variety of tissues and organs. This interdisciplinary collaboration continues to drive the advancements of novel therapeutic strategies.
Cancer cell metabolism: special Reference to Lactate PathwayAADYARAJPANDEY1
Normal Cell Metabolism:
Cellular respiration describes the series of steps that cells use to break down sugar and other chemicals to get the energy we need to function.
Energy is stored in the bonds of glucose and when glucose is broken down, much of that energy is released.
Cell utilize energy in the form of ATP.
The first step of respiration is called glycolysis. In a series of steps, glycolysis breaks glucose into two smaller molecules - a chemical called pyruvate. A small amount of ATP is formed during this process.
Most healthy cells continue the breakdown in a second process, called the Kreb's cycle. The Kreb's cycle allows cells to “burn” the pyruvates made in glycolysis to get more ATP.
The last step in the breakdown of glucose is called oxidative phosphorylation (Ox-Phos).
It takes place in specialized cell structures called mitochondria. This process produces a large amount of ATP. Importantly, cells need oxygen to complete oxidative phosphorylation.
If a cell completes only glycolysis, only 2 molecules of ATP are made per glucose. However, if the cell completes the entire respiration process (glycolysis - Kreb's - oxidative phosphorylation), about 36 molecules of ATP are created, giving it much more energy to use.
IN CANCER CELL:
Unlike healthy cells that "burn" the entire molecule of sugar to capture a large amount of energy as ATP, cancer cells are wasteful.
Cancer cells only partially break down sugar molecules. They overuse the first step of respiration, glycolysis. They frequently do not complete the second step, oxidative phosphorylation.
This results in only 2 molecules of ATP per each glucose molecule instead of the 36 or so ATPs healthy cells gain. As a result, cancer cells need to use a lot more sugar molecules to get enough energy to survive.
Unlike healthy cells that "burn" the entire molecule of sugar to capture a large amount of energy as ATP, cancer cells are wasteful.
Cancer cells only partially break down sugar molecules. They overuse the first step of respiration, glycolysis. They frequently do not complete the second step, oxidative phosphorylation.
This results in only 2 molecules of ATP per each glucose molecule instead of the 36 or so ATPs healthy cells gain. As a result, cancer cells need to use a lot more sugar molecules to get enough energy to survive.
introduction to WARBERG PHENOMENA:
WARBURG EFFECT Usually, cancer cells are highly glycolytic (glucose addiction) and take up more glucose than do normal cells from outside.
Otto Heinrich Warburg (; 8 October 1883 – 1 August 1970) In 1931 was awarded the Nobel Prize in Physiology for his "discovery of the nature and mode of action of the respiratory enzyme.
WARNBURG EFFECT : cancer cells under aerobic (well-oxygenated) conditions to metabolize glucose to lactate (aerobic glycolysis) is known as the Warburg effect. Warburg made the observation that tumor slices consume glucose and secrete lactate at a higher rate than normal tissues.
Richard's aventures in two entangled wonderlandsRichard Gill
Since the loophole-free Bell experiments of 2020 and the Nobel prizes in physics of 2022, critics of Bell's work have retreated to the fortress of super-determinism. Now, super-determinism is a derogatory word - it just means "determinism". Palmer, Hance and Hossenfelder argue that quantum mechanics and determinism are not incompatible, using a sophisticated mathematical construction based on a subtle thinning of allowed states and measurements in quantum mechanics, such that what is left appears to make Bell's argument fail, without altering the empirical predictions of quantum mechanics. I think however that it is a smoke screen, and the slogan "lost in math" comes to my mind. I will discuss some other recent disproofs of Bell's theorem using the language of causality based on causal graphs. Causal thinking is also central to law and justice. I will mention surprising connections to my work on serial killer nurse cases, in particular the Dutch case of Lucia de Berk and the current UK case of Lucy Letby.
2. CONTENTS OF THIS TEMPLATE
Here’s what you’ll find in this Slidesgo template:
1. A slide structure based on a presentation for education, which you can easily adapt to your needs. For more
info on how to edit the template, please visit Slidesgo School or read our FAQs.
2. An assortment of graphic resources that are suitable for use in the presentation can be found in the
alternative resources slides.
3. A thanks slide, which you must keep so that proper credits for our design are given.
4. Two resources slides, where you’ll find links to all the elements used in the template.
5. Instructions for use.
6. Final slides with:
7. The fonts and colors used in the template.
8. A selection of illustrations. You can also customize and animate them as you wish with the online
editor. Visit Storyset to find more.
9. More infographic resources, whose size and color can be edited.
10. Sets of customizable icons of the following themes: general, business, avatar, creative process,
education, help & support, medical, nature, performing arts, SEO & marketing, and teamwork.
You can delete this slide when you’re done editing the presentation.
3. WHOA!
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important said and can make the reader get inspired.”
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where you can introduce yourself, write your
email…
6. TABLE OF CONTENTS
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OVERVIEW
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topic of the section here
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here
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here
7. TABLE OF CONTENTS
01
OVERVIEW
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topic of the section here
02
FEATURES
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03
ACTIVITIES
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DISCOVER
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OUR TEAM
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8. TABLE OF CONTENTS
01
OVERVIEW
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02
FEATURES
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03
ACTIVITIES
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9. INTRODUCTION
You can give here a brief description of
the topic you want to talk about. For
example, if you want to talk about
Mercury, you can say that it’s the
smallest planet in the entire Solar System
11. THE SLIDE TITLE GOES HERE!
Do you know what helps you make your point clear?
Lists like this one:
● They’re simple
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12. WHAT IS THIS
TOPIC ABOUT?
Mercury is the closest planet to the Sun and the
smallest one in the Solar System. The planet’s
name has nothing to do with the liquid metal,
since Mercury was named after a Roman god
15. ABOUT MATTER
Mercury is the closest planet to
the Sun and the smallest one in
the Solar System—it’s only a bit
larger than the Moon
Venus has a beautiful name and
is the second planet from the
Sun. It’s hot and has a
poisonous atmosphere
VOLUME MASS
16. ATOMS, ELEMENTS AND COMPOUNDS
ATOM
Mercury is the closest
planet to the Sun and
the smallest of them all
ELEMENTS
Venus has a beautiful
name and is the second
planet from the Sun
COMPOUND
Despite being red, Mars
is a cold place. It’s full of
iron oxide dust
17. UNDERSTANDING ATOMS
ELECTRON
Despite being red, Mars
is a cold place. It's full of
iron oxide dust ORBIT
Venus has a beautiful
name and is the second
planet from the Sun
NUCLEUS
Mercury is the closest
planet to the Sun and
the smallest of them all
18. QUARK STRUCTURE OF ATOMS
U
U D
D
U D
PROTON
QUARKS
Despite being red,
Mars is a cold place.
It's full of iron oxide
dust
NEUTRON
QUARKS
Jupiter is a gas giant
and the biggest planet
in the Solar System
19. MODEL OF ELEMENTARY PARTICLES
u c t g H
up charm top gluon Higgs
boson
d s b Y
down strange bottom photon
e μ T Z
electron muon Tau Z boson
Ve Vμ VT W
Electron
neutrino
Muon
neutrino
Tau
neutrino W boson
QUARKS
LEPTONS
GAUGE
BOSONS
Mercury is the closest
planet to the Sun and the
smallest of them all
Venus has a beautiful
name and is the second
planet from the Sun
Despite being red, Mars is
a cold place. It’s full of
iron oxide dust
21. TYPES OF BONDING
IONIC
Venus has a beautiful name and is
the second from the Sun
COVALENT
Mercury is the closest planet to the
Sun and the smallest one
HYDROGEN BONDS
Despite being red, Mars is a cold
place. It's full of iron oxide dust
VAN DER WAALS
Jupiter is a gas giant and the biggest
planet in the Solar System
22. CHEMICAL REACTIONS
SYNTHESIS
Mercury the closest planet
to the Sun
DECOMPOSITION
Venus is the second planet
from the Sun
DOUBLE DISPLACEMENT
Jupiter is the biggest
planet of them all
COMBUSTION
Saturn is composed of
hydrogen and helium
SINGLE DISPLACEMENT
Despite being red, Mars is
a very cold place
ACID-BASE
Neptune is the farthest
planet from the Sun
23. DAYLIFE CHEMICALS REACTIONS
SATURN
Saturn has several rings
JUPITER
Jupiter is a gas giant
MERCURY
It’s the smallest planet
THE MOON
The Moon is a satellite
MARS
Mars is a cold place
EARTH
Earth is full of life
24. SOLUTIONS AND OTHER MIXTURES
SALT WATER
Despite being red, Mars is
a cold place. It's full of
iron oxide dust
ATMOSPHERE
Jupiter is a gas giant and
the biggest planet in the
Solar System
WATER
SALT
OXYGEN
CARBON
DIOXIDE
ARGON
NITROGEN
25. IONIC BOND FORMATION
THE MOON
The Moon is a satellite
Na F
SATURN
Saturn has several rings
MARS
Mars is a cold place
JUPITER
Jupiter is a gas giant
26. SOME INTERESTING PERCENTAGES
JUPITER
Jupiter is a gas giant
and the biggest planet
in the Solar System
MERCURY
Mercury is the closest
planet to the Sun of
them all
SATURN
Saturn is composed
mostly of hydrogen
and helium
65% 30% 75%
27. FOUR STATES OF THE MATTER
SOLID
Mercury is the
closest planet to
the Sun and the
smallest of them all
LIQUID
Venus has a
beautiful name and
is the second
planet from the
Sun
AIR
Despite being red,
Mars is a cold
place. It’s also full
of iron oxide dust
PLASMA
Neptune is the
farthest planet
from the Sun. It's
also the fourth-
largest
28. MOTION AND FORCES
IMPULSE
Mercury is the
closest planet to
the Sun and the
smallest of them all
ACTION
Venus has a
beautiful name and
is the second
planet from the
Sun
REACTION
Despite being red,
Mars is a cold
place. It’s also full
of iron oxide dust
1 2 3 4
RESISTANCE
Neptune is the
farthest planet
from the Sun. It's
also the fourth-
largest
29. TEMPERATURE AND HEAT
To modify this graph, click on it, follow the link, change the
data and paste the new graph here, replacing this one.
You can see how to modify the graph here
100º C
Despite being
red, Mars is a
really cold place
2470º C
Neptune is the
farthest planet
from the Sun
AT
°C
BOILING
95º C
Mercury is the
closest planet to
the Sun
3265º C
Venus has a nice
name and is
terribly hot
30. WAVES AND SOUND
LONGITUDINAL
WAVES
Mercury is the closest
planet to the Sun
MECHANICAL WAVES
Venus has a nice name and
is the second from the Sun
PRESSURE
WAVES
Despite being red, Mars is
a very cold place
31. 6.022 × 10²³
This is the Avogadro's number. The number of
units in one mole of any substance
32. LIGHT
INTENSITY
Mercury is the closest planet to the Sun and
the smallest of them all
PROPAGATION-DIRECTION
Venus has a beautiful name and is the second
planet from the Sun
FREQUENCY
Despite being red, Mars is a cold place. It’s full
of iron oxide dust
33. ELECTRICITY AND MAGNETISM
+ - N S
ELECTRICITY
Venus has a nice name and is
the second from the Sun. It’s
hot and poisonous
MAGNETISM
Mercury is the closest planet to
the Sun and the smallest one in
the Solar System
34. UNDERSTANDING MAGNETISM
ELECTROMAGNETIC
Mercury is the closest planet to
the Sun and also the smallest
one in the Solar System
MAGNETIC FIELD
Neptune is the farthest planet
from the Sun and the fourth-
largest of them all
35. UNDERSTANDING ELECTRICITY
SATURN
Saturn has several rings
JUPITER
Jupiter is a gas giant
MERCURY
It's the smallest planet
THE MOON
The Moon is a satellite
MARS
Mars is a cold place
EARTH
Earth is full of life
37. THE POWER OF
MAGNETISM
Mercury is the closest planet to
the Sun and also the smallest one
in the Solar System
FERROMAGNETIC FLUID SUBSTANCE
38. LEARNING MODELS IN PHYSICS
PHYSICAL
PHENOMENA
PHYSICS
CONCEPTS
Saturn has several rings
The Moon is a satellite
PHYSICAL
THEORIES
Mars is a cold place
PHYSICAL
LAWS
Jupiter is a gas giant
39. WORK AND ENERGY
STEP 3
Mercury is the closest
planet to the Sun
STEP 1
Venus is the second
planet from the Sun
STEP 2
Despite being red, Mars
is a very cold place
STEP 4
Neptune is the farthest
planet from the Sun
40. OTHER TYPES OF ENERGY
KINETIC
Venus is the second
planet from the Sun
INTERNAL
Despite being red, Mars
is a very cold place
GRAVITATION
Earth is the third planet
from the Sun
NUCLEAR
Mercury is the closest
planet to the Sun
CHEMICAL
Neptune is the farthest
planet from the Sun
41. 299 792 458 m/s
Light’s speed in a vacuum
2,966 °C (5,371 °F)
Boiling point of gold
1,235 km/h
the speed of sound in air
42. 118
Is the number of elements
in the periodic table
0°C (32°F)
Is the temperature at
which fresh water freezes
1.00797
g/mol is the atomic mass
of hydrogen
95
Is the number of metals in
periodic table
43. DISTRIBUTION
NEPTUNE
Neptune is the farthest
planet from the Sun
VENUS
It’s terribly hot, even
hotter than Mercury
SATURN
Saturn is the ringed one
and a gas giant Follow the link in the graph to modify its data and then
paste the new one here. For more info, click here
45. PARTICLE ACCELERATORS IN THE USA
SLAC National
Accelerator Laboratory
Argonne National
Laboratory
Lawrence Berkeley
National Laboratory
Brookhaven National
Laboratory
47. BOILING POINT
THE WATER TEMPERATURE IS 23 °C. HOW
MANY °F DOES IT NEED TO INCREASE TO GET
TO THE BOILING POINT?
23 °C/? °F
Starting water
temperature
? °F
Increase water
temperature
? °C/? °F
Boiling water
temperature
48. CHEMICAL ELEMENTS
1
H
CHECK THE PERIODIC TABLE AND WRITE
THE NAME AND CHARACTERISTICS OF
EACH ELEMENT
NAME OF THE
ELEMENT
Write the characteristics
of this element
13
Al
NAME OF THE
ELEMENT
Write the characteristics
of this element
8
O
NAME OF THE
ELEMENT
Write the characteristics
of this element
49. SOUND AND LIGHT
SOUND WAVES
● List one property here
● List one property here
● List one property here
● List one property here
LIGHT WAVES
● List one property here
● List one property here
● List one property here
● List one property here
WRITE DOWN SOME PROPERTIES OF
SOUND AND LIGHT WAVES
52. MATTER
SOLID
● Example here
● Example here
LIQUID
● Example here
● Example here
WRITE DOWN TWO EXAMPLES OF EACH STATE
OF MATTER
GAS
● Example here
● Example here
53. CONDUCTORS AND INSULATORS
DRAG THE OBJECTS WHETHER
CONDUCTORS OF INSULATORS
CONDUCTORS INSULATORS
Pencil Metal spoon Piece of wood Plastic spoon Paper clip
Piece of paper Key Rubber Sea water Copper
57. ASSIGNMENTS
Follow the dates for the assignments:
● 03/17/2021-Write here the name of the assignment
● 03/23/2021-Write here the name of the assignment
● 04/06/2021-Write here the name of the assignment
● 04/19/2021-Write here the name of the assignment
● 05/10/2021-Write here the name of the assignment
58. DESKTOP SOFTWARE
You can replace the image on
the screen with your own
work. Just right-click on it and
select “Replace image”
59. TABLET APP
You can replace the image on
the screen with your own
work. Just right-click on it
and select “Replace image”
60. MOBILE WEB
You can replace the image on
the screen with your own
work. Just right-click on it and
select “Replace image”
64. OBSERVE NATURE AND IDENTIFY
THEORY / LAW WHERE EXAMPLE
Gravity Law In a tree An apple fall of a tree
65. THIS IS YOUR MINDMAP
PHYSICS
Saturn has several rings
MARS
SATURN
Mars is a cold place
MOON VENUS JUPITER EARTH
The Moon is a
nice satellite
Venus has a
beautiful name
Jupiter is a
really gas giant
Earth is a planet
that has life
67. OUR TEAM
SOFIA HILL
You can write a bit about
this person here
JENNA DOE
You can write a bit about
this person here
68. OUR TEAM
ANNA
JAMESON
Talk a bit about this
person here
CARL
GONZÁLEZ
Talk a bit about this
person here
SUSANNE
BROWN
Talk a bit about this
person here
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74. ALTERNATIVE RESOURCES
VENUS
Venus is the second
planet from the Sun
NEPTUNE
Neptune is the farthest
planet from the Sun
MERCURY
Mercury is the closest
planet to the Sun
MARS
Despite being red, Mars
is a very cold place
VENUS
Venus is the second
planet from the Sun
NEPTUNE
Neptune is the farthest
planet from the Sun
MARS
Despite being red, Mars
is a very cold place
MERCURY
Mercury is the closest
planet to the Sun
NEPTUNE
Neptune is the farthest
planet from the Sun
75. RESOURCES
Did you like the resources on this template? Get them for free at our other websites:
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PHOTOS
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ICONS
1. Physics
76. PREMIUM RESOURCES
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